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438 results about "Photosynthetic efficiency" patented technology

The photosynthetic efficiency is the fraction of light energy converted into chemical energy during photosynthesis in plants and algae. where C₆H₁₂O₆ is glucose (which is subsequently transformed into other sugars, cellulose, lignin, and so forth). The value of the photosynthetic efficiency is dependent on how light energy is defined – it depends on whether we count only the light that is absorbed, and on what kind of light is used (see Photosynthetically active radiation). It takes eight (or perhaps 10 or more) photons to utilize one molecule of CO₂. The Gibbs free energy for converting a mole of CO₂ to glucose is 114 kcal, whereas eight moles of photons of wavelength 600 nm contains 381 kcal, giving a nominal efficiency of 30%. However, photosynthesis can occur with light up to wavelength 720 nm so long as there is also light at wavelengths below 680 nm to keep Photosystem II operating (see Chlorophyll). Using longer wavelengths means less light energy is needed for the same number of photons and therefore for the same amount of photosynthesis. For actual sunlight, where only 45% of the light is in the photosynthetically active wavelength range, the theoretical maximum efficiency of solar energy conversion is approximately 11%. In actuality, however, plants do not absorb all incoming sunlight (due to reflection, respiration requirements of photosynthesis and the need for optimal solar radiation levels) and do not convert all harvested energy into biomass, which results in a maximum overall photosynthetic efficiency of 3 to 6% of total solar radiation. If photosynthesis is inefficient, excess light energy must be dissipated to avoid damaging the photosynthetic apparatus. Energy can be dissipated as heat (non-photochemical quenching), or emitted as chlorophyll fluorescence.

Alpine region solar greenhouse peach cultivation method

The invention discloses an alpine region solar greenhouse peach cultivation method. The alpine region solar greenhouse peach cultivation method is applicable to peach cultivation in a greenhouse built at the northern latitude of 39 degrees to 40 degrees, and comprises the steps of selecting good peach new species, conducting high-density field planting, conducting high photosynthetic efficiency tree shape cultivation, conducting water and fertilizer standardization management, conducting temperature and humidity management and clipping according to a peach growth period and a time period, and conducting pollination and plant disease and insect pest comprehensive control management at the right moment. By the adoption of the alpine region solar greenhouse peach cultivation method, the yield of peaches per mu can reach more than 3000 kg and is increased by more than 20% compared with the prior art. Soluble solids of peach fruits can reach more than 12% and is increased by two or more percent points compared with the prior art. The proportion of the high-quality peaches is improved to more than 85% and increased by 15 percent points compared with the prior art. The high-quality peaches can come into the market 10 days to 12 days ahead of time, so that more economic benefits are obtained.
Owner:山西省农业科学院农业资源与经济研究所

Space plant culture device

The invention provides a space plant culture device comprising a culture box which is partitioned into a left chamber and a right chamber via a longitudinal partition. The left chamber is provided with an upper layer and a lower layer, an azolla moist cultivation tray is arranged on the upper layer, a vegetable moist cultivation tray is arranged on the lower layer, the right chamber is provided with a seedling cultivation tray, an LED lamp panel is arranged above the azolla moist cultivation tray, the vegetable moist cultivation tray and the seedling cultivation tray, and the right chamber is further provided with a bag-type solution collecting box used for providing a culture solution and a peristaltic pump used for driving the culture solution to flow. The space plant culture device is provided with a plant culture solution supply system, an LED illumination system and a monitoring system which are complete and needed for growth of azolla and short small salad vegetables in the whole growth period, on-line parameter setting, automatic record storing and intelligent system controlling can be realized, population, individual photosynthetic efficiency and biological-yield efficient production cycle of the plants as well as change rules in space microgravity environment of the plants can be researched, and requirements on spatial scientific experiments and space station key technology experiments can be met.
Owner:AGRI ECOLOGY INST FUJIAN ACADEMY OF AGRI SCI

Method for confirming actinic light intensity in chlorophyll fluorescence induction curve measurement

