A method and platform for purifying contaminated soil based on a bacterial colony system

CN120662639BActive Publication Date: 2026-08-11SICHUAN ACAD OF ENVIRONMENTAL SCI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0004]基于此,有必要针对随机进行边缘计算网关净化综合管理界面进行单位时间污染土壤面积数据可视化发出问题,提供一种基于菌落系统的污染土壤净化方法和净化平台

Benefits of technology

[0019] The aforementioned management method and system for visualizing contaminated soil area data per unit time using the edge computing gateway's integrated management interface for soil remediation involves statistically analyzing the degree of remediation required based on the visualized data and comparing it with preset baseline parameters. This management of the degree of remediation achieved by controlling the visualized data on the edge computing gateway's integrated management interface for soil remediation per unit time addresses the challenges of predictive complexity and low accuracy associated with existing random remediation methods. The present invention, based on a colony system, provides a method and platform for contaminated soil remediation that manages the degree of remediation required based on the visualized data on the edge computing gateway's integrated management interface for soil remediation per unit time. This management addresses the challenges of remediation management difficulty, operability, and horizontal differences in the visualized data, improving the usability of the contaminated soil nutrient content data control platform and enhancing the accuracy of remediation. The present invention utilizes an edge computing gateway to achieve real-time monitoring and intelligent management of soil pollution, and improves the accuracy and flexibility of the remediation process through dynamic adjustment of remediation standards and precise environmental monitoring.

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Abstract

This invention relates to a method and platform for contaminated soil remediation based on a microbial community system, comprising: collecting parameter data of contaminated soil in the microbial community system; using the data in the microbial community system to visualize the area of ​​contaminated soil per unit time using an edge computing gateway remediation management interface; using the edge computing gateway remediation management interface to visualize the degree of remediation of the area of ​​contaminated soil per unit time; and statistically analyzing whether the degree of remediation of the area of ​​contaminated soil per unit time visualized by the edge computing gateway remediation management interface is greater than a preset remediation benchmark parameter. This invention utilizes an edge computing gateway to achieve real-time monitoring and intelligent management of soil pollution, and improves the accuracy and flexibility of the remediation process by dynamically adjusting remediation standards and precise environmental monitoring.
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Description

Technical Field

[0001] This invention relates to the field of contaminated soil remediation, and in particular to a method and platform for contaminated soil remediation based on a microbial colony system. Background Technology

[0002] With the continuous advancement of industrialization and urbanization, soil pollution has become increasingly serious, especially on agricultural and industrial land. The accumulation of pollutants such as heavy metals and organic pollutants poses a significant threat to the ecological environment and human health. Traditional soil remediation methods, such as physical cleanup and chemical degradation, typically suffer from drawbacks such as high costs, long treatment cycles, and significant environmental damage. In recent years, bioremediation, as an environmentally friendly and economical soil pollution control technology, has received widespread attention. In particular, soil purification methods based on microbial systems, by utilizing microorganisms to degrade pollutants, can not only effectively degrade harmful substances in the soil but also improve soil structure and restore its ecological functions, becoming a current hot topic in soil pollution remediation research.

[0003] Existing microbial colony remediation technologies primarily rely on natural or artificial inoculation of microorganisms to remove organic pollutants and heavy metals from soil through microbial degradation. However, these technologies still have some limitations in practical applications. First, the stability of the microbial community after inoculation is poor, easily affected by changes in the external environment (such as temperature, humidity, and pH), leading to unstable degradation effects. Second, the metabolic products and dynamic changes of the microbial community are difficult to predict, making real-time monitoring and control challenging. Furthermore, the evaluation of the remediation effect of microbial colony systems typically relies on traditional laboratory testing methods, making real-time monitoring and adjustment during large-scale soil remediation difficult. This limits the application effectiveness of microbial colony systems and results in low remediation efficiency. Summary of the Invention

[0004] Based on this, it is necessary to address the issue of visualizing the area of ​​contaminated soil per unit time in the integrated management interface of edge computing gateway purification, and to provide a contaminated soil purification method and platform based on a colony system.

[0005] A method for remediating contaminated soil based on a microbial community system includes:

[0006] Data were collected on the inoculation amount and density of microorganisms in the contaminated soil, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity in the microbial system.

[0007] Using data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity in the contaminated soil of the aforementioned microbial system, the contaminated soil area per unit time is visualized using the edge computing gateway purification integrated management interface. The visualization of contaminated soil area per unit time in the edge computing gateway purification integrated management interface includes the stability of the microbial community, metabolic type, biofilm formation ability, microbial community metabolites, dynamic changes of the microbial community, and information on external inducing factors during the purification of the microbial system.

[0008] The edge computing gateway's integrated management interface is used to visualize the degree of need for purification of contaminated soil area data per unit time.

[0009] The system statistically analyzes whether the degree of soil pollution area data per unit time visualized by the edge computing gateway purification integrated management interface is greater than the preset benchmark parameter for soil pollution area.

[0010] When the degree of soil remediation required, as visualized by the edge computing gateway's integrated management interface for soil remediation per unit time, is greater than the preset baseline parameter, the data is simultaneously transmitted to the soil nutrient content monitoring interface. Conversely, when the degree of soil remediation required, as visualized by the edge computing gateway's integrated management interface for soil remediation per unit time, is not greater than the preset baseline parameter, the data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity in the microbial system are re-analyzed. The data on the degree of soil remediation required is then visualized and analyzed again using the edge computing gateway's integrated management interface for soil remediation per unit time.

[0011] A contaminated soil remediation platform based on a microbial community system includes:

[0012] The colony system data acquisition module is used to collect data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity in contaminated soil within the colony system.

