Control device, control method, program, and method for producing organic compound

The control device uses a linear model to optimize culture conditions in real-time, addressing the lack of real-time control and readability in existing fermentation methods, ensuring stable production of organic compounds.

JP7755921B2Active Publication Date: 2025-10-17AJINOMOTO CO INC
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Patent Information

Application Number
JP2019068866
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2019-03-29
Publication Date
2025-10-17
Estimated Expiration
2039-03-29

AI Technical Summary

Technical Problem

Existing methods for stabilizing amino acid production by fermentation lack real-time control of conditions and fail to provide readable models for determining optimal cultivation parameters, leading to unpredictable and suboptimal production outcomes.

Method used

A control device and method that utilizes a linear model to calculate future production amounts based on acquired culture data, allowing for real-time determination of optimal culture conditions and enabling stable production of organic compounds by fermentation.

Benefits of technology

Enables real-time control of culture conditions for stable production of organic compounds, such as amino acids, by optimizing conditions based on accurate predictions and readable models.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a control device, control method, program, etc., with which an optimum and readable culture condition may be determined in real time in production of organic compound by a fermentation method so as to control production result.SOLUTION: In the present embodiment, the following processes are executed a plurality of times: obtaining culture data; calculating production yield for each candidate at a future time by using a preset linear model for outputting the obtained culture data, a plurality of preset candidates of culture condition, and production yield of an organic compound at a future time; determining the most suitable candidate among the plurality of candidates using the calculated production yield for each candidate at a future time and a preset target production yield of the organic compound at a future time; and changing the culture condition to the determined candidate. The linear model and the target production yield are set each time.SELECTED DRAWING: Figure 3
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Description

[Technical Field]

[0001] The present invention relates to a control device, a control method, a program, and a method for producing an organic compound. [Background technology]

[0002] The main methods for stabilizing amino acid production by fermentation are Method A and Method B below. Method A: A method in which conditions such as sugar concentration and nutrient concentration are optimized before the start of cultivation based on information such as raw materials that is known before the start of cultivation. Method B: Repeated cultivation under the same conditions, and then optimizing conditions such as cultivation temperature, pH, and aeration volume based on the trends in multiple production results through trial and error before starting cultivation.

[0003] However, in Methods A and B, conditions must be set before the start of cultivation, so real-time control of conditions according to the situation during cultivation is not possible. Furthermore, real-time control of conditions is thought to require a model that can predict future cultivation results.

[0004] Generally, the main methods for developing models are Methods C and D below. Method C: Correcting general formulas based on fermentation and metabolic engineering, such as the Monod formula Method D: Methods that use black-box learning models such as genetic algorithms and neural networks

[0005] Patent Document 1 describes a technology related to the production of glutamic acid by fermentation. Specifically, Patent Document 1 describes a technology that uses a three-layer neural network trained by backpropagation to determine the glutamic acid concentration during fermentation from the history of pH, temperature, aeration volume, etc., and determines the optimal pH, temperature, and aeration volume for optimizing the glutamic acid concentration. [Prior art documents] [Patent documents]

[0006] [Patent Document 1] Chinese Patent No. 104616072 Summary of the Invention [Problem to be solved by the invention]

[0007] However, in actual production, there are many factors, such as raw materials, and the formula obtained by Method C, which does not take these factors into account, cannot achieve real-time control of conditions according to the situation during cultivation. Furthermore, because Method D uses a black-box learning model, no one can know what factors have the greatest influence on cultivation results. In other words, Method D is not readable. Therefore, it is unclear how conditions should be controlled based on the results obtained by Method D.

[0008] The present invention has been made in consideration of the above-mentioned problems, and aims to provide a control device, a control method, and a program that can determine optimal and readable culture conditions in real time to control production results in the production of organic compounds by fermentation, as well as a method for producing organic compounds that can achieve stable production of organic compounds by fermentation. [Means for solving the problem]

[0009] In order to solve the above-mentioned problems and achieve the object, the control device of the present invention is a control device that controls culture conditions in the production of organic compounds by fermentation, and is characterized in that it acquires culture data, calculates the production amount for each candidate at a future time using the acquired culture data, a plurality of preset culture condition candidates, and a preset linear model that outputs the production amount of the organic compound at a future time, determines an optimal candidate from among the plurality of candidates using the calculated production amount for each candidate at a future time and a preset target production amount of the organic compound at a future time, and changes the culture conditions to the determined candidate, and performs this process multiple times, with the linear model and target production amount being set for each run.

[0010] In the control device according to the present invention, the future time may be the time when the next processing run is executed. In the control device according to the present invention, a candidate corresponding to a production amount at a future time closest to the target production amount may be determined as the optimal candidate. In the control device according to the present invention, multiple linear models may be set for each run, and the optimal candidate may be determined from the multiple candidates using sample statistics for each candidate based on multiple production amounts at future times for each candidate and the target production amount. In the control device according to the present invention, the linear model may be a multiple regression equation. In the control device according to the present invention, the organic compound may be an amino acid. In the control device according to the present invention, the amino acid may be a basic amino acid. In the control device according to the present invention, the basic amino acid may be lysine or arginine. In the control device according to the present invention, the culture conditions may include conditions related to temperature, pH, or phosphate concentration.

[0011] Furthermore, the control method of the present invention is a control method executed by a control device that controls culture conditions in the production of organic compounds by fermentation, characterized in that the control device acquires culture data, calculates the production amount at a future time for each candidate using the acquired culture data, a plurality of preset culture condition candidates, and a preset linear model that outputs the production amount at a future time for the organic compound, determines an optimal candidate from among the plurality of candidates using the calculated production amount at a future time for each candidate and a preset target production amount at a future time for the organic compound, and changes the culture conditions to the determined candidate, performing this process multiple times, and the linear model and target production amount are set for each run.

[0012] Furthermore, the program of the present invention is a program to be executed by a control device that controls culture conditions in the production of organic compounds by fermentation, and the program causes the control device to acquire culture data, calculate a production amount at a future time for each candidate using a preset linear model that outputs the acquired culture data, a plurality of preset candidates for culture conditions, and the production amount of the organic compound at a future time, determine an optimal candidate from among the plurality of candidates using the calculated production amount at a future time for each candidate and a preset target production amount of the organic compound at a future time, and change the culture conditions to the determined candidate, with the linear model and target production amount being set for each run.

[0013] Furthermore, a method for producing an organic compound according to the present invention includes a step of producing an organic compound by a production system having the control device.

[0014] In the production method of the present invention, the organic compound may be an amino acid. In the production method of the present invention, the amino acid may be a basic amino acid. In the production method of the present invention, the basic amino acid may be lysine or arginine. [Effects of the Invention]

[0015] The present invention has the advantage of being able to determine optimal and readable culture conditions in real time in the production of fermentation products by fermentation, thereby controlling production results, and also has the advantage of being able to realize stable production of organic compounds by fermentation. [Brief explanation of the drawings]

[0016] [Figure 1] FIG. 1 is a diagram showing an example of the configuration of a culture system 1. As shown in FIG. [Figure 2] FIG. 2 is a diagram showing an example of the configuration of the control device 14. As shown in FIG. [Figure 3] FIG. 3 is a diagram illustrating an example of a flowchart relating to the control process. [Figure 4] FIG. 4 is a diagram showing an example of operating conditions. [Figure 5] FIG. 5 is a diagram showing an example of an arithmetic symbol ("+" or "-") attached to a variable of an operating condition included in a linear model. [Figure 6] FIG. 6 is a diagram showing an example of the operating condition width. [Figure 7] FIG. 7 shows an example of the results of Lys culture. [Figure 8] FIG. 8 shows an example of a graph showing the results of Lys culture. [Figure 9] FIG. 9 is a diagram showing an example of operating conditions. [Figure 10] FIG. 10 is a diagram showing an example of an arithmetic symbol ("+" or "-") attached to a variable of an operating condition included in a linear model. [Figure 11] FIG. 11 is a diagram showing an example of the operating condition width. [Figure 12] FIG. 12 shows an example of the results of Lys culture. [Figure 13] FIG. 13 shows an example of a graph showing the results of Lys culture. [Figure 14] FIG. 14 shows an example of a graph showing the results of Lys culture. [Figure 15]FIG. 15 shows an example of a graph showing the results of Lys culture. [Figure 16] FIG. 16 is a diagram showing an example of operating conditions. [Figure 17] FIG. 17 is a diagram showing an example of an arithmetic symbol ("+" or "-") attached to a variable of an operating condition included in a linear model. [Figure 18] FIG. 18 is a diagram showing an example of the operating condition width. [Figure 19] FIG. 19 shows an example of the results of Arg culture. [Figure 20] FIG. 20 shows an example of a graph showing the results of Arg culture. DETAILED DESCRIPTION OF THE INVENTION

[0017] Hereinafter, embodiments of a control device, a control method, a program, and a method for producing an organic compound according to the present invention will be described in detail with reference to the drawings. However, the present invention is not limited to these embodiments.

[0018] [1. Configuration] The configuration of a culture system 1 (corresponding to an example of a manufacturing system) according to this embodiment will be described in detail with reference to Fig. 1 and Fig. 2. Fig. 1 is a diagram showing an example of the configuration of the culture system 1 according to this embodiment. Fig. 2 is a diagram showing an example of the configuration of a control device 14.

[0019] The culture system 1 is mainly composed of a culture tank 11, a sensor 12, a DCS (Distributed Control System) 13, and a control device .

[0020] The culture tank 11 and DCS 13 are provided in a typical culture apparatus (specifically, a jar fermenter). The sensor 12 is used to acquire culture data, and is provided as standard in a typical culture apparatus or is added. The culture data includes, for example, operation data (e.g., temperature, pH, or sugar supply amount), NIR (Near-Infrared Reflectance) data related to the near-infrared spectrum of the fermentation liquid, or physical property values ​​(e.g., refractive index, conductivity, viscosity, or capacitance). The culture data may include, for example, pH, temperature, turbidity, dissolved oxygen concentration, ammonia nitrogen concentration, sulfate ion concentration, nitrogen source concentration, lactic acid concentration, phosphorus source concentration, ammonium sulfate concentration, ammonium sulfate feed rate, sugar / ammonium sulfate mixed solution feed rate, liquid withdrawal volume, bacterial cell volume withdrawn, amino acid concentration, amino acid yield, amino acid productivity, phosphate concentration, phosphate ion concentration, phosphate ion addition amount, phosphate ion consumption volume, bacterial cell concentration, bacterial cell yield, bacterial cell volume, sugar concentration, sugar consumption rate, sugar feed rate, specific growth rate, specific sugar consumption rate, specific production rate, exhaust gas concentration, oxygen consumption volume, oxygen demand, carbon dioxide production volume, respiratory quotient, rab, or sugar solution volume.

[0021] The culture data may include values ​​obtained directly from operational data or the like (e.g., pH, temperature, dissolved oxygen concentration, etc.), analytical values ​​obtained using an analyzer other than that provided in the culture apparatus, such as HPLC (e.g., amino acid concentration, lactic acid concentration, etc.), values ​​obtained by performing arithmetic operations based on values ​​included in the culture data (e.g., specific growth rate, amino acid productivity, respiratory quotient, etc.), or cumulative values ​​of each value from the start of culture to each culture interval (cumulative oxygen consumption, cumulative culture temperature value, cumulative specific growth rate value, etc.) calculated based on values ​​included in the culture data. Furthermore, the culture data may be obtained, for example, by a soft sensor, and the statistical analysis method of the soft sensor may be, for example, PLS (Partial Least Squares), RF (Random Forest), ERT (Extremely Randomized Trees), LASSO (Least Absolute Shrinkage and Selection Operator), Ridge, EN (Elastic Net), LSVR (Linear Support Vector Regression), NLSVR (Non-Linear Support Vector Regression), GP (Gaussian Process), GA_PLS (Gene Algorithm-based Partial Least Squares), AdaBoost (Adaptive Boosting), XGBoost (eXtreme Gradient Boosting), or DNN (Deep Neural Network). In addition, technical documents related to soft sensing include, for example, Chinese Patent Application Publication No. 107391851, International Publication No. 2018 / 007394, Chinese Patent Application Publication No. 107653274, Chinese Patent Application Publication No. 106444377, and Chinese Patent Application Publication No. 106022532.

[0022] Carbon sources include, for example, carbohydrates such as starch, various sugars such as glucose and sucrose, and various organic acids. Depending on the mode of assimilation of the selected microorganism, alcohols including ethanol and glycerol may also be used.

[0023] As nitrogen sources, various ammonium salts such as ammonia and ammonium sulfate, other nitrogen compounds such as amines, and natural nitrogen sources such as peptone, soybean hydrolysate, and digests of fermenting microorganisms can be used.

[0024] Phosphorus sources include phosphoric acid, phosphates such as dipotassium monohydrogen phosphate and monopotassium dihydrogen phosphate, and phosphorus compounds such as myo-inositol.

[0025] The organic compounds produced by fermentation are products of the fermentation and culture process, and are specifically selected from the group consisting of amino acids, organic acids, polysaccharides, proteins, antibiotics, alcohols, and microbial cells.

[0026] Examples of amino acids include glycine, alanine, valine, leucine, isoleucine, serine, threonine, cysteine, cystine, methionine, phenylalanine, tyrosine, tryptophan, proline, hydroxyproline, asparagine, glutamine, aspartic acid, glutamic acid, lysine, histidine, and arginine. Individual amino acids can be classified into acidic amino acids, basic amino acids, or neutral amino acids based on their side chains. Specifically, glutamic acid and aspartic acid can be classified as acidic amino acids, lysine, arginine, and histidine can be classified as basic amino acids, and glycine, alanine, threonine, methionine, cysteine, serine, valine, leucine, isoleucine, tryptophan, phenylalanine, tyrosine, proline, glutamine, and asparagine can be classified as neutral amino acids.

