Electricity generation regulator based on crop growth promotion and synergism and preparation method thereof

Through the combination of liquid A and liquid B, the synergistic effect of disodium ethylenediaminetetraacetate, metal salt compounds, amino acids and other components with microbial agents is solved, and the existing crop regulators are promoted in terms of diversity and soil microecology improvement is achieved, and crop growth promotion, yield improvement and quality improvement are achieved.

CN120574098APending Publication Date: 2025-09-02XIAN UNIV OF TECH
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Patent Information

Application Number
CN202510950947.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-10
Publication Date
2025-09-02

AI Technical Summary

Technical Problem

Existing crop regulators have shortcomings in diversity, targeting and soil microecology improvement, which are difficult to meet the various nutritional needs of different crops at different growth stages, and the fertilizer utilization rate is low.

Method used

The combination of liquid A and liquid B is adopted. Liquid A is mixed with disodium ethylenediaminetetraacetate and metal salt compounds. Liquid B is composed of amino acid compounds, oligosaccharide compounds, humic acid substances and microbial agents. Through synergistic action, it promotes crop growth, improves water and fertilizer utilization and improves soil microecology.

Benefits of technology

Significantly promote crop growth, improve yield and improve quality, improve water and fertilizer utilization, enhance crop stress resistance, wide adaptability, and flexible application methods.

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Abstract

The invention discloses an electricity generation regulator based on crop growth promotion and synergy and a preparation method thereof.The electricity generation regulator comprises a solution A and a solution B. The solution A is prepared by mixing disodium ethylene diamine tetraacetate, at least one metal salt compound and water and stirring the mixture for 15-25 minutes; and the liquid B is prepared by mixing and uniformly stirring at least one of an amino acid compound, an oligosaccharide compound, a humic acid substance and a microbial agent. Therefore, the electricity generation conditioning agent provided by the invention designs a special formula for different crops, and through the synergistic effect of the metal salt compound and the disodium ethylene diamine tetraacetate in the solution A, the amino acid in the solution B and the microbial agent, the growth of crops can be remarkably promoted, the utilization rate and yield of water and fertilizer can be increased, the quality of crops can be improved, and the micro-ecology of soil can be improved; the application mode is flexible and the adaptability is wide.
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Description

Technical Field

[0001] The present invention relates to the field of agricultural technology, and in particular to an electrostatic regulator for promoting crop growth and enhancing efficiency and a preparation method thereof. Background Art

[0002] In agricultural production, crop growth regulators play an important role in increasing crop yield, improving quality and enhancing stress resistance.

[0003] Currently, most crop regulators available on the market are single-ingredient or simple compound formulations, which present certain limitations in practical application. For example, some regulators have a relatively simple nutrient composition, making it difficult to meet the synergistic needs of different crops for multiple nutrients at different growth stages. Existing regulators lack targeted formulations for different types of crops (such as forage, cash crops, grains, fruit crops, and vegetables), making it difficult to fully realize the growth potential of each crop. Furthermore, the effectiveness of some regulators in improving the soil microecological environment and enhancing fertilizer utilization efficiency requires further optimization. Summary of the Invention

[0004] The present invention aims to solve the technical problems in the above-mentioned technologies at least to some extent.

[0005] To this end, the present invention discloses, on one hand, an electrostatic regulator based on crop growth promotion and synergy enhancement, comprising liquid A and liquid B, wherein:

[0006] The liquid A is specifically a mixture of disodium ethylenediaminetetraacetic acid, at least one metal salt compound and water;

[0007] The liquid B is specifically a mixture of amino acid compounds, oligosaccharide compounds, humic acid substances and at least one microbial agent.

[0008] According to the electrostatic regulator disclosed in the present invention, exclusive formulas are designed for different crops. Through the synergistic effect of metal salt compounds and disodium edetate in liquid A, amino acids and other components in liquid B and microbial agents, it can significantly promote crop growth, increase water and fertilizer utilization and yield, improve crop quality, and improve soil microecology. It has flexible application methods and wide adaptability.