[0013] The edge computing gateway purification integrated management interface statistics and analysis module is connected to the colony system data acquisition module. It is used to visualize the polluted soil area per unit time using data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity in the polluted soil in the colony system. The visualization of polluted soil area per unit time by the edge computing gateway purification integrated management interface includes the stability of the bacterial community, metabolic type, biofilm formation ability, bacterial community metabolites, dynamic changes of the bacterial community, and information on external inducing factors during the purification of the colony system.

[0014] The purification level module is connected to the edge computing gateway purification integrated management interface statistics and analysis module, and is used to statistically analyze the purification level of the edge computing gateway purification integrated management interface used by the edge computing gateway purification integrated management interface statistics and analysis module to visualize the polluted soil area data per unit time.

[0015] The purification level decision module, connected to the purification level module, is used to statistically analyze whether the purification level of the polluted soil area data per unit time visualized by the edge computing gateway purification integrated management interface is greater than the preset purification benchmark parameter.

[0016] The contaminated soil nutrient content data transmission module is connected to the edge computing gateway purification integrated management interface statistics and analysis module and the purification degree decision module. It is used to utilize the signal from the purification degree decision module, which indicates that the purification degree of the contaminated soil area data visualization per unit time in the edge computing gateway purification integrated management interface is greater than the preset purification benchmark parameter, to visualize the contaminated soil area data per unit time in the edge computing gateway purification integrated management interface, and at the same time transmit the data to the contaminated soil nutrient content monitoring interface per unit area.

[0017] The soil nutrient content pH, temperature, humidity, and oxygen concentration data monitoring module is used to visualize the degree of purification of contaminated soil per unit area through the edge computing gateway purification management interface. This module is used to statistically analyze the degree of purification of contaminated soil per unit area by providing data visualization of contaminated soil area per unit time. Specifically, this module is used to statistically analyze the degree and range of purification of pH, temperature, humidity, and oxygen concentration data in the contaminated soil. It also uses the edge computing gateway purification management interface to statistically analyze the dynamically updated data range of pH, temperature, humidity, and oxygen concentration data in the contaminated soil per unit time through various edge computing gateway purification management interfaces. Furthermore, it uses the degree of purification, range information, and update information to statistically analyze the updated degree of purification of pH, temperature, humidity, and oxygen concentration data in the contaminated soil.

[0018] The present invention has the following beneficial effects:

[0019] The aforementioned management method and system for visualizing contaminated soil area data per unit time using the edge computing gateway's integrated management interface for soil remediation involves statistically analyzing the degree of remediation required based on the visualized data and comparing it with preset baseline parameters. This management of the degree of remediation achieved by controlling the visualized data on the edge computing gateway's integrated management interface for soil remediation per unit time addresses the challenges of predictive complexity and low accuracy associated with existing random remediation methods. The present invention, based on a colony system, provides a method and platform for contaminated soil remediation that manages the degree of remediation required based on the visualized data on the edge computing gateway's integrated management interface for soil remediation per unit time. This management addresses the challenges of remediation management difficulty, operability, and horizontal differences in the visualized data, improving the usability of the contaminated soil nutrient content data control platform and enhancing the accuracy of remediation. The present invention utilizes an edge computing gateway to achieve real-time monitoring and intelligent management of soil pollution, and improves the accuracy and flexibility of the remediation process through dynamic adjustment of remediation standards and precise environmental monitoring. Attached Figure Description

[0020] Figure 1 This is a flowchart of a method for purifying contaminated soil based on a colony system according to the present invention;

[0021] Figure 2 This is a modular composition diagram of a contaminated soil purification platform based on a colony system according to the present invention. Detailed Implementation

[0022] It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. The following describes the application in further detail with reference to the accompanying drawings and specific embodiments.

[0023] like Figure 1 As shown, this is a process of a contaminated soil purification method and purification platform based on a colony system according to one embodiment of the present invention.

[0024] Step S100: Collect data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity in the contaminated soil of the colony system.

[0025] Specifically, the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the bacterial community during the purification process are preferably the factors with the greatest influence on purification management, statistically analyzed using the purification management content. Generally, obtaining the information on the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the bacterial community during purification should facilitate the completion of data on pH, temperature, humidity, and oxygen concentration in the polluted soil nutrients set according to the purification management content. For example, for antagonistic purification management, the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the bacterial community during purification can be set as target characteristics or roles with the greatest combat effectiveness. Data on the inoculation amount and density of microbial colonies in a microbial system, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity can include: stability of the microbial community during the purification of the microbial system, metabolic type, biofilm formation ability, microbial metabolites, dynamic changes of the microbial community, and the number, size, and location of external inducing factors.

[0026] Step S200: Using data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity of the contaminated soil in the colony system, visualize the area of ​​contaminated soil per unit time using the edge computing gateway purification integrated management interface.

[0027] The edge computing gateway's integrated management interface visualizes the area of ​​contaminated soil per unit time, including the stability of the microbial community, metabolic type, biofilm formation ability, microbial metabolites, dynamic changes of the microbial community, and information on external inducing factors during the purification process of the microbial community system.

[0028] Specifically, the visualization of contaminated soil area per unit time in the edge computing gateway purification management interface should include information on the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during purification. The visualization of contaminated soil area per unit time in the edge computing gateway purification management interface should also include data statistically analyzed using purification management content, showing the area to be purified to various contaminated soil nutrient content data control platforms. The stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during purification should be included in the visualization of contaminated soil area per unit time in the edge computing gateway purification management interface for one or more contaminated soil nutrient content data control platforms. For example, information on the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during the purification of the microbial system should be used and included in the visualization of contaminated soil area data per unit time using the edge computing gateway purification integrated management interface.

