Ternary herbicidal composition and use thereof

The use of ternary herbicidal compositions solves the problem of weed resistance caused by chemical herbicides, achieving broad-spectrum control of grasses and broadleaf weeds, reducing application rates and enhancing weed control effects. It is suitable for genetically modified crops and has environmental and economic benefits.

WO2026103691A1PCT designated stage Publication Date: 2026-05-21SHANDONG KINGAGROOT CROPSCIENCE CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
SHANDONG KINGAGROOT CROPSCIENCE CO LTD
Filing Date
2025-11-11
Publication Date
2026-05-21

AI Technical Summary

Technical Problem

Long-term use of single-variety or single-mode chemical herbicides has led to the evolution of herbicide resistance in weeds, and existing technologies are unable to effectively expand the spectrum of weed control and solve the problem of resistant weeds.

Method used

A ternary herbicidal composition is used, comprising active ingredient A, dichlorvos, active ingredient B (isoxaflubenzuron, benzoxazole, or mesotrione), and active ingredient C (methazine), mixed in a specific ratio and combined with conventional adjuvants and safeners to form a dispersible oil suspension, water suspension, or other formulations for spraying weeds.

Benefits of technology

It achieves broad-spectrum control of grasses and broadleaf weeds, reduces application amount, enhances weed control effect, is fast and long-lasting, reduces environmental pollution, is suitable for genetically modified crops, and has a synergistic effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the field of pesticides, and specifically relates to a ternary herbicidal composition and the use thereof. The ternary herbicidal composition comprises herbicidally effective amounts of active ingredient A, active ingredient B and active ingredient C, wherein the active ingredient A is (I) or bixlozone; the active ingredient B is isoxaflutole, fenpyrazone, (II) or mesotrione; and the active ingredient C is metribuzin. The composition can effectively control a variety of weed problems such as gramineous and broadleaf weeds, and has the characteristics of an expanded herbicidal spectrum, a reduced application amount, synergistic effects, the ability to solve the problem of resistant weeds, etc.
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Description

Ternary herbicidal compositions and their applications Technical Field

[0001] This invention belongs to the field of pesticides, specifically relating to a ternary herbicidal composition and its application. Background Technology

[0002] Chemical weed control is the most economical and effective means of weed control in farmland. However, long-term, continuous, and high-dose use of single-variety or single-mode chemical herbicides can easily lead to problems such as weed resistance and the evolution of resistance. The rational combination or mixing of herbicide compounds has advantages such as broadening the weed control spectrum, improving control efficacy, and delaying the occurrence and development of weed resistance. It is one of the most effective methods to solve the above problems. Therefore, there is an urgent need in production to develop herbicide compositions with high safety, broad weed control spectrum, synergistic effects, and the ability to address resistant weeds. Summary of the Invention

[0003] To address the aforementioned problems in the existing technology, this invention provides a ternary herbicidal composition and its application. This composition can effectively control various weeds, including grasses and broadleaf weeds, and has the characteristics of broadening the weed control spectrum, reducing the application amount, producing synergistic effects, and solving the problem of resistant weeds.

[0004] A ternary herbicidal composition comprising herbicidally effective amounts of active ingredient A, active ingredient B, and active ingredient C, wherein,

[0005] Active ingredient A is Or dichloroisoxane (CAS No.: 81777-95-9);

[0006] Active ingredient B is isoxaflutole (CAS No.: 141112-29-0) and benzoxazole flufenoxuron (CAS No.: 1992017-55-6). Or nicotinamide (CAS No.: 104206-82-8);

[0007] The active ingredient C is cypermethrin (CAS No.: 21087-64-9).

[0008] In one specific embodiment, the weight ratio of A, B and C is 1-100:1-150:1-500, 5-80:3-100:5-300, 10-60:5-90:10-150, 15-40:10-60:15-80 or 20-30:15-25:40-50.

[0009] The herbicidal composition contains A, B, and C at a mass percentage of 1-95% of the total, preferably 10-80%.

[0010] The herbicidal composition also contains conventional adjuvants, including carriers and / or surfactants.