[0009] In addition, the electricity-generating regulator based on crop growth promotion and synergy disclosed in the present invention may also have the following additional technical features:

[0010] In one embodiment of the present invention, the metal salt compound includes at least one of sulfate, silicate, calcium salt and borate, the amino acid compound includes at least one of glycine, proline, glutamic acid and threonine, the oligosaccharide compound is sodium alginate oligosaccharide, the humic acid substance includes at least one of biochemical fulvic acid and biomass humic acid, and the microbial agent is Bacillus subtilis.

[0011] In one embodiment of the present invention, the electricity generating regulator is used for forage crops and specifically comprises:

[0012] Solution A: 40g disodium EDTA, 20g ferrous sulfate heptahydrate, 40g magnesium sulfate heptahydrate, 20g zinc sulfate heptahydrate and 1L water;

[0013] Liquid B: 4g glycine, 4g proline, 0.8g sodium alginate oligosaccharide, 20g Bacillus subtilis and 40g biochemical fulvic acid.

[0014] In one embodiment of the present invention, the electricity generating regulator is used for economic crops and specifically comprises:

[0015] Solution A: 20g disodium EDTA, 40g zinc sulfate heptahydrate, 8g sodium silicate and 1L water;

[0016] Solution B: 2g glycine, 2g proline, 2g sodium alginate oligosaccharide, 20g Bacillus subtilis and 10g biochemical fulvic acid.

[0017] In one embodiment of the present invention, the electricity generating regulator is used for food crops and is specifically composed of:

[0018] Solution A: 40g disodium EDTA, 20g ferrous sulfate heptahydrate, 20g zinc sulfate heptahydrate, 8g sodium silicate and 1L water;

[0019] Liquid B: 20g biochemical fulvic acid and 20g Bacillus subtilis.

[0020] In one embodiment of the present invention, the electrostatic regulator is used for fruit crops and is specifically composed of:

[0021] Solution A: 8g disodium EDTA, 4g zinc sulfate heptahydrate, 4g calcium chloride, 40g boric acid and 100ml water;

[0022] Solution B: 2g glycine, 2g proline and 1g biomass humic acid.

[0023] In one embodiment of the present invention, the electricity regulator is used for Chinese cabbage, spinach and tomatoes, and is specifically composed of:

[0024] Solution A: 20g disodium EDTA, 20g ferrous sulfate heptahydrate, 20g zinc sulfate heptahydrate and 100ml water;

[0025] Solution B: 8g glutamic acid, 2g threonine and 1g biomass humic acid.

[0026] Another aspect of the present invention discloses a method for preparing an electrostatic regulator for promoting crop growth and enhancing efficiency, comprising:

[0027] The solution A is prepared by mixing disodium ethylenediaminetetraacetic acid, at least one metal salt compound, and water, and stirring for 15 to 25 minutes;

[0028] The B solution is prepared by mixing amino acid compounds, oligosaccharide compounds, humic acid substances and at least one microbial agent and stirring them evenly.

[0029] Additional contents and advantages of the present invention will be given in the following description or can be understood through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The technical solutions and beneficial effects of the present invention will become apparent and easily understood from the following contents in conjunction with the accompanying drawings, in which:

[0031] Figure 1 This is a comparison chart of the effects of the electricity-generating regulator disclosed in the present invention on corn silage;

[0032] Figure 2 This is a comparison chart of the effects of the electrostatic regulator disclosed in the present invention on sorghum;

[0033] Figure 3 This is a comparison chart of the effects of the electricity-generating regulator disclosed in the present invention when used in the cotton seedling stage;

[0034] Figure 4 This is a comparison chart of the effects of the electrostatic regulator disclosed in the present invention when used in the cotton bud stage;

[0035] Figure 5 This is a comparison chart of the effects of the electricity-generating regulator disclosed in the present invention when used in the cotton maturity stage;

[0036] Figure 6 This is a comparison diagram of the effects of the electrostatic regulator disclosed in the present invention on cotton;

[0037] Figure 7 This is another comparison diagram of the effects of the electrostatic regulator disclosed in the present invention on cotton;

[0038] Figure 8 This is a comparison chart of the effects of the electricity-generating regulator disclosed in the present invention on apples;

[0039] Figure 9This is another comparison chart of the effects of the electricity-generating regulator disclosed in the present invention on apples;

[0040] Figure 10 This is another comparison chart of the effects of the electricity-generating regulator disclosed in the present invention on apples;

[0041] Figure 11 This is a comparison chart of the effects of the electrostatic regulator disclosed in the present invention on pakchoy;

[0042] Figure 12 This is a comparison chart of the effects of the electrostatic regulator disclosed in the present invention on spinach;

[0043] Figure 13 This is a comparison chart of the effects of the electricity regulator disclosed in the present invention on tomatoes. DETAILED DESCRIPTION

[0044] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0045] The electricity generation regulator disclosed in the present invention will be described below with reference to the accompanying drawings.

