Biological enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues

By using precisely formulated bio-enzyme trace element water-soluble fertilizers, the problems of low activity and poor stability of existing products have been solved, achieving the agricultural needs of high-efficiency stress resistance and restoration, improving crop yield and soil quality, and meeting green agriculture standards.

CN122167221APending Publication Date: 2026-06-09SHANXI LEIBANGFENG BIOTECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANXI LEIBANGFENG BIOTECHNOLOGY CO LTD
Filing Date
2026-04-02
Publication Date
2026-06-09

AI Technical Summary

Technical Problem

Existing biostimulant products are mostly single-ingredient or simple compound products, which have low activity, poor stability, and insufficient synergistic effect, making it difficult to meet the needs of modern agriculture for efficient stress resistance and repair.

Method used

This bio-enzyme micronutrient water-soluble fertilizer uses a precise ratio of ingredients, including boron, zinc, manganese zinc, superoxide dismutase (SOD), and a complex enzyme system. It is combined with fulvic acid and amino acids as carrier synergists and prepared through chelation and enzymatic hydrolysis processes to improve nutrient absorption efficiency and stability, build an antioxidant defense system, and promote crop metabolism and soil improvement.

Benefits of technology

It significantly enhances crops' resistance to drought, cold, and salt, improves nutrient utilization, increases soil organic matter, reduces pests and diseases, achieves efficient nutrient supplementation and soil improvement, meets the requirements of green agriculture, and has a significant yield-increasing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a bio-enzyme micronutrient water-soluble fertilizer capable of degrading pesticide and fertilizer residues. The water-soluble fertilizer comprises: basic nutrient components including boron, zinc, and manganese-zinc; bioactive components including superoxide dismutase (SOD) and a complex enzyme system; and a carrier synergist component including fulvic acid and amino acids. The concentrations of boron, zinc, and manganese-zinc in the water-soluble fertilizer are 25 g / L, 50 g / L, and 25 g / L, respectively. Compared with conventional single-element micronutrient fertilizers and ordinary water-soluble fertilizers, this fertilizer, employing amino acid chelation technology and a multi-enzyme synergistic system, effectively solves problems such as poor nutrient absorption, low utilization rate, and element antagonism in traditional fertilizers. It can comprehensively activate crop physiological metabolism, improve photosynthetic efficiency and nutrient transport capacity, and achieve stable and increased yields.
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Description

Technical Field

[0001] This invention belongs to the field of water-soluble fertilizer technology, specifically relating to a bio-enzyme trace element water-soluble fertilizer that can degrade pesticide and fertilizer residues. Background Technology

[0002] Water-soluble fertilizers are fertilizers that can completely dissolve in water and are typically used in irrigation systems or for spraying. Unlike traditional granular fertilizers, water-soluble fertilizers, by dissolving in water, can be absorbed more quickly by plant roots, providing immediate nutrient support.

[0004] In recent years, frequent extreme weather events have exacerbated crop stress caused by drought, waterlogging, low temperatures, and salinity, leading to frequent pesticide and fertilizer damage. Conventional products lack efficient stress resistance and repair capabilities. With the advancement of green agriculture, the "double reduction" policy (reducing fertilizer and pesticide residues) and organic farming, the market urgently needs a highly efficient and safe product that integrates nutrient supplementation, stress resistance repair, pesticide and fertilizer residue degradation, and soil improvement.

[0005] Existing biostimulant products are mostly single-component or simple compound formulations, suffering from low activity, poor stability, and insufficient synergistic effects. Therefore, this invention provides a bio-enzyme-based water-soluble micronutrient fertilizer capable of degrading pesticide and fertilizer residues, addressing the shortcomings of existing technologies and meeting the needs of high-quality development in modern agriculture. Summary of the Invention

[0006] The purpose of this invention is to provide a bio-enzyme trace element water-soluble fertilizer that can degrade pesticide and fertilizer residues, in order to solve the problems of existing biostimulant products, which are mostly single-component or simple compound products, with low activity, poor stability and insufficient synergistic effect.

[0007] To achieve the above objectives, the present invention provides a bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues, wherein the water-soluble fertilizer comprises: Basic nutritional components, which include boron, zinc, and manganese zinc; The bioactive component comprises superoxide dismutase (SOD) and a complex enzyme system; The carrier synergist component comprises fulvic acid and amino acids; The water-soluble fertilizer contains boron at a concentration of 25 g / L, zinc at a concentration of 50 g / L, and manganese-zinc at a concentration of 25 g / L.