[0027] Examples of organic acids include acetic acid, lactic acid, pyruvic acid, succinic acid, malic acid, itaconic acid, citric acid, acrylic acid, propionic acid, and fumaric acid. Examples of polysaccharides include xanthan, dextran, alginate, hyaluronic acid, curdlan, gellan, scleoglucan, and pullulan. Examples of proteins include hormones, lymphokines, interferons, and enzymes (amylase, glucoamylase, invertase, lactase, protease, lipase, etc.). Examples of antibiotics include antibacterial agents (β-lactams, macrolides, ansamycins, tetracyclines, chloramphenicol, peptide antibiotics, aminoglycosides, etc.), antifungal agents (polyoxin B, griseofulvin, polyene macrolides, etc.), anticancer agents (daunomycin, adriamycin, dactinomycin, mithramycin, bleomycin, etc.), protease / peptidase inhibitors (leupeptin, antipain, pepstatin, etc.), and cholesterol biosynthesis inhibitors (compactin, lovastatin, pravastatin, etc.). Examples of alcohols include ethanol, isopropanol, glycerin, propylene glycol, trimethylene glycol, 1-butanol, and sorbitol. Other organic compounds produced by fermentation include acrylamide, diene compounds (isoprene, etc.), and pentanediamine. Techniques for producing the above-mentioned organic compounds by culturing microorganisms capable of producing the organic compounds are widely known. This embodiment can be widely applied to such microbial fermentation techniques. In microbial fermentation, microorganisms grow by themselves using carbon sources, nitrogen sources, etc. In this sense, in this embodiment, fermentation products also include microbial cells. Examples of microbial cells include any microorganisms capable of producing organic compounds.

[0028] Microorganisms capable of producing organic compounds include both 1) microorganisms that inherently have the ability to produce organic compounds, and 2) microorganisms that do not inherently have or substantially do not have the ability to produce organic compounds but that subsequently acquire the ability to produce organic compounds by introducing an organic compound-producing gene through genetic recombination. Regarding microorganisms capable of producing organic compounds, various microorganisms are known depending on the type of organic compound, and these known microorganisms may be widely used in this embodiment. Furthermore, this embodiment can be widely applied to microorganisms developed in the future, as long as ammonia can be used as a nitrogen source or pH adjuster during culture.

[0029] The microorganism is not particularly limited as long as it has the ability to produce an organic compound, but bacteria or fungi are preferred. Examples of bacteria include bacteria of the genus Escherichia, Pantoea, Corynebacterium, Enterobacter, Clostridium, Bacillus, Lactobacillus, Streptomyces, Streptococcus, and Pseudomonas. Examples of fungi include the genera Saccharomyces, Schizosaccharomyces, Yarrowia, Trichoderma, Aspergillus, Fusarium, and Mucor.

[0030] Examples of bacteria of the genus Escherichia include Escherichia coli. Examples of bacteria of the genus Pantoea include Pantoea ananatis. Examples of bacteria of the genus Corynebacterium include Corynebacterium glutamicum and Corynebacterium ammoniagenes. Examples of bacteria of the genus Enterobacter include Enterobacter aerogenes. Examples of bacteria of the genus Clostridium include Clostridium acetobutylicum. Examples of Bacillus bacteria include Bacillus subtilis, Bacillus amyloliquefaciens, etc. Examples of Lactobacillus bacteria include Lactobacillus yamanashiensis, Lactobacillus animalis, Lactobacillus hilgardii, Lactobacillus brevis, etc. Examples of bacteria of the genus Streptomyces include Streptomyces clavuligerus, Streptomyces venezuelae, and Streptomyces peucetius.Examples of bacteria of the genus Streptococcus include Streptococcus equi and Streptococcus mutans. Examples of bacteria of the genus Pseudomonas include Pseudomonas fluorescens, Pseudomonas aeruginosa, Pseudomonas elodea, and Pseudomonas putida. Examples of bacteria of the genus Saccharomyces include Saccharomyces cerevisiae. Examples of fungi of the genus Schizosaccharomyces include Schizosaccharomyces pombe. Examples of fungi of the genus Yarrowia include Yarrowia lipolytica. Examples of fungi of the genus Trichoderma include Trichoderma reesei. Examples of fungi of the genus Aspergillus include Aspergillus terreus and Aspergillus oryzae. Examples of fungi of the genus Fusarium include Fusarium heterosporum. Examples of the genus Mucor include Mucor javanicus.

[0031] Examples of microorganisms that can be suitably used to produce amino acids in this embodiment include the following. For example, when the target substance is L-lysine, examples include Escherichia coli AJ11442 (NRRL B-12185, FERM BP-1543) (see U.S. Pat. No. 4,346,170), Brevibacterium lactofermentum AJ3990 (ATCC 31269) (see U.S. Pat. No. 4,066,501), and the Lys-producing strain WC196LC / pCABD2 (WO 2010 / 061890). WC196ΔcadAΔldc is a strain constructed from the WC196 strain by disrupting the cadA and ldcC genes encoding lysine decarboxylase. WC196ΔcadAΔldc / pCABD2 was constructed by introducing the plasmid pCABD2 (U.S. Patent No. 6,040,160), which contains lysine biosynthetic genes, into WC196ΔcadAΔldc. WC196ΔcadAΔldc was designated AJ110692 and deposited on October 7, 2008, at the National Institute of Advanced Industrial Science and Technology (AIST) International Patent Organism Depositary (currently the National Institute of Technology and Evaluation (NITE) International Patent Organism Depositary, Room 120, 2-5-8 Kazusa Kamatari, Kisarazu City, Chiba Prefecture, Japan, 292-0818, Japan) under accession number FERM BP-11027.In the case of L-threonine, Escherichia coli VKPM B-3996 (RIA 1867, VKPM B-3996) (see U.S. Pat. No. 5,175,107), Corynebacterium acetoacidophilum AJ12318 (FERM BP-1172) (see U.S. Pat. No. 5,188,949), etc. are used. In the case of L-phenylalanine, Escherichia coli AJ12604 (FERM BP-3579) (see European Patent Application Publication No. 488,424), Brevibacterium lactofermentum AJ12637 (FERM BP-4160) (see French Patent Application Publication No. 2,686,898), etc. are used. In the case of L-glutamic acid, Escherichia coli AJ12624 (FERM BP-3853) (see French Patent Application Publication No. 2,680,178), Brevibacterium lactofermentum AJ12475 (FERM BP-2922) (see U.S. Patent No. 5,272,067), 2256ΔldhAΔsucAyggB* (see International Publication No. 2014 / 185430) created using Corynebacterium glutamicum ATCC13869 as a parent strain, etc., and in the case of L-leucine, Escherichia coli AJ11478 (FERM P-5274) (see Japanese Patent Publication No. 62-34397), Brevibacterium lactofermentum AJ3718 (FERM P-2516) (see U.S. Patent No. 3,970,519), etc., and in the case of L-isoleucine, Escherichia coli KX141 (VKPM B-4781) (see European Patent Application Publication No. 519,113), Brevibacterium flavum AJ12149 (FERM BP-759) (see U.S. Patent No. 4,656,135), etc., and in the case of L-valine, Escherichia coli VL1970 (VKPM B-4411) (see European Patent Application Publication No. 519,113), Brevibacterium lactofermentum AJ12341 (FERM BP-1763) (see U.S. Patent No. 5,188,948), etc.In the case of L-arginine, examples of such strains include, but are not limited to, strains belonging to the genus Escherichia, such as Escherichia coli strain 237 (VKPM B-7925) (U.S. Patent Application Publication No. 2002 / 058315 A1) and its derivative strains harboring mutant N-acetylglutamate synthase (Russian Patent Application No. 2001112869), Escherichia coli strain 382 (VKPM B-7926) (EP1170358A1), and an arginine-producing strain into which the argA gene encoding N-acetylglutamate synthetase has been introduced (EP1170361A1).

[0032] Examples of microorganisms that can be suitably used in producing organic acids in this embodiment include the following: For example, when the target substance is L-lactic acid, Lactobacillus yamanashiensis, Lactobacillus animalis, Saccharomyces cerevisiae, etc.; when the target substance is L-lactic acid, Escherichia coli, Pseudomonas fluorescens, etc.; when the target substance is pyruvic acid, Escherichia coli, Pantoea ananatis, etc.; when the target substance is succinic acid, Aspergillus terreus, etc.; and when the target substance is citric acid, Escherichia coli, etc. (see, for example, WO 2007 / 097260 and JP 2010-187542 A).

[0033] Examples of microorganisms that can be suitably used in producing polysaccharides in this embodiment include Lactobacillus hilgardii, Streptococcus mutans, etc. when the target substance is dextran, Pseudomonas aeruginosa, etc. when the target substance is alginate, Streptococcus equi, Streptococcus mutans, etc. when the target substance is hyaluronic acid, and Pseudomonas elodea, etc. when the target substance is gellan (see, for example, JP 2011-116825 A and JP 2007-9092 A).

[0034] Examples of microorganisms that can be suitably used when producing proteins in this embodiment include the following: Saccharomyces cerevisiae, etc., when the target substance is various hormones or interferon; Bacillus subtilis, Aspergillus oryzae, etc., when the target substance is amylase, glucoamylase, protease, or lipase; and Saccharomyces cerevisiae, Aspergillus oryzae, etc., when the target substance is invertase or lactase (see, for example, WO 2006 / 67511 and JP 2003-153696 A).

[0035] Examples of microorganisms that can be suitably used in producing antibiotics in this embodiment include the following: Pseudomonas putida, Streptomyces clavuligerus, etc. when the target substance is a β-lactam such as penicillin, Streptomyces venezuelae, etc. when the target substance is a macrolide such as erythromycin or azithromycin, Streptomyces peucetius, etc. when the target substance is daunomycin, and Streptomyces clavuligerus, etc. when the target substance is pravastatin (see, for example, WO 96 / 10084, JP 2002-53589 A, WO 2005 / 54265 A, and WO 2007 / 147827 A).

[0036] In the present embodiment, examples of microorganisms that can be suitably used to produce alcohol include Saccharomyces cerevisiae, Schizosaccharomyces pombe, Lactobacillus brevis, etc. when the target substance is ethanol, and Escherichia coli, etc. when the target substance is trimethylene glycol (see, for example, WO 2007 / 97260).

[0037] The sensors 12 and DCS 13 are communicatively connected via a wired or wireless communication line. The DCS 13 and control device 14 are communicatively connected via a wired or wireless communication line. The number of sensors 12 is not limited to four as shown. The control device 14 may be housed in a separate housing from the DCS 13 as shown, or may be housed in the same housing as the DCS 13.

[0038] The control device 14 controls the culture conditions for producing organic compounds by fermentation. The control device 14 acquires culture data, calculates the production amount for each candidate at a future time using the acquired culture data, a plurality of preset culture condition candidates, and a preset linear model that outputs the production amount of the organic compound at a future time, determines the optimal candidate from among the plurality of candidates using the calculated production amount for each candidate at a future time and a preset target production amount of the organic compound at a future time, and executes the process of changing the culture conditions to the determined candidate multiple times. The control device 14 is set with a linear model and a target production amount for each iteration. Here, the time interval between the time when the nth (n is an integer greater than or equal to 1) iteration of the process is performed and the time when the n+1th iteration of the process is performed may be any time.

[0039] The control device 14 includes a control unit 14a that comprehensively controls the device, such as a CPU (Central Processing Unit), a communication interface unit 14b that communicatively connects the device to the DCS 13 via a wired or wireless communication line, a storage unit 14c that stores various databases, tables, files, etc., and an input / output interface unit 14d that connects to an input device 14e and an output device 14f. The various units included in the control device 14 are communicatively connected via any communication path.

[0040] The input device 14e may be a keyboard, a mouse, a microphone, a monitor that cooperates with a mouse to realize a pointing device function, a touch panel, etc. The output device 14f may be a monitor, a speaker, a printer, etc.

[0041] The memory unit 14c is a storage means. For example, a memory device such as a RAM or ROM, a fixed disk device such as a hard disk, a flexible disk, or an optical disk can be used as the memory unit 14c. The memory unit 14c may store a computer program that works in cooperation with an OS (Operating System) to issue commands to a CPU to perform various processes.

[0042] The control unit 14a has an internal memory for storing control programs such as an OS, programs defining various processing procedures, required data, etc., and executes various information processes based on these programs.

[0043] Control unit 14a conceptually includes an acquisition unit 14a1, a calculation unit 14a2, a determination unit 14a3, and a change unit 14a4. Control unit 14a operates acquisition unit 14a1, calculation unit 14a2, determination unit 14a3, and change unit 14a4 multiple times.

[0044] The acquiring unit 14a1 is an information processing unit that acquires culture data. The acquiring unit 14a1 may acquire, from the DCS 13, the culture data measured by the sensor 12 that the DCS 13 has acquired, for example.

[0045] The calculation unit 14a2 is an information processing means that calculates the production amount at a future time for each candidate culture condition using the culture data acquired by the acquisition unit 14a1, a plurality of preset culture condition candidates, and a preset linear model that outputs the production amount of the organic compound at a future time. Here, the future time may be, for example, the time when the next processing run is performed. Furthermore, multiple linear models may be set for each run. Furthermore, the linear model may be, for example, a multiple regression equation. Furthermore, the culture condition candidates may be, for example, culture conditions for each run (first culture conditions, second culture conditions, etc.). Furthermore, the culture conditions may be, for example, operating conditions of a general culture device. Furthermore, the culture conditions may be, for example, conditions related to temperature, pH, phosphate concentration, etc.

[0046] The determination unit 14a3 is an information processing means that determines an optimal candidate from among a plurality of candidate culture conditions using the production amount at a future time for each candidate calculated by the calculation unit 14a2 and the target production amount of the organic compound at a future time set in advance. Here, when a plurality of linear models are set for each cycle, the determination unit 14a3 may determine an optimal candidate from among the plurality of candidates, for example, using the sample statistic (such as the average value, etc.) for each candidate based on the plurality of production amounts at a future time for each candidate and the target production amount. Further, the determination unit 14a3 may determine, for example, the candidate corresponding to the production amount or sample statistic at the future time closest to the target production amount as the optimal one. Note that the sample statistic is a value representing the characteristics of data, such as an average value, etc.