[0046] A crop growth-promoting and synergistic electrostatic regulator and its preparation method, comprising liquid A and liquid B, wherein:

[0047] Liquid A is prepared by mixing disodium edetate and at least one metal salt compound with water and stirring for 15 to 25 minutes;

[0048] Liquid B is prepared by mixing at least one of an amino acid compound, an oligosaccharide compound, a humic acid substance and a microbial agent and stirring the mixture until uniformly mixed.

[0049] The metal salt compound includes at least one of sulfate, silicate, calcium salt and borate; the amino acid compound includes at least one of glycine, proline, glutamic acid and threonine; the oligosaccharide compound is sodium alginate oligosaccharide; the humic acid substance includes at least one of biochemical fulvic acid and biomass humic acid; and the microbial agent is Bacillus subtilis;

[0050] Specifically, amino acid compounds enhance crop photosynthetic efficiency and improve crop quality; humic acid compounds integrate trace elements and promote the absorption and utilization of micronutrient fertilizers; microbial agents enhance product biological activity and improve soil nutrient conditions; disodium ethylenediaminetetraacetic acid and at least one metal salt compound form trace elements to promote crop growth, development and metabolism; and oligosaccharide compounds enhance crop resistance to stress and protect cell membrane structure.

[0051] The electrostatic regulator disclosed in the present invention is a water-soluble, organic-inorganic composite regulator with biological activity, a pH value of 6.0-7.0, and an effective viable bacterial count of greater than or equal to 200 million / ml.

[0052] In one embodiment of the present invention, Figure 1 and Figure 2 As shown, the electrostatic regulator is used for forage crops and its specific composition is:

[0053] Solution A: 40g disodium EDTA, 20g ferrous sulfate heptahydrate, 40g magnesium sulfate heptahydrate, 20g zinc sulfate heptahydrate and 1L water;

[0054] Liquid B: 4g glycine, 4g proline, 0.8g sodium alginate oligosaccharide, 20g Bacillus subtilis and 40g biochemical fulvic acid.

[0055] Specifically:

[0056] The amount of the electrostatic regulator in this embodiment is used to prepare 1L of stock solution. If a larger amount of stock solution is needed later, it is only necessary to increase the amount of drugs and water used in the above preparation process in a corresponding proportion.

[0057] Application time:

[0058] Apply twice with water drops during the jointing and heading stages of sorghum;

[0059] Apply water droplets once at the seedling stage, bud stage and pod stage of alfalfa;

[0060] In this embodiment, the ratio of the electrostatic regulator to water drop application is about 1:1000, that is, 1L of the stock solution is dripped with 1000L of water;

[0061] By using the electricity-generating regulator disclosed in this embodiment, the plant height of silage corn and sorghum increased by 5% to 14%, and the yield increased by 8% to 12%.

[0062] In one embodiment of the present invention, Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 and Figure 7 As shown, the electricity regulator is used for economic crops and its specific composition is:

[0063] Solution A: 20g disodium EDTA, 40g zinc sulfate heptahydrate, 8g sodium silicate and 1L water;

[0064] Solution B: 2g glycine, 2g proline, 2g sodium alginate oligosaccharide, 20g Bacillus subtilis and 10g biochemical fulvic acid.

[0065] Specifically:

[0066] The amount of the electrostatic regulator in this embodiment is used to prepare 1L of stock solution. If a larger amount of stock solution is needed later, it is only necessary to increase the amount of drugs and water used in the above preparation process in a corresponding proportion.