[0029] Step S300: Statistically analyze the pollution nutrient content monitoring interface per unit area, and visualize the pollution area data per unit time from the edge computing gateway purification integrated management interface to determine the degree of purification to be achieved.

[0030] Specifically, the pollution area data per unit time can be visualized using the edge computing gateway purification management interface of the data control platform for nutrient content of the polluted soil to be purified. The degree of pollution to be purified, as visualized using this edge computing gateway purification management interface, can be statistically analyzed. It is understood that the difficulty and operability of visualizing pollution area data per unit time using the edge computing gateway purification management interface generated by the random purification method are also random. This can lead to unexpected unevenness within the same purification management period, and this unexpected unevenness is one of the important reasons why existing random purification principles cause user prediction difficulties and low user engagement. Using one embodiment of the present invention, statistically analyzing the degree of pollution to be purified per unit time through the edge computing gateway purification management interface of the pollution nutrient content monitoring interface is an important means of managing existing random purification principles.

[0031] Step S400: Statistically analyze the degree of soil to be purified by visualizing the area of ​​contaminated soil per unit time through the edge computing gateway's integrated management interface.

[0032] According to one embodiment of the present invention, the degree of purification to be achieved is statistically analyzed by visualizing the polluted soil area data per unit time on the edge computing gateway purification management interface of the unit area polluted soil nutrient content monitoring interface. Of course, other feasible embodiments can also be used, by performing preset calculations on the unit time polluted soil area data visualization of all used edge computing gateway purification management interfaces, thereby statistically analyzing the degree of purification to be achieved by visualizing the unit time polluted soil area data of each used edge computing gateway purification management interface. In this case, the statistical analysis of the degree of purification to be achieved by visualizing the unit time polluted soil area data of each polluted soil nutrient content data control platform's edge computing gateway purification management interface is performed.

[0033] In this embodiment, the degree of purification to be determined reflects the difficulty and operability of the purification management content embodied in the visualization of contaminated soil area data per unit time by the edge computing gateway purification management interface, as well as the differences between the visualization of contaminated soil area data per unit time by the edge computing gateway purification management interfaces of the various contaminated soil nutrient content data control platforms. Through this degree of purification to be determined, the differences in the difficulty and operability of the visualization of contaminated soil area data per unit time by the edge computing gateway purification management interface of each contaminated soil nutrient content data control platform can be obtained, thereby distinguishing it from the unexpected difficulty, operability, and differences reflected in the existing random purification principles.

[0034] Step S500: Statistically analyze whether the degree of soil to be purified, as visualized by the edge computing gateway purification integrated management interface on the area of ​​contaminated soil per unit time, is greater than the preset benchmark parameter for soil to be purified.

[0035] Specifically, the preset baseline parameters to be purified can be set based on the differences between various purification management elements included in the unit time polluted soil area data visualization using the edge computing gateway purification integrated management interface and the unit time polluted soil area data visualization using the edge computing gateway purification integrated management interface of each polluted soil nutrient content data control platform. In this embodiment, when the degree of purification to be visualized by the edge computing gateway purification management interface for the area of ​​contaminated soil per unit time is not greater than the preset baseline parameter for purification, it indicates that the difficulty and operability of the overall purification management, as well as the differences between the edge computing gateway purification management interface for the area of ​​contaminated soil per unit time in the data visualization of each contaminated soil nutrient content data control platform, exceed expectations. In this case, it is necessary to repeat steps S100 to S400, which involve statistically analyzing the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during the purification of the microbial community system, and using the edge computing gateway purification management interface to visualize, statistically analyze, and analyze the degree of purification to be visualized, until the degree of purification to be visualized by the edge computing gateway purification management interface for the area of ​​contaminated soil per unit time meets the expected difficulty, operability, and difference expectations, i.e., the baseline parameter for purification is greater than the preset baseline parameter for purification.

[0036] Step S600: If the degree of soil to be purified as visualized by the edge computing gateway purification management interface per unit time is greater than the preset baseline parameter for soil to be purified, then the edge computing gateway purification management interface visualizes the soil area per unit time and transmits the data to the soil nutrient content monitoring interface per unit area.

[0037] In this embodiment, the degree of purification to be visualized by the edge computing gateway purification management interface reflects the overall difficulty, operability, and individual differences in the visualization of polluted soil area data per unit time on the edge computing gateway purification management interface of each polluted soil nutrient content data control platform. If the degree of purification to be visualized is greater than the preset purification benchmark parameter, it indicates that the overall difficulty, operability, and individual differences in the visualization of polluted soil area data per unit time on the edge computing gateway purification management interface of each polluted soil nutrient content data control platform meet the required expectations, and each polluted soil nutrient content data control platform can start purification management by using the edge computing gateway purification management interface to visualize polluted soil area data per unit time.

[0038] In an optional implementation, the data visualization of contaminated soil area per unit time using the edge computing gateway purification management interface can be purified to each contaminated soil nutrient content data control platform before step S300 (statistical analysis of the degree of purification to be achieved) or step S400 (statistical analysis of the degree of purification to be achieved) in step S400. Therefore, when the degree of purification to be achieved is found to be no greater than the preset purification baseline parameter, and it is necessary to re-perform the statistical analysis of data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity in the colony system, as well as the data visualization of contaminated soil area per unit time using the edge computing gateway purification management interface, the purified data visualization of contaminated soil area per unit time using the edge computing gateway purification management interface needs to be deleted or withdrawn from each contaminated soil nutrient content data control platform.