[0047] The changing unit 14a4 is an information processing means that changes the culture conditions to the candidate determined by the determination unit 14a3. Here, when the culture conditions are the operating conditions of the culture apparatus, the changing unit 14a4 may change, for example, the operating conditions set in the DCS 13 to the candidate determined by the determination unit 14a3.

[0048] [2. Process] An example of the control process executed by the control device 14 will be described with reference to FIG. 3. In this description, it is assumed that a time schedule (for example, N1 hours from the start of culture, N2 (N1 < N2) hours from the start of culture, N3 (N2 < N3) hours from the start of culture, ···) based on the elapsed time from the start of culture is set. Also, in this description, it is assumed that each candidate for the operating conditions of the culture apparatus is composed of the operating conditions for each time set in the time schedule.

[0049] First, when the time reaches the first time in the time schedule, the control unit 14a operates the acquisition unit 14a1, and the acquisition unit 14a1 acquires the culture data corresponding to the first time from the DCS 13 (step SA1).

[0050] Next, the calculation unit 14a2 inputs the culture data and multiple operating condition candidates acquired in step SA1 into a linear model that outputs the production amount of an organic compound at the second time in the time schedule, and calculates the production amount of each candidate amino acid at the second time (step SA2).

[0051] Next, the determination unit 14a3 compares the generation amount for each candidate calculated in step SA2 with the target generation amount at the second time in the time schedule, and determines the candidate corresponding to the generation amount closest to the target generation amount as the optimal one (step SA3).

[0052] Next, the change unit 14a4 changes the operating conditions set in the DCS 13 to the candidate operating conditions determined in step SA3 (step SA4).

[0053] Then, the control unit 14a repeatedly executes the processes from step SA1 to step SA4 according to the time schedule.

[0054] [3. Summary of this embodiment] As described above, according to this embodiment, a series of processes including (1) acquiring culture data, (2) calculating future production amounts for each candidate using a linear model, (3) determining optimal culture condition candidates, and (4) changing the culture conditions are repeatedly performed during culture, for example, according to a time schedule. This makes it possible to determine optimal and readable culture conditions in real time in the production of organic compounds by fermentation, thereby controlling production results. Furthermore, this embodiment also makes it possible to achieve real-time control of culture conditions based on high estimation accuracy. Furthermore, according to this embodiment, for example, the production amount of an organic compound can be optimized by optimizing the operating conditions in real time during the culture operation, thereby enabling stable production of organic compounds throughout the year in a factory.

[0055] Furthermore, since the linear model used in this embodiment is created based on data during culture (for example, created by executing the following processes 1 to 6), this embodiment can handle various production situations that cannot be expressed by general formulas based on fermentation engineering or metabolic engineering, such as the Monod equation. In other words, this embodiment enables control not only at the laboratory level (laboratory level), but also at bench plant scale, pilot plant scale, or actual scale.

[0056] The linear model used in this embodiment can be created by executing, for example, the following processes 1 to 6. [Process 1] Collect data during cultivation. The data collected includes not only variables that indicate the state of fermentation (amino acid concentration, sugar concentration, or bacterial cell concentration, etc.), but also data on trace components in the liquid (other amino acids or organic acids). Specifically, NIR data, operating data, and physical property data are collected. Furthermore, data is collected under various operating conditions (changing temperature, pH, etc.) rather than the same operating conditions. When determining the experimental conditions, we try to make sure that each variable approaches a normal distribution. [Process 2] Determine the objective variable to be modeled (amount of amino acid produced) and the explanatory variables to be used in the model. [Process 3] Calculate the correlation coefficient between the objective variable and the explanatory variables, and select the explanatory variables with the highest correlation coefficient. [Process 4] Using the Akaike Information Criterion (AIC), the explanatory variables are narrowed down using a stepwise method. [Process 5] Based on the narrowed down explanatory variables, a model is created using the exhaustive variable method. [Step 6] Models with high correlation coefficients (for example, the top 1000 models or models with a correlation coefficient of 0.7 or higher) are extracted.

[0057] 4. Other Embodiments The present invention may be implemented in various different embodiments other than those described above within the scope of the technical concept set forth in the claims.

[0058] For example, among the processes described in the embodiments, all or part of the processes described as being performed automatically can be performed manually, or all or part of the processes described as being performed manually can be performed automatically using known methods.

[0059] Furthermore, the components of each device shown in the figure are functional concepts and do not necessarily have to be physically configured as shown in the figure. Furthermore, the specific form of distribution and integration of the system is not limited to that shown in the figure, and it may be configured by distributing and integrating functionally or physically in any unit.

[0060] Furthermore, all or any part of the processing functions of the control device 14, particularly the processing functions performed by the control unit 14a, may be realized by a CPU and a program interpreted and executed by the CPU. The program is recorded on a non-transitory computer-readable recording medium containing programmed instructions for causing an information processing device to execute the control method of the present invention, and is mechanically read by the control device 14 as needed. That is, a computer program for providing instructions to the CPU in cooperation with the OS and performing various processes is recorded in the storage unit 14c, such as a ROM or HDD. This computer program is executed by being loaded into RAM and cooperates with the CPU to form the control unit.

[0061] The control program according to the present invention may be stored in a non-transitory computer-readable recording medium, or may be configured as a program product. Here, the term "recording medium" includes any "portable physical medium" such as a memory card, USB memory, SD card, flexible disk, magneto-optical disk, ROM, EPROM, EEPROM, CD-ROM, MO, DVD, and Blu-ray (registered trademark) Disc. [Example]

[0062] In Example 1, the amount of lysine produced was controlled by optimizing the operating conditions using a linear model (specifically, a multiple regression equation) related to the amount of lysine produced. The linear model used in Example 1 was created by the statistical method described in this embodiment based on experimental data in order to model the lysine fermentation process.

[0063] [1. Control method] The culture time from the start to the end of the culture was divided into six sections (section 1, section 2, section 3, section 4, section 5, and section 6), and the operating conditions were controlled as shown in (1) to (4) below. Before the start of the culture, the target lysine production amount at the end of each section (e.g., the end of the current section) was set. Before the start of the culture, candidate operating conditions (approximately eight candidates) were determined for each section. In each example described herein, the length of each section may be any length, but the length is preferably 2 to 12 hours, and more preferably 4 to 8 hours. (1) At the beginning of the current section, the following parameters are measured or analyzed: pH, temperature, phosphate concentration, sulfate ion concentration, nitrogen source concentration, sugar supply rate, sampling volume, withdrawal volume, lysine concentration, turbidity (OD), sugar concentration, ammonium sulfate supply rate, exhaust gas concentration, and dissolved oxygen concentration (corresponding to the processing performed by the acquisition unit 14a described in the above-described embodiment).The obtained measurement or analysis results are used to calculate all items that are variables of the linear model. (2) Using the obtained analytical data, data on the current operating conditions, and a linear model for predicting the amount of lysine produced at the end of the current section, the amount of lysine produced at the end of the section is predicted (corresponding to the process performed by the calculation unit 14b described in the above-mentioned embodiment). Note that, since the operating conditions are also incorporated as variables in the linear model, the predicted value of the amount of lysine produced differs for each candidate operating condition. In addition, a linear model is set for each section. (3) The operating conditions under which the predicted value is closest to the target amount of lysine produced at the end of the period are selected (corresponding to the process performed by the determination unit 14c described in the above-described embodiment). (4) The current operating conditions are changed to the selected operating conditions (corresponding to the process performed by the change unit 14d described in the above embodiment).

[0064] 2. Experimental Conditions The experimental conditions are shown in Figure 4. The No. 1 row shows the standard experimental conditions. The No. 2 row shows the experimental conditions corresponding to the target production amount. In Figure 4, the values ​​of the operating conditions are shown as relative values ​​to the value of the No. 1 operating condition.

[0065] The row No. 3 shows the experimental conditions in which the operating conditions were changed from section 2, with the fermentation results obtained under the experimental conditions of No. 2 as the target production amount. By comparing the results of No. 2 and No. 3, the effectiveness of optimizing the operating conditions can be confirmed.

[0066] [3. Linear model used] The arithmetic symbols ("+" or "-") attached to each control variable (specifically, pH, temperature, and supplied phosphate concentration) included in the linear model used are shown in Figure 5. The linear model used was one that maximized estimation performance, as explored by multiple regression analysis (variable exhaustive method using the AIC minimum criterion), and was evaluated using the adjusted coefficient of determination and correlation coefficient obtained by leave-one-out cross-validation.

[0067] In the linear model (the top 1,000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross validation) that predicts the amount of lysine produced at the end of interval 1 (the amount of lysine produced during the culture time in interval 1) based on the data from the beginning of interval 1, the arithmetic sign of the median coefficient of each control variable was "+". These top 1,000 equations are listed in [11: Linear model for predicting the amount of lysine produced in interval 1].

[0068] In the linear model (the top 1,000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross validation) that predicts the amount of lysine produced at the end of interval 2 (the amount of lysine produced during the culture time in interval 2) based on the data from the beginning of interval 2, the arithmetic sign of the median coefficient of each control variable was "+". These top 1,000 equations are listed in [12: Linear model for predicting the amount of lysine produced in interval 2].

[0069] In the linear model (the top 1,000 equations with the highest adjusted coefficient of determination and correlation coefficient obtained by leave-one-out cross-validation) that predicts the amount of lysine produced at the end of interval 3 (the amount of lysine produced during the culture time in interval 3) based on the data from the beginning of interval 3, the arithmetic sign for the median coefficient of the controlled variable pH was "-", and the arithmetic sign for the median coefficients of the controlled variables temperature and supplied phosphate concentration was "+". A list of these top 1,000 equations is shown in [13: Linear model for predicting the amount of lysine produced in interval 3].

[0070] In the linear model (the top 1,000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross validation) that predicts the amount of lysine produced at the end of interval 4 (the amount of lysine produced during the culture time in interval 4) based on the data from the beginning of interval 4, the arithmetic sign for the median of the coefficients for the control variables pH and temperature was "-", and the arithmetic sign for the median of the coefficient for the control variable phosphate concentration supplied was "+". A list of these top 1,000 equations is shown in [14: Linear model for predicting the amount of lysine produced in interval 4].

[0071] In the linear model (the top 1,000 equations with the highest adjusted coefficient of determination after leave-one-out cross validation and the highest correlation coefficient after leave-one-out cross validation) that predicts the amount of lysine produced at the end of interval 5 (the amount of lysine produced during the culture time in interval 5) based on the data from the beginning of interval 5, the arithmetic sign for the median coefficient for the control variable temperature was "-", and the arithmetic sign for the median coefficients for the control variables pH and the concentration of phosphate supplied was "+". A list of these top 1,000 equations is shown in [15: Linear model for predicting the amount of lysine produced in interval 5].

[0072] In the linear model (the top 1,000 equations with the highest adjusted coefficient of determination after leave-one-out cross validation and the highest correlation coefficient after leave-one-out cross validation) that predicts the amount of lysine produced at the end of interval 6 (the amount of lysine produced during the culture time in interval 6) based on the data from the beginning of interval 6, the arithmetic sign for the median coefficient of the control variable temperature was "-", and the arithmetic sign for the median coefficient of the control variables pH and the concentration of phosphate supplied was "+". A list of these top 1,000 equations is shown in [16: Linear model for predicting the amount of lysine produced in interval 6].

[0073] [4. Operating Condition Range] The control variables changed during the fermentation operation were pH, temperature, and the concentration of supplied phosphate. The range of operating conditions is shown in Figure 6. Data acquired within the range marked "database" in Figure 6 was used to create the linear model. From the perspective of the predictive accuracy of the linear model, it is preferable to use data acquired within this range; however, data acquired outside this range (by extrapolation) may also be used. Since increasing the range of change in the operating conditions may increase the impact of the change in operating conditions on fermentation, in Example 1, the operating conditions were changed within the range marked "Wide range" in Figure 6 (a range wider than the range marked "database" in Figure 6), which is considered less likely to adversely affect fermentation based on previous knowledge of fermentation process development. In Figure 6, the values ​​of the operating conditions are shown relative to the value of the operating condition No. 1 shown in Figure 4.

[0074] [5. Lysine concentration analysis] The lysine concentration was measured using a biosensor. To prevent the influence of differences in the analytical system, the analytical values ​​from the biosensor were also used for the targeted fermentation results. The linear model was created using the lysine concentration measured by HPLC (high performance liquid chromatography).

[0075] 6. Results and Discussion The culture results under each experimental condition are shown in FIGS.

[0076] The operating conditions for sections 2 to 3 were optimized, with the lysine production amount obtained under operating conditions No. 2 as the target production amount. As a result, the operating conditions for No. 3 were changed to increase the lysine production amount in sections 2 to 6 (see the bold frame in Figure 4).

[0077] The amount of lysine produced under experimental conditions No. 3 remained at approximately the same value as that under experimental conditions No. 2. This result suggests that by optimizing the operating conditions using a linear model from section 2, the amount of lysine produced was successfully controlled to a value close to the target amount. [Example]

[0078] In Example 2, the linear model of Example 1 was used to optimize the operating conditions, thereby controlling the amount of lysine produced.

[0079] [1. Control method] The details have been explained in the first embodiment, so they will be omitted here.

[0080] 2. Experimental Conditions The experimental conditions are shown in Figure 9. Line No. 51 shows the experimental conditions corresponding to the target production amount. Line No. 52 shows the experimental conditions (same as experimental conditions No. 2 in Figure 4) that produced the largest amount of lysine in the experiment using the culture apparatus (jar fermentor) described in Example 1, corresponding to the target production amount. In Figure 9, the values ​​of the operating conditions are shown as relative values ​​to the numerical value of operating condition No. 51.