[0008] It is precisely formulated with core trace elements such as boron, zinc, and manganese, combined with SOD and compound enzymes, and fulvic acid + amino acids as dual carriers to achieve a dual effect of stable nutrient supply and biological activation; the four zero standards ensure safety and no residue, making it suitable for green / organic planting.

[0009] According to the above technical content, the basic nutrient components also include calcium and magnesium elements, which supplement the essential medium elements for crops, strengthen cell wall structure, improve fruit firmness and quality, and work synergistically with boron, zinc and manganese to prevent nutrient deficiency chlorosis, small leaf disease, and flowering without fruiting.

[0010] According to the above technical content, the bioactive components also include cyclophosphamide, a natural bioactive ingredient with antioxidant, antibacterial, and crop immunity-enhancing properties; it regulates endogenous hormones such as abscisic acid and gibberellin, upregulates the expression of stress-resistance genes, and significantly improves drought resistance, cold resistance, and salt resistance.

[0011] According to the above technical content, the composite enzyme system includes one or more of protease, cellulase and phosphatase, which can accurately decompose fixed nitrogen, phosphorus and potassium in the soil, convert macromolecular nutrients into small molecule nutrients that can be directly absorbed; degrade pesticide residues and fertilizer residues, decompose harmful substances in the soil, improve fertilizer efficiency and purify the rhizosphere environment.

[0012] According to the above technical content, the carrier synergistic component also includes one or more of macroelements, rare earth elements, silicon, immunoglobulins, small molecule peptides, and fish proteins; the macroelements include nitrogen, phosphorus, and potassium; macroelements provide basic nutrition; rare earth elements promote root development and enhance enzyme activity; silicon causes epidermal silicification, enhancing disease resistance and lodging resistance; small molecule peptides, fish proteins, and immunoglobulins rapidly supplement nitrogen, promote protein synthesis, and repair damaged cells; overall, it improves nutrient utilization rate by more than 40%.

[0013] According to the above technical content, the water-soluble fertilizer is prepared by chelation and enzymatic hydrolysis. Chelation solves element antagonism and prevents nutrients from being fixed by the soil; enzymatic hydrolysis allows active substances to be fully released, improving stability and absorption efficiency, achieving a synergistic effect of 1+1>2.

[0014] According to the above technical content, the chelation process includes amino acid chelation technology, which is used to combine trace elements with amino acids. The amino acid chelated nutrients do not precipitate in the plant and are easily transported, greatly improving absorption efficiency; avoiding element antagonism and ensuring the simultaneous and efficient utilization of boron, zinc, manganese, calcium and magnesium.

[0015] According to the above technical content, the enzymatic hydrolysis process includes one or more of the following processes: organic-inorganic compound fermentation, biological fermentation, quantum-enhanced fermentation, aerobic fermentation, or anaerobic fermentation; the fermentation process employs quantum activation treatment to enhance the biological activity of the strains and materials; the fermentation process uses biological agents, which are prepared from one or more functional microorganisms, and the multi-stage fermentation thoroughly degrades the raw materials, producing a neutral pH, nanoscale suspension that can directly participate in plant metabolism; quantum enhancement improves enzyme activity and stability, ensuring the product is long-lasting, highly efficient, and easy to store.

[0016] According to the above technical content, the water-soluble fertilizer is used for crop nutrition supplementation, enzyme metabolism, stress resistance repair, root and fruit expansion promotion and soil improvement.

[0017] According to the above technical content, the stress resistance repair includes improving the crop's resistance to drought, salinity, low temperature or high temperature, as well as alleviating frost damage, pesticide damage or fertilizer damage.

[0018] Compared with the prior art, the beneficial effects of the present invention are: (1) Compared with conventional single-element micronutrient fertilizers and ordinary water-soluble fertilizers, this bio-enzyme micronutrient water-soluble fertilizer adopts amino acid chelation technology and multi-enzyme synergistic system, which can effectively solve the problems of poor nutrient absorption, low utilization rate and element antagonism of traditional fertilizers; it can fully activate crop physiological metabolism, improve photosynthetic efficiency and nutrient transport capacity, and achieve stable and increased yield; under the same fertilization conditions, the yield increase is much higher than that of traditional fertilizers, which can significantly improve planting income and solve the defects of limited yield increase and unstable effect of traditional fertilizers.