[0067] Application time:

[0068] Apply the fertilizer once with water drops at the seedling stage, and twice at the bud and boll stages respectively;

[0069] In this embodiment, the ratio of the electrostatic regulator to water drop application is about 1:800, that is, 1L of the stock solution is dripped with 800L of water;

[0070] By using the electrostatic regulator disclosed in this embodiment, cotton plant height is increased by 10% to 20%, leaf area index is increased by 15% to 20%, water and fertilizer utilization efficiency is increased by 10% to 15%, and yield is increased by 10% to 20%.

[0071] In one embodiment of the present invention, the electrostatic regulator is used for food crops and specifically comprises:

[0072] Solution A: 40g disodium EDTA, 20g ferrous sulfate heptahydrate, 20g zinc sulfate heptahydrate, 8g sodium silicate and 1L water;

[0073] Liquid B: 20g biochemical fulvic acid and 20g Bacillus subtilis.

[0074] Specifically:

[0075] The amount of the electrostatic regulator in this embodiment is used to prepare 1L of stock solution. If a larger amount of stock solution is needed later, it is only necessary to increase the amount of drugs and water used in the above preparation process in a corresponding proportion.

[0076] Application time:

[0077] Apply the fertilizer twice with dripping during the jointing and grain filling stages of wheat;

[0078] In this embodiment, the ratio of the electrostatic regulator to water drop application is about 1:1000, that is, 1L of the stock solution is dripped with 1000L of water.

[0079] In one embodiment of the present invention, Figure 8 、 Figure 7 and Figure 10 As shown, the electrostatic regulator is used for forestry and fruit crops, and its specific composition is:

[0080] Solution A: 8g disodium EDTA, 4g zinc sulfate heptahydrate, 4g calcium chloride, 40g boric acid and 100ml water;

[0081] Solution B: 2g glycine, 2g proline and 1g biomass humic acid.

[0082] Specifically:

[0083] The amount of the electrostatic regulator in this embodiment is used to prepare 100 ml of stock solution. If a larger amount of stock solution is needed later, it is only necessary to increase the amount of drugs and water used in the above preparation process in a corresponding proportion.

[0084] Application time:

[0085] Spray once each during the fruit setting period, young fruit period and fruit expansion period of apples;

[0086] Spray once each during the flowering period, fruit expansion period, hard-core period and oil conversion period of walnut;

[0087] It should be noted that for every 1L of diluted biostimulant, 1ml of silicone surfactant should be added;

[0088] The electricity regulator in this embodiment is diluted 400 times and sprayed evenly on both sides of the leaves. The spraying amount is based on the degree to which the fertilizer liquid is about to drip but not drip on the back of the cotton leaves. The spraying time is after 16:00 on sunny days or on cloudy days. If it rains within 4 hours after spraying, re-spraying is required;

[0089] It should also be noted that when using the prepared fertilizer solution, you can spray a few plants to see if there is any leaf burn. If so, you need to increase the dilution multiple;

[0090] By using the electricity-generating regulator disclosed in this embodiment, the horizontal diameter of apple fruit increases by 10% to 18%, the vertical diameter of the fruit increases by 10% to 20%, and the yield increases by 15% to 20%.

[0091] In one embodiment of the present invention, Figure 11 、 Figure 12 and Figure 13 As shown, the electrostatic regulator is used for Chinese cabbage, spinach and tomatoes, and its specific composition is:

[0092] Solution A: 20g disodium EDTA, 20g ferrous sulfate heptahydrate, 20g zinc sulfate heptahydrate and 100ml water;

[0093] Solution B: 8g glutamic acid, 2g threonine and 1g biomass humic acid.

[0094] Specifically:

[0095] The amount of the electrostatic regulator in this embodiment is used to prepare 100 ml of stock solution. If a larger amount of stock solution is needed later, it is only necessary to increase the amount of drugs and water used in the above preparation process in a corresponding proportion.

[0096] Application time:

[0097] Start spraying on the 20th day of growth for Chinese cabbage and spinach, and spray during the initial flowering, initial fruiting and peak fruiting stages of tomatoes. Dilute 400 times when using, spray once every 10 to 15 days, spray on both sides, until a layer of small water droplets is evenly attached to the leaves.

[0098] By using the electrogenic regulator disclosed in this embodiment, the water utilization rate of Chinese cabbage, spinach, and tomatoes is increased by 10% to 20%, the yield is increased by 20% to 30%, the soluble sugar content is increased by 10% to 15%, and the soluble protein content is increased by 10% to 19%.