[0081] The No. 53 row shows experimental conditions in which the operating conditions were changed from Section 2, with the fermentation results obtained under the No. 52 experimental conditions (the same as the No. 2 experimental conditions in Figure 4) as the target production amount. The No. 54 row shows experimental conditions in which the operating conditions for Section 1 were the same as those for No. 53, and the operating conditions were not changed from Section 2 onwards. The No. 54 experimental conditions were used for comparison with the No. 53 experimental conditions. Here, the phosphate concentration at the start of cultivation under the No. 53 experimental conditions is lower than that under the No. 52 experimental conditions (see Figure 9). Therefore, the lysine production amount at the beginning of cultivation under the No. 53 experimental conditions is expected to be lower than that under the No. 52 experimental conditions. Therefore, we confirmed whether the No. 53 experimental conditions could produce a lysine production amount equivalent to that obtained under the No. 52 experimental conditions by optimizing the operating conditions starting from a state in which lysine production amount was low.

[0082] The No. 55 row shows experimental conditions in which the operating conditions were changed from Section 2, with the fermentation results obtained under the No. 51 experimental conditions set as the target production amount. The No. 56 row shows experimental conditions in which the operating conditions for Section 1 were the same as those for No. 55, and the operating conditions were not changed from Section 2 onwards. The No. 56 experimental conditions were used for comparison with the No. 55 experimental conditions. Here, the phosphate concentration at the start of cultivation included in the No. 55 experimental conditions is higher than that included in the No. 51 experimental conditions (see Figure 9). Therefore, it is expected that the amount of lysine produced at the beginning of cultivation under the No. 55 experimental conditions will be higher than that under the No. 51 experimental conditions. Therefore, we will confirm whether the No. 55 experimental conditions, which involve changing the operating conditions, can suppress the amount of lysine produced.

[0083] The No. 57 row shows experimental conditions in which the operating conditions were changed from section 2, with the fermentation results obtained under the No. 52 experimental conditions set as the target production amount. The No. 58 row shows experimental conditions in which the operating conditions for section 1 were the same as those for No. 57, and the operating conditions were not changed from section 2 onwards. The No. 58 experimental conditions are used for comparison with the No. 57 experimental conditions. Here, the No. 53 experimental conditions are different in that all control variables (pH, temperature, and supplied phosphate concentration) were changed simultaneously, while the No. 57 experimental conditions only changed the supplied phosphate concentration.

[0084] [3. Linear model used] The arithmetic symbols ("+" or "-") attached to each control variable included in the linear model used are shown in Figure 10. Details have been explained in Example 1, so they will be omitted here.

[0085] [4. Operating Condition Range] The control variables changed during fermentation operation were pH, temperature, and the concentration of supplied phosphate. The range of operating conditions is shown in Figure 11. Data acquired within the range marked "database" in Figure 11 was used to create the linear model. From the perspective of predictive accuracy of the linear model, it is preferable to use data acquired within this range; however, data acquired outside this range (by extrapolation) may also be used. In addition, since increasing the range of change in the operating conditions may increase the impact of the change in operating conditions on fermentation, in Example 2, the operating conditions were changed within the range marked "Wide range" in Figure 11 (a range wider than the range marked "database" in Figure 11), which is considered less likely to adversely affect fermentation based on previous knowledge of fermentation process development. In Figure 11, the values ​​of the operating conditions are shown relative to the value of the operating condition No. 51 shown in Figure 9.

[0086] [5. Lysine concentration analysis] The details have been explained in the first embodiment, so they will be omitted here.

[0087] 6. Results and Discussion The culture results under each experimental condition are shown in Figures 12 to 15.

[0088] [6-1. Results and Discussion of No. 53 and No. 54] The lysine production amount obtained under the operating conditions of No. 52 was set as the target production amount, and the operating conditions of Sections 2 to 53 were optimized. As a result, the operating conditions of No. 53 were changed to increase the lysine production amount in Sections 2 and 3 (see the bold frame in Figure 9).

[0089] The culture results are shown in Figures 12 and 13. The amount of lysine produced under experimental conditions No. 54 (without changing the operating conditions) was lower than that obtained under experimental conditions No. 52. This result is thought to be due to the intentional lowering of the phosphate concentration at the start of culture. On the other hand, the amount of lysine produced under experimental conditions No. 53, in which the phosphate concentration at the start of culture was the same as that of experimental conditions No. 54, was higher than that obtained under experimental conditions No. 52 from the middle of the culture onwards. This result is thought to indicate that optimizing the operating conditions using a linear model from section 2 onwards succeeded in increasing the amount of lysine produced.

[0090] [6-2. Results and Discussion of No. 55 and No. 56] The lysine production amount obtained under the operating conditions of No. 51 was set as the target production amount, and the operating conditions of No. 55 were optimized from section 2. As a result, it was decided to change the operating conditions of No. 55 in order to reduce the lysine production amount from section 3 onwards (see the bold frame in Figure 9).

[0091] The culture results are shown in Figures 12 and 14. The amount of lysine produced under the experimental conditions of No. 56 (without changing the operating conditions) was lower than the amount of lysine produced under the experimental conditions of No. 51. This result is thought to be due to the increased phosphate concentration at the start of the culture. On the other hand, the amount of lysine produced under the experimental conditions of No. 55, in which the phosphate concentration at the start of the culture was the same as that of No. 56, was equivalent to the amount of lysine produced under the experimental conditions of No. 51 from the middle of the culture onwards. This result is thought to mean that by changing the operating conditions using a linear model from section 2, the amount of lysine produced was successfully reduced. In other words, this example confirmed that it is possible to both increase and decrease the amount of lysine produced.

[0092] [6-3. Results and Discussion of No. 57 and No. 58] The lysine production amount obtained under the operating conditions of No. 52 was set as the target production amount, and the operating conditions of No. 2 to No. 57 were optimized. As a result, the operating conditions of No. 57 were changed to increase the lysine production amount in sections 2, 3, 5, and 6 (see the bold frame in Figure 9).

[0093] The culture results are shown in Figures 12 and 15. The amount of lysine produced under experimental conditions No. 58 (without changing the operating conditions) was lower than that obtained under experimental conditions No. 52. This result is thought to be due to the lowering of the phosphate concentration at the start of the culture. On the other hand, the amount of lysine produced under experimental conditions No. 57, which had the same phosphate concentration at the start of the culture as experimental conditions No. 58, was equivalent to the amount of lysine produced under experimental conditions No. 52 from the middle of the culture onwards. This result is thought to indicate that optimizing the operating conditions using a linear model from section 2 onwards succeeded in increasing the amount of lysine produced. [Example]

[0094] In Example 3, the amount of arginine produced was controlled by optimizing the operating conditions using a linear model (specifically, a multiple regression equation) related to the amount of arginine produced. The linear model used in Example 3 was created using the statistical method described in this embodiment based on experimental data to model the arginine fermentation process.

[0095] [1. Control method] The culture time from the start to the end of the culture was divided into 10 sections (section 1, section 2, section 3, section 4, section 5, section 6, section 7, section 8, section 9, and section 10), and the operating conditions shown in (1) to (4) below were controlled. Before the start of the culture, the target arginine production amount at the end of each section (for example, the end of the current section) was set. In addition, before the start of the culture, candidate operating conditions (approximately eight candidates) were determined for each section. (1) At the beginning of the current section, the pH, temperature, sugar supply rate, ammonium sulfate supply rate, sampling amount, arginine concentration, turbidity (OD), sugar concentration, and ammonium sulfate concentration are measured or analyzed (corresponding to the processing performed by the acquisition unit 14a described in the above-mentioned embodiment). Using the obtained measurement or analysis results, all items that are variables of the linear model (specific growth rate, specific production rate, sugar consumption rate, etc.) are calculated. (2) Using the obtained analytical data, data on the current operating conditions, and a linear model for predicting the amount of arginine produced at the end of the current section, the amount of arginine produced at the end of the section is predicted (corresponding to the process performed by the calculation unit 14b described in the above-mentioned embodiment). Note that, since the operating conditions are also incorporated as variables in the linear model, the predicted value of the amount of arginine produced differs for each candidate operating condition. In addition, a linear model is set for each section. (3) Select the operating conditions under which the predicted value is closest to the target arginine production amount at the end of the period (corresponding to the process performed by the determination unit 14c described in the above-mentioned embodiment). Specifically, the culture was started under the same conditions as the target, and it was confirmed that the arginine production amount increased or decreased relative to the target based on the predicted value of the linear model, and it was verified that the arginine production amount was ultimately the same as the target. (4) The current operating conditions are changed to the selected operating conditions (corresponding to the process performed by the change unit 14d described in the above embodiment).

[0096] 2. Experimental Conditions The experimental conditions are shown in Figure 16. The column labeled J1 Target shows the experimental conditions corresponding to the target production amount. The column labeled J5 Verification shows the experimental conditions in which the operating conditions were changed from Section 2, with the fermentation results obtained under the J1 Target experimental conditions set as the target production amount. The effectiveness of optimizing the operating conditions was confirmed by comparing the results of J1 Target and J5 Verification. Note that in Figure 16, the values ​​of the operating conditions are shown as relative values ​​to the values ​​of the J1 Target operating conditions.

[0097] [3. Linear model used] The arithmetic symbols ("+" or "-") attached to each control variable (specifically, pH and temperature) included in the linear model used are shown in Figure 17. The linear model used was one that maximized estimation performance, as explored by multiple regression analysis (exhaustive variable method using the AIC minimum criterion), and was evaluated using the adjusted coefficient of determination obtained by leave-one-out cross-validation and the correlation coefficient obtained by leave-one-out cross-validation.

[0098] In the linear model (the top 1,000 equations with the highest adjusted coefficient of determination and correlation coefficient obtained by leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 1 (the amount of arginine produced during the culture time in interval 1) based on the data from the beginning of interval 1, the arithmetic sign of the median coefficient for the temperature, a controlled variable, was "+". The arithmetic sign of the median coefficient for the pH, a controlled variable, was also "+". These top 1,000 equations are listed in [201: Linear model predicting arginine production in interval 1].

[0099] In the linear model (the top 1,000 equations with the highest adjusted coefficient of determination and correlation coefficient obtained by leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 2 (the amount of arginine produced during the incubation time in interval 2) based on the data from the beginning of interval 2, the arithmetic sign of the median coefficient for the temperature, a controlled variable, was "+". The arithmetic sign of the median coefficient for the pH, a controlled variable, was also "+". These top 1,000 equations are listed in [202: Linear model predicting arginine production in interval 2].

[0100] In the linear model (top 1000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 3 (the amount of arginine produced during the incubation time of interval 3) based on the data from the beginning of interval 3, the arithmetic sign of the median coefficient for the controlled variable temperature was "+". Also, the arithmetic sign of the median coefficient for the controlled variable pH was "-". A list of these top 1000 equations is shown in [203: Linear model predicting arginine production in interval 3].

[0101] In the linear model (top 1000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 4 (the amount of arginine produced during the incubation time in interval 4) based on the data from the beginning of interval 4, the arithmetic sign of the median coefficient for the controlled variable temperature was "+". The arithmetic sign of the median coefficient for the controlled variable pH was also "+". A list of these top 1000 equations is shown in [204: Linear model predicting arginine production in interval 4].

[0102] In the linear model (top 1000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 5 (the amount of arginine produced during the incubation time of interval 5) based on the data from the beginning of interval 5, the arithmetic sign of the median coefficient for the controlled variable temperature was "+". The arithmetic sign of the median coefficient for the controlled variable pH was also "+". A list of these top 1000 equations is shown in [205: Linear model predicting arginine production in interval 5].

[0103] In the linear model (top 1000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 6 (the amount of arginine produced during the incubation time of interval 6) based on the data from the beginning of interval 6, the arithmetic sign of the median coefficient for the controlled variable temperature was "-". The arithmetic sign of the median coefficient for the controlled variable pH was also "-". A list of these top 1000 equations is shown in [206: Linear model predicting arginine production in interval 6].

[0104] In the linear model (top 1000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 7 (the amount of arginine produced during the incubation time of interval 7) based on the data from the beginning of interval 7, the arithmetic sign of the median coefficient for the controlled variable temperature was "+". The arithmetic sign of the median coefficient for the controlled variable pH was also "+". A list of these top 1000 equations is shown in [207: Linear model predicting arginine production in interval 7].

[0105] In the linear model (top 1000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 8 (the amount of arginine produced during the culture time of interval 8) based on the data from the beginning of interval 8, the arithmetic sign of the median coefficient for the temperature, a controlled variable, was "-". The arithmetic sign of the median coefficient for the pH, a controlled variable, was also "-". A list of these top 1000 equations is shown in [208: Linear model predicting arginine production in interval 8].

[0106] In the linear model (top 1000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 9 (the amount of arginine produced during the incubation time of interval 9) based on the data from the beginning of interval 9, the arithmetic sign of the median coefficient for the controlled variable temperature was "-". Also, the arithmetic sign of the median coefficient for the controlled variable pH was "+". A list of these top 1000 equations is shown in [209: Linear model predicting arginine production in interval 9].

[0107] In the linear model (top 1000 equations with the highest adjusted coefficient of determination and correlation coefficient after leave-one-out cross-validation) predicting the amount of arginine produced at the end of interval 10 (the amount of arginine produced during the culture time of interval 10) based on the data from the beginning of interval 10, the arithmetic sign of the median coefficient for the controlled variable temperature was "-". The arithmetic sign of the median coefficient for the controlled variable pH was also "-". A list of these top 1000 equations is shown in [210: Linear model predicting arginine production in interval 10].

[0108] [4. Operating Condition Range] The control variables changed during the fermentation operation were pH and temperature. The operating condition range is shown in Figure 18. Note that data acquired within the range marked "database" in Figure 18 was used to create the linear model. In Example 3, the operating conditions were changed within the range marked "operating condition range" in Figure 18 (the same range as the range marked "database" in Figure 18). Note that in Figure 18, the values ​​of the operating conditions are shown as relative values ​​to the values ​​of the operating conditions of the J1 target shown in Figure 16.