[0039] This invention relates to a method for remediating contaminated soil based on a microbial colony system. The core of this method lies in combining a microbial colony system with an edge computing gateway to achieve real-time monitoring, data visualization, and optimized remediation of contaminated soil. The following is a detailed analysis of each claim:

[0040] Data Collection: First, multiple data points were collected from the contaminated soil within the microbial community system, including colony inoculation amount, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity. These data provide the necessary foundation for subsequent analysis.

[0041] Data visualization: Using an edge computing gateway, the real-time purification status of contaminated soil is displayed, including information such as the stability of the microbial community, metabolic type, and biofilm formation ability. This information provides a clear view of the working status of the microbial system, allowing for an understanding of the dynamic changes in the microbial community and external inducing factors.

[0042] Visualization of the degree of purification: A comprehensive management interface based on an edge computing gateway displays the degree of purification required for contaminated soil. When the degree of purification exceeds a preset baseline parameter, data transmission is initiated to further control the nutrient content of the contaminated soil; otherwise, data collection and analysis are repeated to adjust the microbial community ratio and other parameters.

[0043] Automatic decision-making and feedback: Based on the analysis results of the degree of pollution to be purified, the soil purification strategy can be dynamically adjusted, and the corresponding purification operation can be initiated at the appropriate time.

[0044] Edge computing gateway: Real-time processing and visualization of the contaminated soil remediation process, facilitating faster data feedback and adjustments to processing methods.

[0045] Data-driven: Optimize the purification effect of contaminated soil based on real-time data collection and analysis.

[0046] Archive purification data: When the degree of purification to be reached has not reached the preset benchmark, the current purification data is archived for future reference and comparison.

[0047] Repeatability analysis: Perform repeatability analysis on the data after each purification process to check whether the effectiveness of the purification process meets the preset baseline requirements. If the number of repetitions reaches the preset standard, further evaluate the most effective purification data and apply it to new purification processes.

[0048] Data archiving: Provides historical data archiving capabilities, which helps optimize decision-making and assess long-term changes in purification effectiveness.

[0049] Dynamic adjustment: Based on repeated analysis of historical data, the purification process can be optimized, and the stability and accuracy of the method can be improved.

[0050] Purification count determination: Further analysis is conducted to determine whether the number of purification cycles has reached the preset baseline standard. If the preset number of purification cycles has been reached, new baseline parameters for purification are calculated to proceed to the next step.

[0051] Baseline parameter update: Based on the specific data from the purification process, the baseline parameters to be purified are adjusted. This process ensures that the purification standards match the actual situation and makes adjustments as needed.

[0052] Dynamically adjust baseline parameters: continuously optimize the purification strategy through a feedback mechanism to make the purification process more in line with actual needs and reduce resource waste.

[0053] Standardized management: Making decisions based on standardized benchmark parameters helps improve efficiency and effectiveness.

[0054] Initial baseline parameters and deviation analysis: By statistically analyzing the deviations during the purification process, the initial baseline parameters to be purified are corrected.

[0055] New baseline parameter calculation: Based on the deviation data, new baseline parameters to be purified are recalculated. This method can adapt to purification requirements under different environmental conditions, ensuring the optimization of the purification process.

[0056] Statistical bias adjustment strategy: Adjust the purification strategy based on the results of data analysis to ensure effective purification under different environmental conditions.

[0057] Flexibility and precision: This process increases the flexibility of the purification method, allowing for precise adjustments based on specific data.

[0058] Calculation and algorithm for the degree of purification: An algorithm for adjusting the degree of purification based on the data from the monitoring interface of nutrient content in polluted soil per unit area and statistical analysis results.

[0059] Difference Algorithm: This algorithm generates a corresponding model by calculating the degree of purification to be achieved and the differences between the two. This algorithm helps the system more accurately evaluate the effectiveness of the purification process and make corresponding adjustments.

[0060] Difference Calculation and Adjustment: By using algorithms to calculate the differences in the soil to be purified, the purification effect and process can be judged more accurately, thereby improving the efficiency of contaminated soil purification.

[0061] Intelligent decision support: Based on precise algorithms, the system can make intelligent decisions and optimize the purification process.

[0062] Nutrient content and environmental data monitoring: Visualize various nutrient content data of contaminated soil (such as pH value, temperature, humidity, oxygen concentration, etc.) on the edge computing gateway purification management interface and update them dynamically.

[0063] Updated analysis of the degree of purification to be achieved: By analyzing the updated information on the content of various nutrients, the updated degree of purification to be achieved is further calculated in order to adjust the purification strategy.

[0064] Environmental data monitoring: By accurately monitoring soil environmental data (such as pH value, temperature, etc.), the system can adjust the purification strategy in real time to adapt to different environmental changes.

[0065] Dynamic updates and feedback: Regularly updated monitoring information can help the system better adapt to environmental changes, improving the flexibility and effectiveness of purification.

[0066] The purification method of this invention combines a microbial system with edge computing, providing a highly efficient and intelligent soil pollution purification solution through real-time data acquisition, dynamic adjustment, and precise calculation. Its highlight lies in utilizing an edge computing gateway to achieve real-time monitoring and intelligent management of soil pollution, and improving the accuracy and flexibility of the purification process through dynamic adjustment of purification standards and precise environmental monitoring.

[0067] This method is not only highly innovative in technology, but also highly adaptable, and can be widely applied in multiple fields such as agriculture and environmental protection, thus possessing high practical value.