[0099] In summary, the electrostatic regulator disclosed in the present invention has exclusive formulas designed for different crops. Through the synergistic effect of metal salt compounds and disodium edetate in liquid A, amino acids and other components in liquid B, and microbial agents, it can significantly promote crop growth, increase water and fertilizer utilization and yield, improve crop quality, and improve soil microecology. It has flexible application methods and wide adaptability.

[0100] Although the embodiments of the present invention have been shown and described above, it will be understood that the above embodiments are illustrative and are not to be construed as limitations on the present invention. A person skilled in the art may change, modify, replace and modify the above embodiments within the scope of the present invention.

Claims

1. A crop growth-promoting and synergistic electricity regulator, characterized in that: Including liquid A and liquid B, among which, The liquid A is specifically a mixture of disodium ethylenediaminetetraacetic acid, at least one metal salt compound and water; The liquid B is specifically a mixture of amino acid compounds, oligosaccharide compounds, humic acid substances and at least one microbial agent.

2. The electricity-generating regulator for promoting crop growth and enhancing efficiency according to claim 1, characterized in that: The metal salt compound includes at least one of sulfate, silicate, calcium salt and borate; the amino acid compound includes at least one of glycine, proline, glutamic acid and threonine; the oligosaccharide compound is sodium alginate oligosaccharide; the humic acid substance includes at least one of biochemical fulvic acid and biomass humic acid; and the microbial agent is Bacillus subtilis.

3. The electrostatic regulator for promoting crop growth and enhancing efficiency according to claim 2, characterized in that: The electricity-generating regulator is used for forage crops and specifically comprises: Solution A: 40g disodium EDTA, 20g ferrous sulfate heptahydrate, 40g magnesium sulfate heptahydrate, 20g zinc sulfate heptahydrate and 1L water; Liquid B: 4g glycine, 4g proline, 0.8g sodium alginate oligosaccharide, 20g Bacillus subtilis and 40g biochemical fulvic acid.

4. The electricity-generating regulator for promoting crop growth and enhancing efficiency according to claim 2, characterized in that: The electricity-generating regulator is used for economic crops and specifically comprises: Solution A: 20g disodium EDTA, 40g zinc sulfate heptahydrate, 8g sodium silicate and 1L water; Solution B: 2g glycine, 2g proline, 2g sodium alginate oligosaccharide, 20g Bacillus subtilis and 10g biochemical fulvic acid.

5. The electricity-generating regulator for promoting crop growth and enhancing efficiency according to claim 2, characterized in that: The electricity-generating regulator is used for food crops and specifically comprises: Solution A: 40g disodium EDTA, 20g ferrous sulfate heptahydrate, 20g zinc sulfate heptahydrate, 8g sodium silicate and 1L water; Liquid B: 20g biochemical fulvic acid and 20g Bacillus subtilis.

6. The electrostatic regulator for promoting crop growth and enhancing efficiency according to claim 2, characterized in that: The electricity regulator is used for forestry and fruit crops and is specifically composed of: Solution A: 8g disodium EDTA, 4g zinc sulfate heptahydrate, 4g calcium chloride, 40g boric acid and 100ml water; Solution B: 2g glycine, 2g proline and 1g biomass humic acid.

7. The electricity-generating regulator for promoting crop growth and enhancing efficiency according to claim 2, characterized in that: The electricity regulator is used for Chinese cabbage, spinach and tomatoes, and is specifically composed of: Solution A: 20g disodium EDTA, 20g ferrous sulfate heptahydrate, 20g zinc sulfate heptahydrate and 100ml water; Solution B: 8g glutamic acid, 2g threonine and 1g biomass humic acid.

8. The electricity-generating regulator for promoting crop growth and enhancing efficiency according to claim 1, characterized in that: The preparation method comprises: The solution A is prepared by mixing disodium ethylenediaminetetraacetic acid and at least one metal salt compound with water and stirring for 15 to 25 minutes; The B solution is prepared by mixing at least one of an amino acid compound, an oligosaccharide compound, a humic acid substance and a microbial agent and stirring the mixture until uniform.