[0109] [5. Arginine concentration analysis] The arginine concentration measured by the biosensor was used for the cultivation control. Then, when the final results of the fermentation were confirmed, the arginine concentration measured by HPLC was used for recalculation. The arginine concentration measured by HPLC was used to create the linear model.

[0110] 6. Results and Discussion The culture results under each experimental condition are shown in FIGS. 19 and 20.

[0111] Figure 19 shows the signs of the median coefficients of the control variables of the linear model shown in Figure 17, the control conditions of J5 where control was performed shown in Figure 16, the control details of J5, and the arginine amounts of J1 where no control was performed and J5 where control was performed.

[0112] If the arithmetic symbol "+" is entered in the sign column of the coefficient median in Figure 19, it means that the amount of arginine produced in the next interval can be increased by setting the temperature or pH higher than the standard conditions in Figure 18. If the arithmetic symbol "-" is entered, it means that the amount of arginine produced in the next interval can be increased by setting the temperature or pH lower than the standard conditions in Figure 18.

[0113] By comparing the J5 control conditions in Figure 19 with the J1 standard conditions in Figure 16, the control performed in J5 can be classified into three control types: increasing or decreasing the amount of arginine produced, or having no effect on J1. The control type that increases the amount of arginine produced compared to J1 is indicated as "increase," the control type that decreases the amount of arginine produced compared to J1 is indicated as "decrease," and the control type that keeps the amount of arginine produced equal to that of J1 is indicated as "none." (Note that because the control type in Section 1 affects the fermentation results in Section 1, the first five columns from the left in Figure 19 and the sixth and subsequent columns from the left are shifted by one line.)

[0114] To confirm the results of the control, the results of J1 and J5 were compared. In the J5-J1 difference column in Figure 19, when the control content was "decrease" the value was negative, and when the control content was "increase" the value was positive, so it can be considered that the control was achieved as expected using the linear model. [Industrial Applicability]

[0115] The present invention is particularly useful in the production of organic compounds by fermentation. [Explanation of symbols]

[0116] 1. Culture system 11 Culture tank 12 sensors 13 DCS 14 Control device 14a Control section 14a1 Acquisition Department 14a2 Calculation part 14a3 Decision section 14a4 Changes 14b Communication interface section 14c storage section 14d Input / Output Interface Section 14e Input Device 14f Output Device

[0117] In this specification, various explanatory variables are mainly represented by abbreviations, but their official names are as follows:

[0118] (Abbreviation of explanatory variable) (Formal name) tmp culture solution temperature tmp_cumulo Cumulative temperature of culture solution pH Culture solution pH pH_cumulo Culture solution pH cumulative value PL Dissolved oxygen concentration in culture medium PL_cumulo Cumulative dissolved oxygen concentration in the culture medium AN: Ammonia nitrogen concentration in the culture solution AN_cumulo Cumulative concentration of ammonia nitrogen in the culture solution interval_yield Interval arginine yield interval_Pdt. Interval arginine productivity OD culture solution turbidity RS Sugar concentration in culture solution Feed_Vol Sugar / ammonium sulfate mixture feed volume mu_cumulo Specific growth rate cumulative value nu_cumulo Cumulative specific sugar consumption rate rho_cumulo Specific generation rate cumulative value nu_per_rho_cumulo Specific growth rate / specific production rate cumulative value RS_cumulo Cumulative sugar concentration in the culture medium Sugar_consuming_rate_cumulo Sugar consumption rate cumulative value Arg_conc._cumulo Cumulative arginine concentration in the culture medium cell_yield_cumulo Cumulative cell yield Cell_conc._cumulo Cumulative cell concentration value Cell_conc._interval Bacterial cell concentration interval difference rab_integral Average oxygen demand RQ_integral Average respiratory quotient Accum._Yield Accumulated yield Arg_conc. Arginine concentration in the culture medium AS_Vol. Ammonium sulfate feed amount (addition) emission_O2 Oxygen concentration in exhaust gas emission_CO2 Carbon dioxide concentration in exhaust gas consum_O2 Oxygen consumption interval_O2 Cumulative oxygen consumption generate_CO2 Amount of carbon dioxide generated interval_CO2 Cumulative carbon dioxide emissions RQ respiratory quotient rab oxygen demand Main.P-Source.Conc. Phosphorus source concentration in the culture medium at the start of cultivation P-Source.Feed.conc. Phosphorus source concentration in culture fed solution Main.Thr.Conc. Threonine concentration in the culture medium at the start of culture Nitrogen Concentration in the culture medium at the start of cultivation Lys_conc. Lysine concentration in the culture medium feed.Sugar fed sugar liquid amount XFSugar Sugar Volume per Section Cell Amount of bacterial cells in culture solution X.VXdt Integral bacterial mass Total Vol. Total volume of culture medium total.cell Total bacterial cell mass total.sugar Total sugar consumption yield Thr Threonine concentration in culture medium His Histidine concentration in the culture medium lactate Lactic acid concentration in culture solution SO4.ferm. Sulfate ion concentration in culture medium PO4.ferm. Phosphate ion concentration in the culture medium PO4.apporte Amount of phosphate ions added during cultivation PO4.utilize Phosphate ion consumption during culture