ActiveCN102435590AGuaranteed reasonable designTypical chlorophyll fluorescence induction curvePhotometry using reference valueFluorescence/phosphorescenceLower limitArbitrary Fluorescence Unit
The invention provides a method for confirming actinic light intensity in chlorophyll fluorescence induction curve measurement, which comprises the following steps of: obtaining plant leaf blades, shading environment light, setting multiple light intensity gradients, irradiating for a preset time with each light intensity gradient and measuring practical photosynthetic efficiency and relative electron transmission rate; drawing a response curve of the relative electron transmission rate, which is changed along the light intensity and fitting the response curve to obtain semi-saturated light intensity; taking the semi-saturated light intensity as the actinic light intensity for measuring the chlorophyll fluorescence induction curve; calculating a difference value between a maximal fluorescence value after light adaptation and a practical fluorescence value and a difference value between a maximal fluorescence value after dark adaptation and a basic fluorescence value after dark adaptation, and calculating the ratio of the two difference values; judging if the ratio is in a preset range, if so, confirming the current light intensity as the actinic light intensity, and if the ratio is less/more than the lower limit/the upper limit of the preset range, reducing/increasing the light intensity, re-measuring the chlorophyll fluorescence induction curve and calculating the ratio. The method can measure typical chlorophyll fluorescence induction curve.
Owner:上海乾菲诺农业科技有限公司

Plant seedling culture matrix nutrition mother agent and application thereof

The invention discloses a plant seedling culture matrix nutrition mother agent and application thereof. The plant seedling culture matrix nutrition mother agent comprises macro-elements, mesne-elements, micro-elements and rare earth elements; the macro-elements are nitrogen element, phosphorus element and potassium element; the mesne-elements are calcium element, magnesium element and sulphur element; the micro-elements are ferrum element, manganese element, copper element, zinc element and boron element as well as beneficial rare earth elements. The plant seedling culture matrix nutrition mother agent is simply prepared with low cost of finished products, and has the following functions: 1) facilitating nutrients absorption, guaranteeing the nutrient demand and nutrient balance supply before field planting in the period of young seedling and boosting the growth of the young seedling; 2) improving young seedling resilience capacity including anti-disease, anti-drought, anti-chilling and other capacities to achieve the aim of even and strong sprout; 3) continuously enhancing chlorophyll content and photosynthetic efficiency of crops; and 4) promoting root system to be developed and guaranteeing the nutrient absorption. The invention has significant economic value.
Owner:BEIJING ACADEMY OF AGRICULTURE & FORESTRY SCIENCES

Brassinolide containing spore pesticide fertilizer and preparation method thereof

The invention discloses a brassinolide containing spore pesticide fertilizer and a preparation method thereof. The brassinolide containing spore pesticide fertilizer is mainly prepared from brassinolide, bacillus liquid, an emulgator and a solvent. By means of brassinolide, the activity of plant enzymes and seed vigor can be improved, and early development can be promoted; the photosynthetic efficiency can be enhanced, the crop yield can be increased, and the crop quality can be improved; the cold resisting, drought resisting, waterlogging resisting and saline-alkaline resisting capacity of crops can be improved, and the stress resisting capacity can be improved; the harm of multiple kinds of viruses, bacteria and fungi can be resisted, and the disease resistance of the crops can be enhanced. Bacillus in the brassinolide containing spore pesticide fertilizer can directly restrain or kill multiple diseases of multiple plants, and the functions of promoting crop production, increasing the yield and improving quality are achieved. According to the pesticide fertilizer, the functions of brassinolide and the functions of bacillus are organically combined, safety, environment friendliness and high efficiency are achieved, and the pesticide fertilizer can be widely applied to rice, flue-cured tobacco, corn, wheat, strawberries, watermelons, chilies, tomatoes, cucumbers and other crops.
Owner:FOSHAN YANHUI BIOTECH CO LTD

LED (light emitting diode) epitaxy structure and application thereof

The invention provides an LED (light emitting diode) epitaxy structure. The LED epitaxy structure sequentially comprises a substrate, a GaN nucleating layer, a GaN buffer layer, an n-type GaN layer, an active layer, a p-type GaN layer and a p-type contact layer from top to bottom; the active layer is provided with at least two pairs of MQW (multiple quantum well) luminous layers; each MQW luminous layer comprises a superlattice quantum base layer and a quantum well layer; each superlattice quantum base layer is formed by alternately stacking AlGaN/n-GaN; each quantum well layer consists of InGaN; AlGaN/n-GaN superlattice quantum base layer centering Al component values trend to linearly rise stably and then linearly fall stably; and n-type impurity concentration values trend to linearly rise stably and then linearly fall stably. The LED epitaxy structure has the advantages that the MQW lattice quality can be effectively improved; the capture probability on electrons or cavities of each quantum well in the active layer is greatly improved, a Droop negative effect on devices is effectively redcued, the internal quantum efficiency of the LED devices is improved, the LED epitaxy structure can be well applied to a high-power device, and the high photosynthetic efficiency of the device is kept.
Owner:SUZHOU NANOJOIN PHOTONICS