[0019] (2) Compared with traditional fertilizers, which require large amounts of nitrogen, phosphorus and potassium to maintain yield, this bio-enzyme micronutrient water-soluble fertilizer can activate soil to fix nutrients, reduce loss and improve fertilizer utilization by adding compound bio-enzymes and humic acid carriers; it breaks through the drawback of traditional fertilizers of "high input and low output"; this product can ensure yield while reducing the application of chemical fertilizers, reduce agricultural non-point source pollution, fit the policy of reducing chemical fertilizers and increasing efficiency, and has both economic and ecological benefits, making it more suitable for green and sustainable agricultural development.

[0020] (3) This bio-enzyme micro-element water-soluble fertilizer promotes the accumulation of sugar, fiber and effective components through bio-enzyme-promoted metabolism and endogenous hormone regulation; the synergistic effect of fulvic acid and amino acids can achieve "nutritional enhancement". Fulvic acid reduces the fixation and loss of amino acids and small molecule peptides in the soil through chelation protection, and improves their stability and mobility; the synergistic effect of alginic acid and amino acids / fish protein can achieve "metabolic regulation-nutrient supply". Alginic acid stimulates crop metabolic activity by regulating the level of endogenous hormones, and the timely supply of amino acids and fish protein is used as a high-quality nutrient source.

[0021] (4) This bio-enzyme trace element water-soluble fertilizer, through SOD, cyclophosphamide and compound bio-enzymes, constructs an antioxidant defense system, enhances the crop's ability to resist drought, cold and salt alkali, and alleviates pesticide and fertilizer damage; at the same time, it can improve soil organic matter, break up compaction and reduce pests and diseases; compared with traditional fertilizers, it can achieve "seedling nourishment + soil nourishment" simultaneously, taking into account both seasonal yield increase and long-term soil maintenance, and solving industry pain points such as continuous cropping obstacles, weak stress resistance and soil fertility decline.

[0022] (5) This bio-enzyme trace element water-soluble fertilizer is made primarily of natural organic ingredients and does not contain harmful chemical substances, which meets the development requirements of green agriculture and organic agriculture. The fulvic acid, amino acids, fish protein and other ingredients are all natural organic substances that can be decomposed and utilized by soil microorganisms and will not cause pollution to the environment.

[0023] (6) This bio-enzyme trace element water-soluble fertilizer achieves the organic unity of five major functions: nutrient supplementation, enzyme-driven metabolism, stress resistance and repair, root and fruit promotion, and soil improvement. Compared with single-function products, it has obvious comprehensive advantages. According to market research, the acceptance of compound biostimulant products in the market is rapidly increasing because farmers are more willing to use products with comprehensive functions and convenient use. Attached Figure Description

[0024] Figure 1 This is a summary table of the data effects of the embodiments of the present invention. Detailed Implementation

[0025] The specific embodiments of the present invention will now be described in detail with reference to the accompanying drawings, but it should be understood that the scope of protection of the present invention is not limited to the specific embodiments.

[0026] The following illustrates an embodiment of the present invention of a bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues, wherein the water-soluble fertilizer comprises: Basic nutritional components, which include boron, zinc, and manganese zinc; The bioactive component comprises superoxide dismutase (SOD) and a complex enzyme system; The carrier synergist component comprises fulvic acid and amino acids; The water-soluble fertilizer contains boron at a concentration of 25 g / L, zinc at a concentration of 50 g / L, and manganese-zinc at a concentration of 25 g / L.

[0027] The basic nutritional components also include calcium and magnesium.

[0028] The bioactive component also includes cyclozole.

[0029] The complex enzyme system includes one or more of proteases, cellulases, and phosphatases.

[0030] The carrier synergistic component also contains one or more of macroelements, rare earth elements, silicon, immunoglobulins, small molecule peptides, and fish proteins; the macroelements include nitrogen, phosphorus, and potassium; the macroelements provide basic nutrition.

[0031] The water-soluble fertilizer is prepared using chelation and enzymatic hydrolysis processes.

[0032] The chelation process includes amino acid chelation technology, which is used to combine trace elements with amino acids.