[0119] [11: Linear model predicting lysine production in section 1] 0.647, 0.828, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Thr+lactate+PO4.apporte; 0.652, 0.827, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Thr+lactate+PO4.apporte; 0.646, 0.827, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Thr+lactate+PO4.apporte; 0.636, 0.825, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+Thr+lactate+PO4.apporte; 0.636, 0.825, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+Thr+lactate+PO4.apporte; 0.636, 0.825, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Thr+lactate+PO4.apporte; 0.635, 0.825, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+Thr+lactate+PO4.apporte; 0.634, 0.824, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+Thr+lactate+PO4.apporte; 0.641, 0.824, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+Thr+lactate+PO4.apporte; 0.634, 0.824, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+Thr+lactate+PO4.apporte; 0.640, 0.824, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+Thr+lactate+PO4.apporte; 0.638, 0.823, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+lactate+PO4.apporte; 0.625, 0.823, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.638, 0.823, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Thr+His+lactate+PO4.apporte; 0.625, 0.823, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+lactate+PO4.apporte; 0.631, 0.823, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+Thr+lactate+PO4.apporte; 0.638, 0.823, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+Thr+lactate+PO4.apporte; 0.631, 0.823, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Thr+His+lactate+PO4.apporte; 0.631, 0.823, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+lactate+PO4.apporte; 0.631, 0.822, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+Thr+lactate+PO4.apporte; 0.624, 0.822, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+Thr+lactate+PO4.apporte; 0.624, 0.822, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+lactate+PO4.apporte; 0.637, 0.822, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+Thr+lactate+PO4.apporte; 0.624, 0.822, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+lactate+PO4.apporte; 0.630, 0.822, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+Thr+lactate+PO4.apporte; 0.637, 0.822, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+Thr+lactate+PO4.apporte; 0.624, 0.822, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.623, 0.822, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.630, 0.822, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+lactate+PO4.apporte; 0.629, 0.822, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Thr+His+lactate+PO4.apporte; 0.616, 0.822, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.629, 0.821, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+Thr+lactate+PO4.apporte; 0.622, 0.821, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+Thr+lactate+PO4.apporte; 0.622, 0.821, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+Thr+lactate+PO4.apporte; 0.622, 0.821, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.622, 0.821, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+Thr+lactate+PO4.apporte; 0.628, 0.821, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.614, 0.821, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.628, 0.821, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+lactate+PO4.apporte; 0.621, 0.821, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.621, 0.820, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+Thr+lactate+PO4.apporte; 0.627, 0.820, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+Thr+lactate+PO4.apporte; 0.613, 0.820, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.627, 0.820, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.620, 0.820, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+Thr+His+lactate+PO4.apporte; 0.620, 0.820, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+Thr+His+lactate+PO4.apporte; 0.620, 0.820, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+lactate+PO4.apporte; 0.626, 0.820, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+lactate+PO4.apporte; 0.619, 0.820, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+Thr+lactate+PO4.apporte; 0.619, 0.820, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+lactate+PO4.apporte; 0.626, 0.820, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+Thr+His+lactate+PO4.apporte; 0.612, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.625, 0.819, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+lactate+PO4.apporte; 0.618, 0.819, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+Thr+lactate+PO4.apporte; 0.625, 0.819, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+Thr+lactate+PO4.apporte; 0.611, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+lactate+PO4.apporte; 0.618, 0.819, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Thr+His+lactate+PO4.apporte; 0.618, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.618, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+Thr+His+lactate+PO4.apporte; 0.618, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+lactate+PO4.apporte; 0.618, 0.819, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+lactate+PO4.apporte; 0.618, 0.819, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+Thr+lactate+PO4.apporte; 0.618, 0.819, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+Thr+His+lactate+PO4.apporte; 0.618, 0.819, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+lactate+PO4.apporte; 0.617, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+rab+Thr+lactate+PO4.apporte; 0.624, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+Thr+lactate+PO4.apporte; 0.617, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+Thr+His+lactate+PO4.apporte; 0.610, 0.819, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.624, 0.819, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.624, 0.819, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+Thr+His+lactate+PO4.apporte; 0.624, 0.819, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.624, 0.819, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+lactate+PO4.apporte; 0.624, 0.819, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+lactate+PO4.apporte; 0.624, 0.818, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+lactate+PO4.apporte; 0.624, 0.818, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+Thr+lactate+PO4.apporte; 0.617, 0.818, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+lactate+PO4.apporte; 0.617, 0.818, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+Thr+lactate+PO4.apporte; 0.610, 0.818, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+Thr+lactate+PO4.apporte; 0.609, 0.818, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+lactate+PO4.apporte; 0.616, 0.818, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.623, 0.818, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+lactate+PO4.apporte; 0.623, 0.818, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+His+lactate+PO4.apporte; 0.616, 0.818, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.616, 0.818, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.616, 0.818, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+lactate+PO4.apporte; 0.609, 0.818, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.616, 0.818, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.622, 0.818, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+Thr+His+lactate+PO4.apporte; 0.609, 0.818, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.609, 0.818, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+lactate+PO4.apporte; 0.615, 0.818, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+lactate+PO4.apporte; 0.608, 0.818, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.615, 0.818, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+His+lactate+PO4.apporte; 0.608, 0.818, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+His+lactate+PO4.apporte; 0.622, 0.817, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+Thr+lactate+PO4.apporte; 0.601, 0.817, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.601, 0.817, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.608, 0.817, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+Thr+lactate+PO4.apporte; 0.608, 0.817, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.608, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.C. onc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.628, 0.817, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+Thr+lactate+PO4.apporte; 0.615, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.621, 0.817, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.621, 0.817, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+rab+Thr+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.621, 0.817, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+Thr+His+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+lactate+PO4.apporte; 0.614, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+Thr+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+lactate+PO4.apporte; 0.614, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+Thr+His+lactate+PO4.apporte; 0.614, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+Thr+lactate+PO4.apporte; 0.614, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.607, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+Thr+His+lactate+PO4.apporte; 0.614, 0.817, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.607, 0.817, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.599, 0.817, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.599, 0.817, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.613, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+Thr+His+lactate+PO4.apporte; 0.613, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+Thr+lactate+PO4.apporte; 0.620, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+rab+Thr+lactate+PO4.apporte; 0.613, 0.817, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.606, 0.817, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.606, 0.816, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.613, 0.816, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.613, 0.816, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+His+lactate+PO4.apporte; 0.606, 0.816, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+His+lactate+PO4.apporte; 0.613, 0.816, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.606, 0.816, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.598, 0.816, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.613, 0.816, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+Thr+lactate+PO4.apporte; 0.613, 0.816, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+rab+Thr+lactate+PO4.apporte; 0.619, 0.816, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+lactate+PO4.apporte; 0.612, 0.816, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+lactate+PO4.apporte; 0.612, 0.816, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+Thr+His+lactate+PO4.apporte; 0.612, 0.816, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+lactate+PO4.apporte; 0.605, 0.816, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+Thr+lactate+PO4.apporte; 0.605, 0.816, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.598, 0.816, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.612, 0.816, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.605, 0.816, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+Thr+lactate+PO4.apporte; 0.605, 0.816, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.612, 0.816, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+Thr+His+lactate+PO4.apporte; 0.605, 0.816, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.604, 0.816, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.604, 0.816, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+Thr+His+lactate+PO4.apporte; 0.611, 0.816, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.604, 0.816, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.611, 0.816, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+Thr+lactate+PO4.apporte; 0.597, 0.816, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.604, 0.815, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+Thr+His+lactate+PO4.apporte; 0.604, 0.815, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+lactate+PO4.apporte; 0.611, 0.815, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.604, 0.815, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.596, 0.815, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.604, 0.815, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+Thr+His+lactate+PO4.apporte; 0.611, 0.815, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+lactate+PO4.apporte; 0.604, 0.815, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.604, 0.815, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+Thr+lactate+PO4.apporte; 0.604, 0.815, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+His+lactate+PO4.apporte; 0.611, 0.815, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+lactate+PO4.apporte; 0.596, 0.815, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.603, 0.815, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.603, 0.815, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.617, 0.815, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.610, 0.815, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+rab+Thr+lactate+PO4.apporte; 0.610, 0.815, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.603, 0.815, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.596, 0.815, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.610, 0.815, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+His+lactate+PO4.apporte; 0.603, 0.815, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+lactate+PO4.apporte; 0.610, 0.815, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.603, 0.815, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+rab+Thr+lactate+PO4.apporte; 0.603, 0.815, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+Thr+His+lactate+PO4.apporte; 0.595, 0.815, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.610, 0.815, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+His+lactate+PO4.apporte; 0.609, 0.815, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+lactate+PO4.apporte; 0.602, 0.814, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+lactate+PO4.apporte; 0.609, 0.814, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.609, 0.814, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.609, 0.814, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+lactate+PO4.apporte; 0.602, 0.814, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+lactate+PO4.apporte; 0.602, 0.814, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.595, 0.814, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.602, 0.814, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+lactate+PO4.apporte; 0.601, 0.814, pH+tmp+Main.P-Source.Conc.+P-Sourc. e.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+His+lactate+PO4.apporte; 0.594, 0.814, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+lactate+PO4.apporte; 0.594, 0.814, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+lactate+PO4.apporte; 0.608, 0.814, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.601, 0.814, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+Thr+lactate+PO4.apporte; 0.594, 0.814, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.601, 0.814, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+lactate+PO4.apporte; 0.601, 0.814, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.608, 0.814, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.601, 0.814, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.601, 0.814, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+Thr+His+lactate+PO4.apporte; 0.594, 0.814, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.608, 0.814, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.608, 0.814, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+lactate+PO4.apporte; 0.601, 0.814, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+Thr+His+lactate+PO4.apporte; 0.608, 0.814, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+lactate+PO4.apporte; 0.601, 0.814, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.608, 0.814, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+lactate+PO4.apporte; 0.601, 0.814, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+His+lactate+PO4.apporte; 0.593, 0.814, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.601, 0.814, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.601, 0.814, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.600, 0.814, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.593, 0.814, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.608, 0.814, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.600, 0.814, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+His+lactate+PO4.apporte; 0.608, 0.814, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+Thr+His+lactate+PO4.apporte; 0.600, 0.814, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+lactate+PO4.apporte; 0.593, 0.813, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.600, 0.813, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+lactate+PO4.apporte; 0.600, 0.813, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.600, 0.813, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+Thr+His+lactate+PO4.apporte; 0.607, 0.813, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+Thr+His+lactate+PO4.apporte; 0.607, 0.813, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.600, 0.813, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.607, 0.813, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.607, 0.813, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+His+lactate+PO4.apporte; 0.600, 0.813, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+rab+Thr+lactate+PO4.apporte; 0.600, 0.813, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+lactate+PO4.apporte; 0.592, 0.813, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.600, 0.813, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.592, 0.813, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+lactate+PO4.apporte; 0.592, 0.813, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.599, 0.813, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.607, 0.813, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.599, 0.813, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+His+lactate+PO4.apporte; 0.592, 0.813, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.592, 0.813, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.599, 0.813, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.592, 0.813, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.592, 0.813, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.599, 0.813, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.591, 0.813, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+His+lactate+PO4.apporte; 0.599, 0.813, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+lactate+PO4.apporte; 0.591, 0.813, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+His+lactate+PO4.apporte; 0.599, 0.813, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.606, 0.813, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.591, 0.813, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+lactate+PO4.apporte; 0.598, 0.812, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.583, 0.812, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.605, 0.812, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+Thr+His+lactate+PO4.apporte; 0.598, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.591, 0.812, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.605, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.598, 0.812, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.583, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.583, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.591, 0.812, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.591, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.598, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.598, 0.812, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.598, 0.812, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.605, 0.812, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+rab+Thr+lactate+PO4.apporte; 0.590, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.598, 0.812, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.590, 0.812, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.605, 0.812, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+lactate+PO4.apporte; 0.598, 0.812, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.590, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+lactate+PO4.apporte; 0.582, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.597, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.597, 0.812, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+Thr+His+lactate+PO4.apporte; 0.590, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.582, 0.812, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.604, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+His+lactate+PO4.apporte; 0.597, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.597, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_. CO2+Thr+His+lactate+PO4.apporte; 0.597, 0.812, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.582, 0.812, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.589, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+His+lactate+PO4.apporte; 0.604, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+lactate+PO4.apporte; 0.597, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.589, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.589, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.597, 0.812, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+lactate+PO4.apporte; 0.597, 0.812, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+lactate+PO4.apporte; 0.589, 0.812, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.589, 0.812, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.604, 0.812, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.589, 0.812, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.589, 0.811, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.596, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+lactate+PO4.apporte; 0.596, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.589, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.589, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.589, 0.811, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.596, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.589, 0.811, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.596, 0.811, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.596, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+Thr+His+lactate+PO4.apporte; 0.610, 0.811, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+lactate+PO4.apporte; 0.603, 0.811, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.596, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.580, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.588, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+His+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.588, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+Thr+His+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.595, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+Thr+His+lactate+PO4.apporte; 0.603, 0.811, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.603, 0.811, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+rab+Thr+lactate+PO4.apporte; 0.595, 0.811, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+lactate+PO4.apporte; 0.580, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.588, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.595, 0.811, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.580, 0.811, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.588, 0.811, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+lactate+PO4.apporte; 0.595, 0.811, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.595, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.587, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.595, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+Thr+His+lactate+PO4.apporte; 0.595, 0.811, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.587, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+Thr+His+lactate+PO4.apporte; 0.602, 0.811, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.595, 0.811, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.587, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+Thr+His+lactate+PO4.apporte; 0.587, 0.811, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.594, 0.810, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.602, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+lactate+PO4.apporte; 0.579, 0.810, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.594, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.579, 0.810, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.594, 0.810, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.594, 0.810, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+rab+Thr+His+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+lactate+PO4.apporte; 0.579, 0.810, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.586, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.594, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.594, 0.810, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.594, 0.810, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.594, 0.810, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+His+lactate+PO4.apporte; 0.586, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.578, 0.810, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.594, 0.810, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.593, 0.810, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+lactate+PO4.apporte; 0.593, 0.810, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.586, 0.810, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+la. ctate+PO4.apporte; 0.586, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.586, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.585, 0.810, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.585, 0.810, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+lactate+PO4.apporte; 0.585, 0.810, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.593, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.600, 0.810, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+Thr+His+lactate+PO4.apporte; 0.600, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+rab+Thr+His+lactate+PO4.apporte; 0.585, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.593, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+lactate+PO4.apporte; 0.593, 0.810, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+His+lactate+PO4.apporte; 0.585, 0.810, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+His+lactate+PO4.apporte; 0.585, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.585, 0.809, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.600, 0.809, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+lactate+PO4.apporte; 0.577, 0.809, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.600, 0.809, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.585, 0.809, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.592, 0.809, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.585, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+rab+Thr+lactate+PO4.apporte; 0.584, 0.809, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.613, 0.809, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+Thr+PO4.apporte; 0.577, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.577, 0.809, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.592, 0.809, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.592, 0.809, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.592, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+rab+Thr+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.592, 0.809, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.591, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+rab+Thr+His+lactate+PO4.apporte; 0.606, 0.809, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+rab+Thr+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+His+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.584, 0.809, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+Thr+His+lactate+PO4.apporte; 0.599, 0.809, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.584, 0.809, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.591, 0.809, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.576, 0.809, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.591, 0.809, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+His+lactate+PO4.apporte; 0.575, 0.809, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.591, 0.809, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.591, 0.809, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+lactate+PO4.apporte; 0.583, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.583, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.598, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+rab+Thr+lactate+PO4.apporte; 0.590, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.590, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+rab+Thr+lactate+PO4.apporte; 0.590, 0.808, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.583, 0.808, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+lactate+PO4.apporte; 0.598, 0.808, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+rab+Thr+His+lactate+PO4.apporte; 0.575, 0.808, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.575, 0.808, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.582, 0.808, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.590, 0.808, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.590, 0.808, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.582, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+lactate+PO4.apporte; 0.590, 0.808, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.574, 0.808, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.582, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+His+lactate+PO4.apporte; 0.574, 0.808, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.582, 0.808, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.590, 0.808, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.590, 0.808, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.582, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.574, 0.808, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+Thr+His+lactate+PO4.apporte; 0.604, 0.808, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+Thr+His+lactate+PO4.apporte; 0.574, 0.808, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.597, 0.808, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.589, 0.808, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+lactate+PO4.apporte; 0.582, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+e. mission_CO2+Thr+lactate+PO4.apporte; 0.574, 0.808, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.597, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+rab+Thr+lactate+PO4.apporte; 0.589, 0.808, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+rab+Thr+lactate+PO4.apporte; 0.589, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+rab+Thr+His+lactate+PO4.apporte; 0.574, 0.808, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.581, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.573, 0.808, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.581, 0.808, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.589, 0.808, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.573, 0.808, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.603, 0.807, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+lactate+PO4.apporte; 0.589, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.603, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+PO4.apporte; 0.581, 0.807, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.588, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+lactate+PO4.apporte; 0.581, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.581, 0.807, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.588, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+His+lactate+PO4.apporte; 0.581, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.581, 0.807, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.581, 0.807, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+rab+Thr+His+lactate+PO4.apporte; 0.581, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.573, 0.807, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.564, 0.807, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.564, 0.807, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.573, 0.807, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.572, 0.807, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.580, 0.807, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.580, 0.807, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.580, 0.807, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.588, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.580, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.572, 0.807, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.580, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.572, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.572, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.580, 0.807, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.587, 0.807, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+lactate+PO4.apporte; 0.587, 0.807, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.580, 0.807, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.615, 0.807, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+Thr+PO4.apporte; 0.572, 0.807, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.587, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.580, 0.807, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.563, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.579, 0.807, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.587, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+rab+Thr+lactate+PO4.apporte; 0.579, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+lactate+PO4.apporte; 0.594, 0.807, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+lactate+PO4.apporte; 0.608, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+His+lactate+PO4.apporte; 0.579, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.571, 0.806, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.587, 0.806, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.571, 0.806, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.571, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.579, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.571, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.563, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.579, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+lactate+PO4.apporte; 0.601, 0.806, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+lactate+PO4.apporte; 0.579, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.579, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.586, 0.806, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.578, 0.806, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.578, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.570, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.578, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.570, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.570, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.570, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.570, 0.806, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.586, 0.806, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+lactate+PO4.apporte; 0.578, 0.806, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.586, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.570, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.561, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.607, 0.806, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+His+lactate+PO4.apporte; 0.578, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.570, 0.806, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.600, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+His+lactate+PO4.apporte; 0.600, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+lactate+PO4.apporte; 0.569, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+M. ain.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.577, 0.806, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+His+lactate+PO4.apporte; 0.577, 0.806, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.577, 0.806, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.569, 0.806, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+Thr+His+lactate+PO4.apporte; 0.577, 0.806, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.600, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+His+lactate+PO4.apporte; 0.592, 0.805, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+lactate+PO4.apporte; 0.585, 0.805, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+His+lactate+PO4.apporte; 0.585, 0.805, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.577, 0.805, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.569, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.569, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.606, 0.805, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+lactate+PO4.apporte; 0.599, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+rab+His+lactate+PO4.apporte; 0.569, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+lactate+PO4.apporte; 0.569, 0.805, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.577, 0.805, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.584, 0.805, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.577, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.569, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.584, 0.805, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.560, 0.805, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.569, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.606, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+lactate+PO4.apporte; 0.560, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.569, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.576, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+lactate+PO4.apporte; 0.568, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.584, 0.805, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.568, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.576, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.599, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+Thr+PO4.apporte; 0.599, 0.805, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+His+lactate+PO4.apporte; 0.568, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.599, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+rab+lactate+PO4.apporte; 0.576, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.560, 0.805, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.576, 0.805, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+rab+Thr+His+lactate+PO4.apporte; 0.598, 0.805, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+PO4.apporte; 0.598, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+His+lactate+PO4.apporte; 0.612, 0.805, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Thr+PO4.apporte; 0.560, 0.805, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.568, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.576, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+His+lactate+PO4.apporte; 0.576, 0.805, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.559, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.568, 0.805, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.568, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.568, 0.805, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.598, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+His+lactate+PO4.apporte; 0.568, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+His+lactate+PO4.apporte; 0.559, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.591, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+His+lactate+PO4.apporte; 0.568, 0.805, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.583, 0.805, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+lactate+PO4.apporte; 0.598, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+lactate+PO4.apporte; 0.575, 0.805, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+His+lactate+PO4.apporte; 0.575, 0.805, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.559, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.559, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.567, 0.804, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.567, 0.804, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.590, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+rab+His+lactate+PO4.apporte; 0.567, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.559, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.590, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+lactate+PO4.apporte; 0.590, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+lactate+PO4.apporte; 0.575, 0.804, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.575, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+lactate+PO4.apporte; 0.567, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.567, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.567, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.604, 0.804, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+lactate+PO4.apporte; 0.604, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Thr+His+PO4.apporte; 0.597, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+lactate+PO4.apporte; 0.597, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+His+lactate+PO4.apporte; 0.582, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+His+lactate+PO4.apporte; 0.558, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.597, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+PO4.apporte; 0.567, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.575, 0.804, tmp+Main.P-Source.Conc.+Main. Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.590, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+His+lactate+PO4.apporte; 0.597, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+His+lactate+PO4.apporte; 0.574, 0.804, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.566, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.574, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+lactate+PO4.apporte; 0.574, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.574, 0.804, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.597, 0.804, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+lactate+PO4.apporte; 0.590, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.597, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+lactate+PO4.apporte; 0.589, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+lactate+PO4.apporte; 0.589, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+His+lactate+PO4.apporte; 0.589, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+lactate+PO4.apporte; 0.589, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+rab+His+lactate+PO4.apporte; 0.574, 0.804, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.589, 0.804, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+lactate+PO4.apporte; 0.596, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+PO4.apporte; 0.574, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+rab+Thr+lactate+PO4.apporte; 0.582, 0.804, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.589, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+rab+His+lactate+PO4.apporte; 0.596, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+His+lactate+PO4.apporte; 0.589, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+lactate+PO4.apporte; 0.596, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+His+lactate+PO4.apporte; 0.596, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+lactate+PO4.apporte; 0.574, 0.804, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.574, 0.804, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.589, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+His+lactate+PO4.apporte; 0.596, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+lactate+PO4.apporte; 0.574, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+His+lactate+PO4.apporte; 0.574, 0.804, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.596, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+His+lactate+PO4.apporte; 0.557, 0.804, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.574, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+His+lactate+PO4.apporte; 0.589, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.581, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+lactate+PO4.apporte; 0.596, 0.804, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+lactate+PO4.apporte; 0.589, 0.804, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+His+lactate+PO4.apporte; 0.557, 0.804, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.557, 0.803, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.589, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.565, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.565, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.557, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.588, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_CO2+His+lactate+PO4.apporte; 0.565, 0.803, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.588, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+rab+lactate+PO4.apporte; 0.603, 0.803, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+PO4.apporte; 0.581, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+His+lactate+PO4.apporte; 0.581, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+His+lactate+PO4.apporte; 0.557, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.573, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.573, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.581, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.588, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.565, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.565, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.565, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.588, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+PO4.apporte; 0.573, 0.803, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.588, 0.803, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+His+lactate+PO4.apporte; 0.588, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+lactate+PO4.apporte; 0.580, 0.803, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+His+lactate+PO4.apporte; 0.595, 0.803, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+His+lactate+PO4.apporte; 0.565, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.588, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.602, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+Thr+PO4.apporte; 0.580, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+rab+Thr+His+lactate+PO4.apporte; 0.588, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+lactate+PO4.apporte; 0.602, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+Thr+PO4.apporte; 0.595, 0.803, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+lactate+PO4.apporte; 0.580, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.572, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.587, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+PO4.apporte; 0.564, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.580, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.587, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+lactate+PO4.apporte; 0.587, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+lactate+PO4.apporte; 0.572, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.580, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.572, 0.803, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.580, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+Thr+lactate+PO4.apporte; 0.580, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.587, 0.803, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+PO4.apporte; 0.587, 0.803, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+His+lactate+PO4.apporte; 0.595, 0.803, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+lactate+PO4.apporte; 0.587, 0.803, pH+tm. p+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+His+lactate+PO4.apporte; 0.580, 0.803, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+rab+Thr+His+lactate+PO4.apporte; 0.564, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.572, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+rab+Thr+His+lactate+PO4.apporte; 0.580, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+lactate+PO4.apporte; 0.580, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.580, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.587, 0.803, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+His+lactate+PO4.apporte; 0.587, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+His+lactate+PO4.apporte; 0.564, 0.803, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.587, 0.803, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.563, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.587, 0.803, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+His+lactate+PO4.apporte; 0.587, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+lactate+PO4.apporte; 0.555, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.587, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.579, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+rab+Thr+His+lactate+PO4.apporte; 0.555, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.601, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+His+lactate+PO4.apporte; 0.579, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.601, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+Thr+PO4.apporte; 0.579, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.563, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+lactate+PO4.apporte; 0.555, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.586, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+lactate+PO4.apporte; 0.563, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.571, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.586, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+lactate+PO4.apporte; 0.579, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.601, 0.802, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+lactate+PO4.apporte; 0.579, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+His+lactate+PO4.apporte; 0.563, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.579, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+rab+His+lactate+PO4.apporte; 0.586, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+lactate+PO4.apporte; 0.586, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+His+lactate+PO4.apporte; 0.571, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.586, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.586, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+PO4.apporte; 0.586, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.607, 0.802, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+His+lactate+PO4.apporte; 0.571, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.586, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+His+lactate+PO4.apporte; 0.600, 0.802, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+PO4.apporte; 0.571, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+lactate+PO4.apporte; 0.562, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.571, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.593, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+lactate+PO4.apporte; 0.578, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+lactate+PO4.apporte; 0.562, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.593, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+His+lactate+PO4.apporte; 0.562, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.578, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.554, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.578, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+rab+His+lactate+PO4.apporte; 0.570, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+rab+Thr+His+lactate+PO4.apporte; 0.562, 0.802, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.570, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.586, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+His+lactate+PO4.apporte; 0.554, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.562, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+rab+Thr+His+lactate+PO4.apporte; 0.570, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.554, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.606, 0.802, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+lactate+PO4.apporte; 0.570, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.553, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.562, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.592, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+His+lactate+PO4.apporte; 0.599, 0.802, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+His+lactate+PO4.apporte; 0.585, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+rab+Thr+lactate+PO4.apporte; 0.562, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+Thr+His+lactate+PO4.apporte; 0.585, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+PO4.apporte; 0.599, 0.802, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+Thr+His+PO4.apporte; 0.562, 0.802, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.577, 0.802, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+lactate+PO4.apporte; 0.577, 0.802, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+lactate+PO4.apporte; 0.577, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.585, 0.802, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+His+lactate+PO4.apporte; 0.561, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.577, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+His+lactate+PO4.apporte; 0.577, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+lactate+PO4.apporte; 0.592, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+PO4.apporte; 0.553, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.577, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+His+lactate+PO4.apporte; 0.553, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.569, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.c. onc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.599, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Thr+PO4.apporte; 0.553, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.553, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.592, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+Thr+His+PO4.apporte; 0.569, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.561, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.577, 0.801, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+His+lactate+PO4.apporte; 0.577, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.569, 0.801, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.584, 0.801, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+His+lactate+PO4.apporte; 0.577, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+His+lactate+PO4.apporte; 0.577, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+lactate+PO4.apporte; 0.561, 0.801, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.584, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+PO4.apporte; 0.592, 0.801, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+lactate+PO4.apporte; 0.577, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+lactate+PO4.apporte; 0.592, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+PO4.apporte; 0.577, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+rab+Thr+lactate+PO4.apporte; 0.552, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.599, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+Thr+PO4.apporte; 0.569, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.577, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.552, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.591, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+PO4.apporte; 0.569, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.612, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PO4.apporte; 0.598, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+PO4.apporte; 0.605, 0.801, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+Thr+PO4.apporte; 0.584, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+His+lactate+PO4.apporte; 0.560, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.569, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.576, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+lactate+PO4.apporte; 0.543, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.591, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+His+lactate+PO4.apporte; 0.568, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+rab+Thr+His+lactate+PO4.apporte; 0.605, 0.801, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Thr+His+PO4.apporte; 0.576, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+PO4.apporte; 0.611, 0.801, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Thr+PO4.apporte; 0.560, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+lactate+PO4.apporte; 0.576, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.568, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+His+lactate+PO4.apporte; 0.584, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+His+lactate+PO4.apporte; 0.598, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+PO4.apporte; 0.584, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+PO4.apporte; 0.576, 0.801, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+His+lactate+PO4.apporte; 0.598, 0.801, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+His+lactate+PO4.apporte; 0.583, 0.801, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+His+lactate+PO4.apporte; 0.576, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.576, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+lactate+PO4.apporte; 0.551, 0.801, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.568, 0.801, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.576, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+rab+Thr+His+lactate+PO4.apporte; 0.576, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+lactate+PO4.apporte; 0.591, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+His+lactate+PO4.apporte; 0.568, 0.801, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+His+lactate+PO4.apporte; 0.590, 0.801, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+PO4.apporte; 0.590, 0.801, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+rab+His+lactate+PO4.apporte; 0.568, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+Thr+lactate+PO4.apporte; 0.551, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.559, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+His+lactate+PO4.apporte; 0.568, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+lactate+PO4.apporte; 0.604, 0.800, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+lactate+PO4.apporte; 0.559, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.583, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+lactate+PO4.apporte; 0.575, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+His+lactate+PO4.apporte; 0.575, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+His+lactate+PO4.apporte; 0.583, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+PO4.apporte; 0.575, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+His+lactate+PO4.apporte; 0.542, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.567, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+His+lactate+PO4.apporte; 0.550, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.559, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.567, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+lactate+PO4.apporte; 0.575, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+His+lactate+PO4.apporte; 0.582, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+rab+His+lactate+PO4.apporte; 0.559, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.582, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+lactate+PO4.apporte; 0.582, 0.800, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+His+PO4.apporte; 0.550, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.590, 0.800, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+Thr+His+PO4.apporte; 0.567, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+His+lactate+PO4.apporte; 0.559, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.567, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+His+lactate+PO4.apporte; 0.590, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+lactate+PO4.apporte; 0.590, 0.800, pH+t. mp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Thr+His+PO4.apporte; 0.567, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.567, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.575, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+lactate+PO4.apporte; 0.558, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.558, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+Thr+His+lactate+PO4.apporte; 0.582, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+His+lactate+PO4.apporte; 0.558, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.558, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+His+lactate+PO4.apporte; 0.566, 0.800, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.582, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+PO4.apporte; 0.574, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+His+lactate+PO4.apporte; 0.582, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.603, 0.800, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+PO4.apporte; 0.574, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+His+lactate+PO4.apporte; 0.574, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+lactate+PO4.apporte; 0.558, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.574, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+lactate+PO4.apporte; 0.589, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+His+lactate+PO4.apporte; 0.582, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+His+lactate+PO4.apporte; 0.574, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.582, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+His+lactate+PO4.apporte; 0.582, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+Thr+His+PO4.apporte; 0.566, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.566, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.589, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+PO4.apporte; 0.596, 0.800, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+His+lactate+PO4.apporte; 0.574, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.566, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.574, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.566, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+Thr+lactate+PO4.apporte; 0.540, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.574, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+PO4.apporte; 0.581, 0.800, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+PO4.apporte; 0.581, 0.800, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.589, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+rab+Thr+PO4.apporte; 0.581, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+His+lactate+PO4.apporte; 0.549, 0.800, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.574, 0.800, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+His+lactate+PO4.apporte; 0.558, 0.800, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+His+lactate+PO4.apporte; 0.581, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+His+lactate+PO4.apporte; 0.596, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+lactate+PO4.apporte; 0.581, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+lactate+PO4.apporte; 0.581, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+rab+His+lactate+PO4.apporte; 0.566, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.549, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.588, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+Thr+PO4.apporte; 0.602, 0.799, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+PO4.apporte; 0.557, 0.799, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.549, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.573, 0.799, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+rab+His+lactate+PO4.apporte; 0.557, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+Thr+His+lactate+PO4.apporte; 0.573, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+Thr+lactate+PO4.apporte; 0.581, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+lactate+PO4.apporte; 0.595, 0.799, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+lactate+PO4.apporte; 0.549, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.602, 0.799, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+PO4.apporte; 0.540, 0.799, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.557, 0.799, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+lactate+PO4.apporte; 0.557, 0.799, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.602, 0.799, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+PO4.apporte; 0.588, 0.799, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+His+lactate+PO4.apporte; 0.565, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+lactate+PO4.apporte; 0.557, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.602, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Thr+PO4.apporte; 0.557, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.580, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+Thr+lactate+PO4.apporte; 0.573, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+rab+Thr+lactate+PO4.apporte; 0.557, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.588, 0.799, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+His+lactate+PO4.apporte; 0.565, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.573, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+rab+His+lactate+PO4.apporte; 0.539, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.556, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.580, 0.799, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+lactate+PO4.apporte; 0.580, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+rab+Thr+His+lactate+PO4.apporte; 0.548, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.573, 0.799, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+His+PO4.apporte; 0.556, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.580, 0.799, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+Thr+PO4.apporte; 0.564, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+His+lactate+PO4.apporte; 0.572, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+His+lactate+PO4.apporte; 0.548, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.556, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+Thr+His+lactate+PO4.apporte; 0.587, 0.799. , pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+PO4.apporte; 0.556, 0.799, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.556, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.564, 0.799, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+lactate+PO4.apporte; 0.594, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+rab+Thr+PO4.apporte; 0.587, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+Thr+PO4.apporte; 0.548, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.594, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+lactate+PO4.apporte; 0.539, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.594, 0.799, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+lactate+PO4.apporte; 0.587, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+lactate+PO4.apporte; 0.580, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+His+lactate+PO4.apporte; 0.587, 0.799, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+Thr+PO4.apporte; 0.587, 0.799, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+PO4.apporte; 0.580, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.580, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+lactate+PO4.apporte; 0.594, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+His+lactate+PO4.apporte; 0.579, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+His+lactate+PO4.apporte; 0.594, 0.799, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+rab+Thr+PO4.apporte; 0.564, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+rab+Thr+His+lactate+PO4.apporte; 0.579, 0.799, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+PL+His+lactate+PO4.apporte; 0.594, 0.799, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+Thr+PO4.apporte; 0.601, 0.799, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+PO4.apporte; 0.579, 0.799, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.587, 0.798, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+His+lactate+PO4.apporte; 0.579, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+rab+lactate+PO4.apporte; 0.587, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+PO4.apporte; 0.587, 0.798, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+PL+lactate+PO4.apporte; 0.555, 0.798, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_O2+Thr+His+lactate+PO4.apporte; 0.587, 0.798, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+His+lactate+PO4.apporte; 0.601, 0.798, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+Thr+PO4.apporte; 0.572, 0.798, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+His+PO4.apporte; 0.564, 0.798, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.587, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+emission_O2+Thr+PO4.apporte; 0.594, 0.798, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+Thr+PO4.apporte; 0.587, 0.798, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+lactate+PO4.apporte; 0.594, 0.798, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+lactate+PO4.apporte; 0.555, 0.798, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.563, 0.798, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.594, 0.798, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+rab+lactate+PO4.apporte; 0.571, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.sugar+PL+rab+His+lactate+PO4.apporte; 0.586, 0.798, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+Thr+PO4.apporte; 0.571, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+rab+lactate+PO4.apporte; 0.547, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.555, 0.798, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+rab+Thr+His+lactate+PO4.apporte; 0.563, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_CO2+His+lactate+PO4.apporte; 0.586, 0.798, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+Thr+His+PO4.apporte; 0.593, 0.798, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+lactate+PO4.apporte; 0.579, 0.798, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+Thr+PO4.apporte; 0.579, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+His+lactate+PO4.apporte; 0.579, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+lactate+PO4.apporte; 0.586, 0.798, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+PL+lactate+PO4.apporte; 0.546, 0.798, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.sugar+emission_CO2+rab+Thr+His+lactate+PO4.contribution; 0.546, 0.798, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+emission_CO2+His+lactate+PO4.contribution; 0.571, 0.798, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+PL+emission_CO2+lactate+PO4.contribution; 0.563, 0.798, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+total.sugar+emission_O2+His+lactate+PO4.contribution; 0.579, 0.798, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.contribution.