[0068] like Figure 2 The diagram shown illustrates the structure and function of a contaminated soil remediation platform based on a microbial colony system, according to one embodiment of the present invention. The system includes:

[0069] The colony system data acquisition module is used to collect data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combinations, and microbial degradation enzyme activity in contaminated soil within the colony system.

[0070] For purification management with specific content, the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during purification are preferably the factors that have the greatest influence on purification management, statistically analyzed using the purification management content. Generally, obtaining the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during purification should facilitate the completion of data on pH, temperature, humidity, and oxygen concentration in the polluted soil nutrients set according to the purification management content. For example, for adversarial purification management, the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during purification can be set as target characteristics or roles with the greatest combat effectiveness. Data on the inoculation amount and density of microbial colonies in a microbial system, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity can include: stability of the microbial community during the purification of the microbial system, metabolic type, biofilm formation ability, microbial metabolites, dynamic changes of the microbial community, and the number, size, and location of external inducing factors.

[0071] The edge computing gateway purification integrated management interface statistics and analysis module is used to visualize the polluted soil area per unit time using data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity in the colony system. The visualization of polluted soil area per unit time by the edge computing gateway purification integrated management interface includes the stability of the bacterial community, metabolic type, biofilm formation ability, bacterial metabolites, dynamic changes of the bacterial community, and information on external inducing factors during the purification of the colony system.

[0072] Specifically, the visualization of contaminated soil area per unit time in the edge computing gateway purification integrated management interface, used in the statistical and analysis module, should include information on the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during the purification of the microbial system. The visualization of contaminated soil area per unit time in the edge computing gateway purification integrated management interface should also include the data visualization of contaminated soil area per unit time in the edge computing gateway purification integrated management interface, which uses purification management content to statistically analyze the data of nutrient content of the contaminated soil to be purified to various contaminated soil nutrient content data control platforms. The information on the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during the purification of the microbial system should be included in the visualization of contaminated soil area per unit time in the edge computing gateway purification integrated management interface, which uses the data of nutrient content of the contaminated soil to be purified to one or more contaminated soil nutrient content data control platforms. For example, information on the stability, metabolic type, biofilm formation ability, metabolic products, dynamic changes, and external inducing factors of the microbial community during the purification of the microbial system should be used and included in the visualization of contaminated soil area per unit time using the edge computing gateway purification integrated management interface statistical and analysis module.

[0073] The "Purification Level" module is used to statistically analyze the purification level of the contaminated soil area per unit time in the edge computing gateway purification integrated management interface of the monitoring interface for nutrient content of contaminated soil per unit area, and to statistically analyze the purification level of the contaminated soil area per unit time in the edge computing gateway purification integrated management interface.

[0074] Specifically, the "to be purified" module can utilize the edge computing gateway purification management interface to statistically analyze the data from the edge computing gateway purification management interface used by the module to visualize the area of ​​contaminated soil per unit time. This visualization of the area of ​​contaminated soil per unit time, generated by the edge computing gateway purification management interface, visualizes the area of ​​contaminated soil per unit time. It is understood that the visualization of contaminated soil area per unit time using the edge computing gateway purification management interface generated by the random purification method varies randomly in terms of difficulty and operability. This can lead to unexpected unevenness within the same purification management period, which is one of the important reasons why existing random purification principles cause difficulties in user prediction and user engagement. Utilizing one embodiment of the present invention, the "to be purified" module statistically analyzes the area of ​​contaminated soil per unit area monitored by the edge computing gateway purification management interface, visualizes the area of ​​contaminated soil per unit time, and serves as an important means of managing existing random purification principles.

[0075] According to one embodiment of the present invention, the purification level module can statistically analyze the purification level based on the visualized polluted soil area data per unit time of the edge computing gateway purification management interface of the monitored unit area polluted soil nutrient content monitoring interface. Alternatively, other feasible embodiments can be used, such as performing preset calculations on all edge computing gateway purification management interfaces used by the statistical analysis module to visualize polluted soil area data per unit time, thereby statistically analyzing the purification level. In this case, the purification level module may not need to perform statistical analysis on the purification level of each polluted soil nutrient content data control platform's edge computing gateway purification management interface.

[0076] In this embodiment, the degree of purification to be determined reflects the difficulty and operability of the purification management content embodied in the visualization of contaminated soil area data per unit time by the edge computing gateway purification management interface, as well as the differences between the visualization of contaminated soil area data per unit time by the edge computing gateway purification management interfaces of the various contaminated soil nutrient content data control platforms. Through this degree of purification to be determined, the differences in the difficulty and operability of the visualization of contaminated soil area data per unit time by the edge computing gateway purification management interface of each contaminated soil nutrient content data control platform can be obtained, thereby distinguishing it from the unexpected difficulty, operability, and differences reflected in the existing random purification principles.

[0077] The purification level decision module is used to statistically analyze whether the purification level of the contaminated soil area per unit time, as visualized in the edge computing gateway purification integrated management interface, is greater than the preset purification benchmark parameter.