Foliage spraying preparation for promoting fruit setting and fruit swelling and enhancing crop stress resistance

ActiveCN102701864AImprove flowIncrease endogenous hormone levelsFertilizer mixturesAdditive ingredientGibberellin
The invention discloses a foliage spraying preparation for promoting fruit setting and fruit swelling and enhancing crop stress resistance. The preparation comprises the ingredients including fulvic acid, DA-6, 2,4-D sodium salt, alpha-pimacol, gibberellin, zeatin, dimethyl sulfoxide, butylcellosolve, sodium tetraborate, zinc sulfate, ferrous sulfate, molybdenum sulfate and magnesium sulfate. After the preparation is sprayed, nutrient substances are rapidly transferred from blade surfaces and are gathered at the plant reproduction active part, and the center endogenous hormones level of fruits is improved; the cell division is promoted, the cell size is amplified, the fruit swelling is accelerated, the chloroplast development and the chlorophyll formation are promoted, the photosynthetic efficiency of leaves is improved, and the unit area yield is increased; the flowing of nutrient substances to female flowers is enhanced, the fruit development speed is accelerated, the uniform fruit development is controlled, the deformity is reduced, the fruit surface is kept fresh, bright and smooth, and the commodity rate is obviously improved; and the immunological competence of plants are excited, the resistance is improved, the occurrence of the pest and disease damage is reduced, the senescence is delayed, and the picking period and the fruit shelf period are prolonged.
Owner:JINAN FUTIANXIA SEED

Gene capable of increasing nitrogen fertilizer utilization efficiency and yield of rice and application thereof

The invention discloses a gene OsGRF4 capable of controlling nitrogen fertilizer utilization efficiency and yield trait as well as an allele gene and application thereof. OsGRF4 is capable of accelerating absorption and transfer of nitrogen fertilizer in rice and expression and enzyme activity of an assimilation gene, so that the nitrogen fertilizer utilization efficiency of the rice is improved;meanwhile, OsGRF4 is capable of accelerating cell division and improving the photosynthetic efficiency so as to increase the yield of the rice. The allele gene OsGRF4<ngr2> is capable of synergistically increasing the nitrogen fertilizer utilization efficiency and the yield of the rice under the condition that the plant height character is not influenced. The invention also discloses expression ofOsGRF4<ngr2> in high-yield wheat varieties for further increasing the nitrogen fertilizer utilization efficiency and the yield increase of the wheat. A promoter of the OsGRF4 gene and SNP polymorphism of a coding area can be used as molecular markers for identifying efficient utilization of nitrogen fertilizer and high-yield varieties of the rice; and OsGRF4 has broad application prospects in breeding on the basis of the increase of nitrogen fertilizer utilization efficiency and yield of the rice and the wheat.
Owner:INST OF GENETICS & DEVELOPMENTAL BIOLOGY CHINESE ACAD OF SCI

Gene for improving chlorophyll synthesis and photosynthesis efficiency of tomatoes and application

The invention relates to a gene for improving chlorophyll synthesis and photosynthesis efficiency of tomatoes and application. The gene for improving the chlorophyll synthesis and photosynthesis efficiency of the tomatoes is composed of a tomato S1HY5 gene and protein encoded by the gene. The invention provides the application of the tomato S1HY5 gene or the protein encoded by the tomato SlHY5 gene to the improvement of chlorophyll synthesis of tomato plants and promotion of the photosynthesis of tomato plant leaves and a method for obtaining the transgenic tomato plants with the increased plant chlorophyll and photosynthesis rate. According to the specific method, through a gene overexpression technology, the expression level of the tomato S1HY5 gene is increased, and therefore the chlorophyll of the tomato plants is increased; the functions of increasing the chlorophyll content of the tomatoes and improving the photosynthesis efficiency of the tomatoes are determined, a gene resourceis provided for cultivating the new tomato varieties with the high chlorophyll content, the gene has high application value, and a theoretical basis is laid for a regulation mechanism of optical signals for the chlorophyll synthesis and photosynthesis of the plants.
Owner:SHENYANG AGRI UNIV