[0120] [12:International 2 of the 2013 FIFA World Cup] 0.775, 0.900, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.900, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.774, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.766, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.778, 0.899, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.769, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.778, 0.899, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.769, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.769, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.781, 0.899, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.764, 0.899, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.898, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.775, 0.898, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.766, 0.898, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.898, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.898, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.774, 0.897, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.766, 0.897, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.897, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.897, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.769, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.769, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.773, 0.897, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.769, 0.897, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.897, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.769, 0.897, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.773, 0.897, tmp+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.897, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.897, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.897, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.773, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.773, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.769, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.773, 0.897, tmp+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.897, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.768, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.773, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.897, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.764, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.755, 0.897, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.768, 0.897, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.768, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.759, 0.897, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte; 0.776, 0.897, tmp+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.764, 0.897, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.768, 0.897, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.776, 0.897, Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte; 0.759, 0.897, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.768, 0.896, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.755, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.896, tmp+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.759, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.759, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.754, 0.896, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.763, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.772, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.768, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.896, Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.754, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.768, 0.896, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.768, 0.896, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.767, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.759, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.767, 0.896, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.767, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.763, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.896, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.V. ol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.754, 0.896, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.767, 0.896, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.767, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.758, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.767, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.754, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.767, 0.896, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.896, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.775, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.758, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.753, 0.896, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.767, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.762, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.896, tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.753, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.766, 0.896, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.770, 0.896, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.757, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.753, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.766, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.757, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.766, 0.896, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.753, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.762, 0.896, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.762, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.766, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.766, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.753, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.762, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.757, 0.896, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.896, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.766, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.757, 0.895, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.766, 0.895, tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.766, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.766, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.752, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.766, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.757, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.766, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.752, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.766, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte; 0.757, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.757, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.778, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.761, 0.895, tmp+Main.P-Sou. rce.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.895, tmp+P-Source.Feed.conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.utilise; 0.765, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.777, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.770, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.895, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.769, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.769, 0.895, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.769, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.895, Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.777, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.apporte; 0.773, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.769, 0.895, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte; 0.761, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.769, 0.895, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.756, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.895, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.761, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.781, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte; 0.751, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.765, 0.895, tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.765, 0.895, Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.751, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.769, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.765, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.895, tmp+P-Source.Feed.conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.765, 0.895, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.760, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.773, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.760, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.760, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.760, 0.895, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.760, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.769, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.760, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.768, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.768, 0.895, pH+tmp+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.760, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.895, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.768, 0.895, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.755, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.760, 0.895, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.895, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.772, 0.895, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.768, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.768, 0.895, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.895, tmp+P-Source.Feed.conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.760, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.895, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.768, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.772, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte; 0.750, 0.895, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.895, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.764, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.utilise; 0.759, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.759, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.759, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.759, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.894. , tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte; 0.764, 0.894, tmp+P-Source.Feed.conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.750, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.894, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.759, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.768, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.772, 0.894, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.754, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.754, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.768, 0.894, tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.759, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.759, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.759, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.apporte; 0.759, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.763, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.763, 0.894, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.745, 0.894, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.894, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.894, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, tmp+P-Source.Feed.conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.771, 0.894, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.759, 0.894, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.767, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.749, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, pH+tmp+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.749, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.763, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.754, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.754, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.759, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.763, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.749, 0.894, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.754, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.763, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.749, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.767, 0.894, Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.758, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.894, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte; 0.744, 0.894, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.894, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.754, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.763, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.754, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.767, 0.894, tmp+P-Source.Feed.conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.763, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.763, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.749, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.771, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.894, tmp+P-Source.Feed.conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.758, 0.894, pH+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, pH+tmp+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.767, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.749, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.767, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, tmp+P-Source.Feed.conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.758, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.763, 0.894, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.749, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.749, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.749, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.754, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.754, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.754, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+P. O4.apporte+PO4.utilise; 0.754, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.749, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.762, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.762, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.762, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.758, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.762, 0.894, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.749, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, pH+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.749, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.758, 0.894, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.749, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.753, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.748, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.748, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.771, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.748, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.744, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.762, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.753, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.758, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.894, pH+tmp+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.758, 0.894, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.743, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.753, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.743, 0.894, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.758, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.748, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.758, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.770, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte; 0.753, 0.894, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.766, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.758, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.758, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.753, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.758, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.753, 0.894, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.748, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.766, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.; 0.753, 0.894, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.748, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.743, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.748, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.894, tmp+P-Source.Feed.conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte; 0.757, 0.894, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.748, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.762, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.743, 0.894, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.894, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.743, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.893, tmp+P-Source.Feed.conc.+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.770, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.apporte; 0.743, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.762, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.774, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.893, pH+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0. 757, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.753, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.748, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.762, 0.893, tmp+P-Source.Feed.conc.+Main.Thr.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.766, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.762, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.748, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.748, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.748, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.748, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.753, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.753, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.770, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.748, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.748, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.743, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.748, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.766, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte; 0.748, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.748, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.748, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.770, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.743, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.757, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.748, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.761, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+Thr+His+lactate+PO4.apporte; 0.757, 0.893, tmp+P-Source.Feed.conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.742, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+P-Source.Feed.conc.+Main.Thr.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.774, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+P-Source.Feed.conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.757, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.757, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+em. ission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.742, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.utilise; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.utilise; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.742, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.893, tmp+P-Source.Feed.conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.761, 0.893, tmp+P-Source.Feed.conc.+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.761, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.742, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.765, 0.893, tmp+P-Source.Feed.conc.+Lys_conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.773, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.757, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+P-Source.Feed.conc.+Lys_conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.757, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.761, 0.893, tmp+P-Source.Feed.conc.+Main.Thr.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.757, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.761, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.apporte; 0.769, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.742, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.utilise; 0.756, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.742, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte; 0.747, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, Main.P-Source.C. onc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.752, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.747, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.752, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.742, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.777, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+lactate+PO4.apporte; 0.761, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.756, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.761, 0.893, tmp+P-Source.Feed.conc.+Lys_conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, tmp+P-Source.Feed.conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte; 0.747, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.747, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte; 0.756, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.765, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte; 0.747, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.760, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.742, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.747, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.756, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.741, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.760, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.741, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.741, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.746, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.769, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte; 0.756, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.741, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.746, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.893, tmp+P-Source.Feed.conc.+Main.Thr.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.760, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, pH+tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.756, 0.893, pH+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.773, 0.893, tmp+P-Source.Feed.conc.+PL+emission_CO2+His+lactate+PO4.apporte; 0.741, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.769, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.764, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte; 0.760, 0.893, tmp+P-Source.Feed.conc.+OD+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.746, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.746, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.893, tmp+P-Source.Feed.conc.+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.760, 0.893, pH+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.760, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.764, 0. .893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+His+lactate+PO4.apporte; 0.760, 0.893, tmp+P-Source.Feed.conc.+Lys_conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.746, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.756, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.764, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.756, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.756, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.741, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.741, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.756, 0.893, Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.741, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.760, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+rab+His+lactate+PO4.apporte; 0.764, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_CO2+His+lactate+PO4.apporte; 0.755, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.741, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.741, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.760, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.apporte; 0.760, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.746, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.893, pH+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.893, tmp+P-Source.Feed.conc.+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.751, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.760, 0.893, pH+tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.746, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.741, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.746, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.741, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.746, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.741, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.760, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.768, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+His+lactate+PO4.apporte; 0.755, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.893, tmp+P-Source.Feed.conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.764, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.893, tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.741, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.893, pH+tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.755, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.746, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.755, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.751, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.741, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.746, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.764, 0.893, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.746, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+PL+emission_CO2+rab+His+lactate+PO4.apporte; 0.760, 0.893, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte+PO4.utilise; 0.755, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.760, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.751, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.893, Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.755, 0.893, tmp+P-Source.Feed.conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.741, 0.893, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.893, Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.746, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.746, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.746, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.760, 0.893, tmp+Main.P-Source.Conc.+Ni. trogen.Conc.+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.893, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.751, 0.893, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.760, 0.893, pH+tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte; 0.760, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.apporte; 0.760, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.746, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.746, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.750, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.741, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.892, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.755, 0.892, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.746, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+Thr+His+lactate+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.755, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.760, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.755, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.746, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.746, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.755, 0.892, pH+tmp+P-Source.Feed.conc.+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.892, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.750, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.746, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.746, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+yield+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+lactate+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.759, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.892, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+yield+PL+emission_CO2+His+lactate+PO4.apporte; 0.764, 0.892, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.892, pH+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.741, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+emission_O2+emission_CO2+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+OD+PL+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.768, 0.892, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.764, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.745, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+OD+Lys_conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.772, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+lactate+PO4.apporte; 0.764, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.892, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.755, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.utilise; 0.750, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.892, Main.P-Source.Conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+yield+emission_O2+emission_CO2+His+lactate+PO4.apporte+PO4.utilise; 0.745, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.764, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.740, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+rab+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.768, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.ferm.+PO4.utilise; 0.740, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.750, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.750, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+rab+Thr+His+lactate+PO4.apporte; 0.772, 0.892, Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+emission_CO2+lactate+PO4.apporte; 0.755, 0.892, Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.apporte+PO4.utilise; 0.759, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.745, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+His+lactate+PO4.ferm.+PO4.apporte; 0.755, 0.892, pH+tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.745, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.764, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.745, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+OD+total.Vol+PL+emission_CO2+rab+His+lactate+PO4.apporte+PO4.utilise; 0.755, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+lactate+PO4.apporte+PO4.utilise; 0.759, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_CO2+rab+Thr+lactate+PO4.apporte+PO4.utilise; 0.745, 0.892, tmp+Main.P-Source.Conc.+N. itrogen.Conc.+Lys_conc.+total.Vol+PL+emission_O2+emission_CO2+His+lactate+SO4.ferm.+PO4.ferm.+PO4.apporte; 0.755, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.ferm.+PO4.utilise; 0.745, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+yield+PL+emission_CO2+rab+His+lactate+SO4.ferm.+PO4.apporte+PO4.utilise; 0.755, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+total.Vol+emission_O2+emission_CO2+rab+Thr+lactate+PO4.ferm.+PO4.apporte; 0.759, 0.892, tmp+Main.P-Source.Conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_CO2+His+lactate+PO4.apporte; 0.759, 0.892, tmp+Main.P-Source.Conc.+Nitrogen.Conc.+PL+emission_O2+emission_CO2+Thr+lactate+PO4.apporte+PO4.utilise; 0.740, 0.892, tmp+Main.P-Source.Conc.+P-Source.Feed.conc.+Main.Thr.Conc.+Nitrogen.Conc.+total.Vol+PL+emission_O2+emission_CO2+Thr+His+lactate+PO4.ferm.+PO4.apporte; 0.750, 0.892, tmp+Main.P...