[0078] Specifically, the preset baseline parameters to be purified can be set based on the differences between various purification management elements included in the unit time polluted soil area data visualization using the edge computing gateway purification integrated management interface and the unit time polluted soil area data visualization using the edge computing gateway purification integrated management interface of each polluted soil nutrient content data control platform. In this embodiment, when the degree of purification to be determined by the determination module is not greater than the preset baseline parameter for purification when the data visualization of the contaminated soil area per unit time using the edge computing gateway purification management interface is not greater than the preset baseline parameter for purification, it indicates that the difficulty and operability of the overall purification management, as well as the differences between the data visualization of the contaminated soil area per unit time using the edge computing gateway purification management interface of each contaminated soil nutrient content data control platform, exceed expectations. In this case, it is necessary to notify the colony system data acquisition module, the edge computing gateway purification management interface statistics and analysis module, and the degree of purification module to perform the aforementioned statistical analysis of the stability, metabolic type, biofilm formation ability, microbial metabolites, dynamic changes of microbial communities, external inducing factors, and data visualization of the contaminated soil area per unit time using the edge computing gateway purification management interface, and statistical analysis of the degree of purification, until the degree of purification to be determined by the determination module meets the expected difficulty, operability, and difference expectations when the data visualization of the contaminated soil area per unit time using the edge computing gateway purification management interface is greater than the preset baseline parameter for purification.

[0079] The contaminated soil nutrient content data transmission module is connected to the edge computing gateway purification integrated management interface statistics and analysis module and the purification degree decision module. It is used to utilize the signal from the purification degree decision module, which indicates that the purification degree of the contaminated soil area data visualization per unit time in the edge computing gateway purification integrated management interface is greater than the preset purification benchmark parameter, to visualize the contaminated soil area data per unit time in the edge computing gateway purification integrated management interface, and at the same time transmit the data to the contaminated soil nutrient content monitoring interface per unit area.

[0080] The soil nutrient content pH, temperature, humidity, and oxygen concentration data monitoring module is used to visualize the degree of purification of contaminated soil per unit area through the edge computing gateway purification management interface. This module is used to statistically analyze the degree of purification of contaminated soil per unit area by providing data visualization of contaminated soil area per unit time. Specifically, this module is used to statistically analyze the degree and range of purification of pH, temperature, humidity, and oxygen concentration data in the contaminated soil. It also uses the edge computing gateway purification management interface to statistically analyze the dynamically updated data range of pH, temperature, humidity, and oxygen concentration data in the contaminated soil per unit time through various edge computing gateway purification management interfaces. Furthermore, it uses the degree of purification, range information, and update information to statistically analyze the updated degree of purification of pH, temperature, humidity, and oxygen concentration data in the contaminated soil.

[0081] In this embodiment, the degree of purification to be visualized by the edge computing gateway purification management interface reflects the overall difficulty, operability, and individual differences in the visualization of polluted soil area data per unit time on the edge computing gateway purification management interface of each polluted soil nutrient content data control platform. If the degree of purification to be visualized is greater than the preset purification benchmark parameter, it indicates that the overall difficulty, operability, and individual differences in the visualization of polluted soil area data per unit time on the edge computing gateway purification management interface of each polluted soil nutrient content data control platform meet the required expectations, and each polluted soil nutrient content data control platform can start purification management by using the edge computing gateway purification management interface to visualize polluted soil area data per unit time.

[0082] In an optional implementation, the system may further include a register connected to the edge computing gateway purification integrated management interface statistics and analysis module. This register stores the data visualization of contaminated soil area per unit time used by the edge computing gateway purification integrated management interface statistics and analysis module. Therefore, when the degree of purification determined by the purification degree decision module is greater than a preset purification benchmark parameter, the contaminated soil nutrient content data transmission module can retrieve the stored data visualization from the edge computing gateway purification integrated management interface and send it to the unit area contaminated soil nutrient content monitoring interface.

[0083] In an optional implementation, the contaminated soil nutrient content data transmission module can directly transmit the data from the edge computing gateway purification management interface (used by the edge computing gateway purification management interface statistics and analysis module for per-unit-time contaminated soil area visualization) or the data stored in the registers to various contaminated soil nutrient content data control platforms, without relying on the indication signals from the purification degree decision module. Therefore, when the purification degree decision module has statistically analyzed the data from the edge computing gateway purification management interface for per-unit-time contaminated soil area visualization and determined that the purification degree is not greater than the preset purification benchmark parameter, and it is necessary to re-perform the statistical analysis of data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity in the colony system, as well as the data visualization of per-unit-time contaminated soil area using the edge computing gateway purification management interface, the contaminated soil nutrient content data transmission module needs to issue a command to the per-unit-area contaminated soil nutrient content monitoring interface to delete or withdraw the purified data visualization from each contaminated soil nutrient content data control platform.

[0084] By utilizing the above embodiments of the present invention, the degree of soil pollution to be purified visualized per unit time in the edge computing gateway purification management interface is statistically analyzed and compared with preset baseline parameters for purification. This allows for the management of the degree of soil pollution to be purified visualized per unit time in the edge computing gateway purification management interface. Compared to the existing random purification edge computing gateway purification management interface's problems of prediction difficulties and low accuracy, the edge computing gateway purification management interface's pollution area visualization management system of the present invention can manage the degree of soil pollution to be purified visualized per unit time in the edge computing gateway purification management interface, thereby managing the difficulty of purification management, operability, and horizontal differences in the visualization of pollution area per unit time in the edge computing gateway purification management interface. This improves the usability of the polluted soil nutrient content data control platform and enhances the accuracy of purification.