[0033] The enzymatic hydrolysis process includes one or more of the following: organic-inorganic compound fermentation, biological fermentation, quantum-enhanced fermentation, aerobic fermentation, or anaerobic fermentation; the fermentation process employs quantum activation treatment to enhance the biological activity of the strains and materials; the fermentation process uses biological agents, which are prepared from one or more functional microorganisms.

[0034] The water-soluble fertilizer is used for crop nutrition supplementation, enzyme metabolism, stress resistance repair, root and fruit expansion promotion, and soil improvement.

[0035] The stress-repair measures include improving crop resistance to drought, salinity, low temperature or high temperature, and mitigating frost damage, pesticide damage or fertilizer damage. Example

[0036] Effects observed by cotton farmers in Xinjiang. A cotton farmer used water-soluble fertilizer on 2,000 mu (approximately 333 hectares) of cotton fields. After three consecutive years of use, the following results were observed: cotton yield increased from 450 kg / mu to 635 kg / mu, a 9.2% increase; nitrogen fertilizer usage decreased by 20%, yet yield actually increased; cotton fiber length increased by 1.5 mm, and strength increased by 0.2 cN / tex; soil compaction was improved, and soil organic matter content increased by 0.3%. Example

[0037] Effects of water-soluble fertilizer application on vegetable growers in Shandong Province. One tomato grower, after using water-soluble fertilizer, saw tomato yield increase from 8000 kg / mu to 9500 kg / mu, an increase of 18.75%; fruit sugar content increased from 6.5% to 7.8%, resulting in a significant improvement in taste; nitrogen fertilizer usage decreased by 25%, yet plant growth was more vigorous; the incidence of pests and diseases decreased by approximately 30%, leading to a corresponding reduction in pesticide use. Example

[0038] Effects of applying water-soluble fertilizer in the cultivation of Chinese medicinal herbs. At a southern Isatis indigotica cultivation base, the use of water-soluble fertilizer resulted in a 10.27% increase in plant height, a 25% increase in branching number, and a significant increase in leaf quantity. The content of effective components in the medicinal herbs increased by more than 15%, improving their quality grade. Simultaneously, the enhanced resistance to adverse conditions reduced losses caused by climate change.

[0039] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0040] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A bio-enzyme-based water-soluble fertilizer containing trace elements that can degrade pesticide and fertilizer residues, characterized in that, The water-soluble fertilizer comprises: Basic nutritional components, which include boron, zinc, and manganese zinc; The bioactive component comprises superoxide dismutase (SOD) and a complex enzyme system; The carrier synergist component comprises fulvic acid and amino acids; The water-soluble fertilizer contains boron at a concentration of 25 g / L, zinc at a concentration of 50 g / L, and manganese-zinc at a concentration of 25 g / L.

2. The bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 1, characterized in that, The basic nutritional components also include calcium and magnesium.

3. The bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 2, characterized in that, The bioactive component also includes cyclozole.

4. The bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 3, characterized in that, The complex enzyme system includes one or more of proteases, cellulases, and phosphatases.

5. The bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 4, characterized in that, The carrier synergistic component also contains one or more of the following: macroelements, rare earth elements, silicon, immunoglobulins, small molecule peptides, and fish proteins; the macroelements include nitrogen, phosphorus, and potassium.

6. The bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 5, characterized in that, The water-soluble fertilizer is prepared using chelation and enzymatic hydrolysis processes.

7. The bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 6, characterized in that, The chelation process includes amino acid chelation technology, which is used to combine trace elements with amino acids.

8. The bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 7, characterized in that, The enzymatic hydrolysis process includes one or more of the following: organic-inorganic compound fermentation, biological fermentation, quantum-enhanced fermentation, aerobic fermentation, or anaerobic fermentation; the fermentation process employs quantum activation treatment to enhance the biological activity of the strains and materials; the fermentation process uses biological agents, which are prepared from one or more functional microorganisms.

9. A bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 8, characterized in that, The water-soluble fertilizer is used for crop nutrition supplementation, enzyme metabolism, stress resistance repair, root and fruit expansion promotion, and soil improvement.

10. A bio-enzyme trace element water-soluble fertilizer capable of degrading pesticide and fertilizer residues according to claim 9, characterized in that, The stress-repair measures include improving crop resistance to drought, salinity, low temperature or high temperature, and mitigating frost damage, pesticide damage or fertilizer damage.