Claims

1. A control device for controlling culture conditions in the production of an organic compound by fermentation, acquiring culture data, calculating a production amount for each candidate at a future time using a preset multiple regression equation that outputs the acquired culture data, a plurality of preset culture condition candidates, and a production amount for the organic compound at a future time, determining an optimal candidate from among the plurality of candidates using the calculated production amount for each candidate at a future time and a preset target production amount for the organic compound at a future time, and changing the culture conditions to the determined candidate; The multiple regression equation and target production amount are set for each run. A control device characterized by:

2. The future time is the time when the next processing will be performed, The control device according to claim 1 ,

3. determining, as the optimum candidate, the candidate that corresponds to the production amount at the future time closest to the target production amount; 3. The control device according to claim 1 or 2,

4. Multiple multiple regression equations are set for each test, determining an optimal candidate from among the plurality of candidates using sample statistics and target productions for each candidate based on a plurality of productions at future time periods for each candidate; 4. The control device according to claim 1, wherein:

5. The organic compound is an amino acid, 5. The control device according to claim 1, wherein:

6. The amino acid is a basic amino acid, The control device according to claim 5 ,

7. the basic amino acid is lysine or arginine; The control device according to claim 6 ,

8. the culture conditions include conditions related to temperature, pH or phosphate concentration; 8. The control device according to claim 1, wherein:

9. A control method executed by a control device that controls culture conditions in the production of an organic compound by fermentation, comprising: the control device acquires culture data, calculates a production amount for each candidate at a future time using a preset multiple regression equation that outputs the acquired culture data, a plurality of preset candidates for culture conditions, and a production amount of the organic compound at a future time, determines an optimal candidate from among the plurality of candidates using the calculated production amount for each candidate at a future time and a preset target production amount of the organic compound at a future time, and executes a process of changing the culture conditions to the determined candidate multiple times; The multiple regression equation and target production amount are set for each run. A control method characterized by:

10. A program to be executed by a control device that controls culture conditions in the production of an organic compound by fermentation, and causing the control device to execute a process of acquiring culture data, calculating a production amount for each candidate at a future time using a preset multiple regression equation that outputs the acquired culture data, a plurality of preset candidates for culture conditions, and a production amount for each candidate at a future time, determining an optimal candidate from among the plurality of candidates using the calculated production amount for each candidate at a future time and a preset target production amount for the organic compound at a future time, and changing the culture conditions to the determined candidate, multiple times. The multiple regression equation and the target production amount are set for each run. program.

11. A method for producing an organic compound, comprising the step of producing an organic compound by a production system having the control device according to claim 1.

12. 12. The method of claim 11, wherein the organic compound is an amino acid.

13. 13. The method of claim 12, wherein the amino acid is a basic amino acid.

14. 14. The method of claim 13, wherein the basic amino acid is lysine or arginine.

Citation Information

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