[0085] In the description of this invention, it should be noted that, unless otherwise specified and limited by statistical or analytical rules, the terms "set," "install," "connect," "link," and "fix" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art will understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0086] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various equivalent changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A method for remediating contaminated soil based on a microbial community system, characterized in that, include: Data were collected on the inoculation amount and density of microorganisms in the contaminated soil, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity in the microbial system. Using data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity in the contaminated soil of the aforementioned microbial system, the contaminated soil area per unit time is visualized using the edge computing gateway purification integrated management interface. The visualization of contaminated soil area per unit time in the edge computing gateway purification integrated management interface includes the stability of the microbial community, metabolic type, biofilm formation ability, microbial community metabolites, dynamic changes of the microbial community, and information on external inducing factors during the purification of the microbial system. The edge computing gateway's integrated management interface is used to visualize the degree of need for purification of contaminated soil area data per unit time. The system statistically analyzes whether the degree of soil pollution area data per unit time visualized by the edge computing gateway purification integrated management interface is greater than the preset benchmark parameter for soil pollution area. When the degree of soil to be purified is greater than the preset baseline parameter for purification when the data visualization of the polluted soil area per unit time is performed on the edge computing gateway purification management interface, the data visualization of the polluted soil area per unit time will be performed on the edge computing gateway purification management interface, and the data will be transmitted to the monitoring interface for nutrient content of polluted soil per unit area. When the degree of soil to be purified, as visualized by the edge computing gateway purification management interface per unit time, is not greater than the preset purification benchmark parameter, the data on the inoculation amount and density of the contaminated soil in the colony system, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity are statistically analyzed again. The edge computing gateway purification management interface is used to visualize the contaminated soil area per unit time and to statistically analyze the degree of soil to be purified. When the degree of soil remediation required, as determined by statistical analysis of the edge computing gateway's integrated management interface for polluted soil area visualization per unit time, is not greater than a preset baseline parameter for soil remediation, the following further applies: The archived edge computing gateway purification management interface visualizes the area of ​​contaminated soil per unit time and the corresponding monitoring interface for nutrient content of contaminated soil per unit area. The archived edge computing gateway purification management interface visualizes the area of ​​contaminated soil per unit time and the degree of purification to be achieved. After the last purification process, which visualized the area of ​​contaminated soil per unit time using the edge computing gateway purification management interface, the statistical analysis of data on the inoculation amount and density of contaminated soil, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, microbial species and combinations, and microbial degradation enzyme activity in the microbial system is repeated. The number of repetitions of the purification process using the edge computing gateway purification management interface to visualize the area of ​​contaminated soil per unit time and to statistically analyze whether the preset repetition benchmark parameter has been met is also used. When the number of repetitions has reached the preset repetition baseline parameter, the data of the contaminated soil area per unit time is visualized on the edge computing gateway purification management interface with the highest degree of purification. When the number of repetitions does not reach the preset repetition baseline parameter, the data statistics and analysis of the colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity of the contaminated soil in the colony collection system are carried out again. The edge computing gateway purification integrated management interface is used to visualize the contaminated soil area data per unit time and to statistically analyze the degree of purification to be performed.

2. The method for purifying contaminated soil based on a colony system as described in claim 1, characterized in that, After the degree of soil pollution to be purified is greater than the preset baseline parameter for purification, the data visualization of the contaminated soil area per unit time in the edge computing gateway purification integrated management interface is further included: Determine whether the number of times the edge computing gateway used to purify the soil area data visualization interface to the unit area soil nutrient content monitoring interface has reached the preset number of times under the purification baseline parameters. When the number of purification cycles has reached the preset baseline parameter, new baseline parameters for purification are calculated and analyzed.

3. The method for purifying contaminated soil based on a colony system as described in claim 2, characterized in that, The statistical analysis of the new baseline parameters to be purified includes: Statistical analysis of the initial baseline parameters to be purified; The statistical deviation of the degree of remediation was statistically analyzed in the edge computing gateway remediation integrated management interface during each remediation process, based on the visualization of the contaminated soil area data per unit time. Based on the statistical deviation between the aforementioned initial purification baseline parameters and the degree of purification, new purification baseline parameters are statistically analyzed, wherein the new purification baseline parameters are the statistical deviation between the initial purification baseline parameters and the degree of purification.

4. The method for purifying contaminated soil based on a colony system as described in claim 1, characterized in that, The steps for visualizing the degree of remediation of contaminated soil area data per unit time using the edge computing gateway's integrated management interface include: The edge computing gateway of the monitoring interface for nutrient content of contaminated soil per unit area is used to visualize the degree of need for purification through the purification integrated management interface. The algorithm for visualizing the degree of soil to be purified and the difference in the degree of soil to be purified per unit time in the edge computing gateway purification integrated management interface of the monitoring interface for nutrient content of polluted soil per unit area is used as the degree of soil to be purified per unit time in the edge computing gateway purification integrated management interface.

5. The method for purifying contaminated soil based on a microbial system as described in claim 1, characterized in that: Before visualizing the polluted soil area data per unit time using the edge computing gateway purification management interface and transmitting the data to the polluted soil nutrient content monitoring interface per unit area, the corresponding purification degree and range information of pH value, temperature, humidity, and oxygen concentration data in the polluted soil nutrient content per unit area included in the visualization of polluted soil area data per unit time using the edge computing gateway purification management interface is statistically analyzed. The range information is the preset parameter range of pH value, temperature, humidity, and oxygen concentration data in the corresponding polluted soil nutrient content. After performing a preset number of purification operations on the edge computing gateway purification management interface to visualize the area of ​​contaminated soil per unit time, the corresponding update information of pH value, temperature, humidity, and oxygen concentration data in the nutrient content of contaminated soil per unit area is statistically analyzed. The update information is the dynamic update data range of pH value, temperature, humidity, and oxygen concentration data in the corresponding nutrient content of contaminated soil during the purification operations on the edge computing gateway purification management interface to visualize the area of ​​contaminated soil per unit time. Using the information on the degree and range of purification to be determined and the updated information, the updated degree of purification to be determined in the nutrient content of the polluted soil, including pH value, temperature, humidity, and oxygen concentration data, is statistically analyzed. The edge computing gateway purification management interface visualizes the area of ​​contaminated soil per unit time, including data on pH, temperature, humidity, and oxygen concentration in the nutrient content of the contaminated soil per unit area. The degree of need for purification in the visualization of the area of ​​contaminated soil per unit time in the edge computing gateway purification management interface is statistically analyzed using the degree of need for purification in the data on pH, temperature, humidity, and oxygen concentration in the nutrient content of the contaminated soil per unit area.