Grape cultivation arrangement and cultivation method

The invention aims to solve a technical problem of providing a cultivation technique by which the land can be effectively saved and the grape quality can be managed and ensured more precisely and rapidly. For solving the problem, the invention provides a grape cultivation arrangement, which comprises a planting arrangement, a tree form arrangement and a leaf curtain arrangement, wherein the planting arrangement is implemented by arranging grapes in a mode of alternately distributing large and small rows, the line spacing between small lines is controlled to 40-60cm, and the line spacing between large lines is controlled to 250-300cm. In the invention, the grape cultivation arrangement is implemented by organically integrating the tree form arrangement, the leaf curtain arrangement and theoverall cultivation arrangement of plates in a grape yard, thus, a good synergistic effect is achieved, and a formed cultivation arrangement can greatly improve the photosynthetic efficiency of the grape leaf curtain; the quality consistency and the stability of the annual output can be kept better; the raising of fruiting parts can be inhibited effectively; the degrees of normalization and standardization are high; and the grape cultivation arrangement is suitable to be applied to the cultivation of vinifera, especially suitable to be applied to the cultivation in sloping fields of a mountainous area, and the grape cultivation arrangement is also convenient for being opened to be a sightseeing grape yard.
Owner:罗建峰

Method for detecting high-temperature stability of photosynthetic capacity of paddy rice

The invention belongs to the technical field of crop breeding, specifically relates to a method for sieving high-temperature adaptive resources of paddy rice and for evaluating and authenticating high-temperature stability of photosynthetic capacity of breeding material. The invention comprises the characteristics of: adjustment for the heading stage of the material to be authenticated via seeding period, selection for natural conditions of photosynthetic rate determination, confirmation for growth period and determination time of paddy rice, setting of parameter values of artificial light and temperature, processing and analysis of data and the like. During the specific period for growth and development of the paddy rice, conditions including natural high temperature in summer and artificial light and temperature are utilized to implement definite-time and constant-temperature determination on net photosynthetic rate of paddy rice leaf, and the obtained result can relatively accurately analyze differences of photosynthesis among testing varieties of the paddy rice in high-temperature stability. The invention provides convenient and feasible evaluation indicators and methods for the selection of parent and the sieving of breeding progeny in high-temperature adaptive ecological breeding and in high photosynthetic efficiency physiological breeding.
Owner:HUAZHONG AGRI UNIV

Greenhouse CO2 gas fertilizer increasing method, device and system

The invention relates to a greenhouse CO2 gas fertilizer increasing method, device and system. The method comprises the following steps that: environment information and the photosynthetic rate value of crops in a greenhouse are acquired; with the environmental information and the photosynthetic rate value respectively adopted as an input variable and an output variable, an SVM-based photosynthetic rate prediction model can be established; a relation curve graph between CO2 concentration and photosynthetic rate under the interaction effect of various environmental factors can be obtained through analysis; a CO2 concentration saturation point corresponding to a maximum photosynthetic rate value under combined conditions of specific environmental factor variables is obtained from the relation curve graph; a CO2 increase adjustment and control model is established; and CO2 supply quantity is calculated, and CO2 is increased in the greenhouse under control. The device comprises a data acquisition unit, a photosynthetic rate prediction model establishment unit, an analysis and processing unit, a CO2 increase calculation unit and an execution control unit. With the CO2 gas fertilizer increasing method, device and system of the invention adopted, optimal CO2 supply quantity can be calculated fast and accurately, and fine adjustment and control of CO2 gas fertilizer increase can be realized, and the photosynthetic efficiency and yield of the crops can be improved.
Owner:CHINA AGRI UNIV

High photosynthetic efficiency tree form cultivation method for peach trees with multiple semi-upright main branches and without side branches

InactiveCN105284538AIncrease the amount of branchesGrow vigorouslyCultivating equipmentsMain branchPeach orchard
The invention discloses a high photosynthetic efficiency tree form cultivation method for peach trees with multiple semi-upright main branches and without side branches. The method comprises the following steps: culturing 2-4 main branches for each plant according to the difference of tree spacing, wherein bearing branches or small bearing branches are directly inserted in the main branches, and the peach trees do not have side branches or only have a small number of side branches; and trimming and managing each main branch according to the shape of the trunk, and carrying out single branch updating, wherein each main branch is semi-upright, and an included angle between each main branch and the perpendicular direction is 20-30 degrees. According to the method provided by the invention, the number of branches of a middle lower portion of each peach tree is increased, a traditional planar fruitage mode is changed into a stereo fruitage mode, so that growth characteristics of peaches are met, and the peach trees are shaped quickly and easy to be trimmed; channels among rows are clear, and time and labor are saved during the operation in the field; branches and leaves of tree bodies are distributed uniformly, ventilation and light transmittance are realized, so that photosynthesis of leaves is good, the tree bodies grow strongly, and plant diseases and insect pests are few; and the method facilitates popularization of existing orchard machinery to peach orchards, and mechanical management is facilitated.
Owner:ZHENGZHOU FRUIT RES INST CHINESE ACADEMY OF AGRI SCI
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