6. A contaminated soil remediation platform based on a microbial colony system, characterized in that, The platform performs the steps of a contaminated soil remediation method based on a colony system as described in any one of claims 1-5, the platform comprising: The colony system data acquisition module is used to collect data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity in contaminated soil within the colony system. The edge computing gateway purification integrated management interface statistics and analysis module is used to visualize the polluted soil area per unit time using data on colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity in the colony system. The visualization of polluted soil area per unit time by the edge computing gateway purification integrated management interface includes the stability of the bacterial community, metabolic type, biofilm formation ability, bacterial community metabolites, dynamic changes of the bacterial community, and information on external inducing factors during the purification of the colony system. The purification level module is used to statistically analyze the purification level of the contaminated soil area data per unit time displayed by the edge computing gateway purification integrated management interface statistical and analysis module. The purification level decision module is used to statistically analyze whether the purification level of the polluted soil area data per unit time visualized by the edge computing gateway purification integrated management interface is greater than the preset purification benchmark parameter. The contaminated soil nutrient content data transmission module is used to visualize the contaminated soil area data per unit time through the edge computing gateway purification integrated management interface, which is used by the edge computing gateway purification integrated management interface statistical and analysis module to visualize the contaminated soil area data per unit time, and at the same time transmit the data to the contaminated soil nutrient content monitoring interface per unit area. The soil nutrient content pH, temperature, humidity, and oxygen concentration data monitoring module is used to visualize the degree of purification of contaminated soil per unit area using the edge computing gateway purification comprehensive management interface. This module is used to statistically analyze the degree of purification of contaminated soil per unit area by visualizing the area data per unit time. Specifically, it is used to statistically analyze the degree and range of purification of pH, temperature, humidity, and oxygen concentration data in the contaminated soil, and to statistically analyze the updated information of pH, temperature, humidity, and oxygen concentration data in the contaminated soil using the edge computing gateway purification comprehensive management interface. Furthermore, it uses the degree of purification, range information, and update information to statistically analyze the updated degree of purification of pH, temperature, humidity, and oxygen concentration data in the contaminated soil. The purification level module is also used to statistically analyze the purification level of the polluted soil area data visualized per unit time by the edge computing gateway purification management interface of the unit area polluted soil nutrient content monitoring interface, and to statistically analyze the purification level of the polluted soil area data visualized per unit time by the edge computing gateway purification management interface of the unit area polluted soil nutrient content monitoring interface. The purification level of the polluted soil area data visualized per unit time by the edge computing gateway purification management interface is an algorithm for the purification level and the difference in purification level of the polluted soil area data visualized per unit time by the edge computing gateway purification management interface of the unit area polluted soil nutrient content monitoring interface.

7. The contaminated soil remediation platform based on a colony system as described in claim 6, characterized in that, The purification level decision module is used to notify the colony system data acquisition module, the edge computing gateway purification management interface statistics and analysis module, and the purification level module when the purification level of the polluted soil area data visualization per unit time obtained by the statistical analysis of the edge computing gateway purification management interface is not greater than the preset purification benchmark parameter. This allows for the re-statistical analysis of the colony inoculation amount and density, soil organic matter content, soil physical and chemical properties, soil pollutant concentration, bacterial species and combination, and microbial degradation enzyme activity of the polluted soil in the colony system. The edge computing gateway purification management interface is then used to visualize the polluted soil area data per unit time and to statistically analyze the purification level.

8. A contaminated soil remediation platform based on a colony system as described in claim 6, characterized in that, It further includes a purification baseline parameter module, which is used to visualize the purification baseline parameters used by the purification degree decision module to compare the purification degree.

9. A contaminated soil remediation platform based on a colony system as described in claim 8, characterized in that, The contaminated soil nutrient content data transmission module is further used to record the number of times the edge computing gateway purification integrated management interface visualizes contaminated soil area data per unit time using the command sent by the purification degree decision module. It is also used to determine, after receiving the command from the purification degree decision module that the purification degree of the edge computing gateway purification integrated management interface visualizes contaminated soil area data per unit time is greater than the preset purification benchmark parameter, whether the number of times the edge computing gateway purification integrated management interface visualizes contaminated soil area data per unit time to the unit area contaminated soil nutrient content monitoring interface has reached the preset number benchmark parameter. Furthermore, when the data transmission module for nutrient content of contaminated soil statistically analyzes and sends the visualization of contaminated soil area data per unit time through the edge computing gateway purification integrated management interface a number of times it reaches a preset benchmark parameter, it is further used to notify the benchmark parameter module to be purified to visualize the benchmark parameter to be purified. The benchmark parameter module to be purified is used to use the degree of purification obtained by the degree of purification module to visualize the contaminated soil area data per unit time through the edge computing gateway purification integrated management interface, and to statistically analyze the new benchmark parameter to be purified by the statistical deviation between the initial benchmark parameter to be purified and the aforementioned degree of purification.

Citation Information

Patent Citations

  • Method for degrading organic pollutants in garden soil by utilizing rhizosphere microflora

    CN119114614A

  • Digital twin-driven photovoltaic module monitoring and self-purification system

    CN119401929A