[0011] The term "carrier" in this article refers to an organic or inorganic, natural or synthetic substance. These facilitate the application of the active ingredient and are generally inert and must be agriculturally acceptable, particularly to the plant being treated. Carriers can be solid, such as clay, natural or synthetic silicates, silica, resins, waxes, solid fertilizers, etc.; or liquid, such as water, alcohols, ketones, petroleum fractions, aromatic or waxy hydrocarbons, chlorinated hydrocarbons, liquefied gas, etc.

[0012] Surfactants can include emulsifiers, dispersants, or wetting agents, and can be ionic or nonionic. Examples that may be mentioned include salts of polyacrylic acid, lignin sulfonates, salts of phenol sulfonic acid or naphthalene sulfonic acid, polymers of ethylene oxide with aliphatic alcohols or with aliphatic acids or with aliphatic amines and substituted phenols (especially alkylphenols or arylphenols), sulfosuccinates, taurine derivatives (especially alkyl taurine esters), and phosphate esters of alcohols or polyhydroxyethylated phenols, alkyl sulfonates, alkyl aryl sulfonates, alkyl sulfates, lauryl ether sulfates, fatty alcohol sulfates, and sulfated hexadecyl, heptadecanols, and octadecyl alcohols, as well as sulfated fatty alcohol glycol ethers, and naphthalene or naphthalene sulfonic acid with phenol and formaldehyde. Condensations, polyoxyethylene octylphenyl ether, ethoxylated isooctylphenol, octylphenol or nonylphenol, alkylphenyl polyethylene glycol ether, tributylphenyl polyethylene glycol ether, tripearylphenyl polyethylene glycol ether, alkylaryl polyether alcohol, alcohols and fatty alcohols / ethylene oxide condensates, ethoxylated castor oil, polyoxyethylene alkyl ether, ethoxylated polyoxypropylene, lauryl polyethylene glycol ether acetal, sorbitan ester, lignin sulfite waste liquid, and proteins, denatured proteins, polysaccharides (e.g., methylcellulose), hydrophobically modified starch, polyvinyl alcohol, polycarboxylates, polyalkoxylated compounds, polyethyleneamine, polyvinylpyrrolidone and copolymers thereof. At least one surfactant is required to facilitate the dispersion of the active ingredients in water and to facilitate their proper application to plants.

[0013] The above composition may also contain various other components, such as protective colloids, adhesives, thickeners, thixotropic agents, penetrants, stabilizers, chelating agents, dyes, colorants, and polymers.

[0014] The herbicidal composition further comprises at least one safener, preferably one or more of the following: bis(benzyloxazol) (CAS: 163520-33-0), cyprosulfamide (CAS: 221667-31-8), pyrazole-methyl (CAS: 135590-91-9), quinoline (CAS: 99607-70-2), gibberellic acid (CAS: 77-06-5), furilazole (CAS: 121776-33-8), and metcamifen (CAS: 129531-12-0).

[0015] In the context of this specification, if the abbreviation of the common name of the active compound is used, it includes, in each case, all conventional derivatives, such as esters and salts, and isomers, particularly optical isomers, especially one or more commercially available forms. If the common name indicates an ester or salt, it also includes, in each case, all other conventional derivatives, such as other esters and salts, free acids and neutral compounds, and isomers, particularly optical isomers, especially one or more commercially available forms. The chemical name of the compound given indicates at least one compound covered by the common name, which is generally preferred. In the case of sulfonamides such as sulfonylureas, the salt also includes salts formed by the exchange of hydrogen atoms in the sulfonamide group with a cation.

[0016] In the context of this invention, the salt of the compound is preferably in the form of its respective alkali metal salt, alkaline earth metal salt or ammonium salt, more preferably in the form of its respective alkali metal salt, more preferably in the form of its respective sodium salt or potassium salt, and most preferably in the form of its respective sodium salt.

[0017] The compositions of the present invention can be diluted or used directly by the user before use. They can be prepared by conventional processing methods, namely, mixing the active substance with a liquid solvent or solid carrier, and then adding one or more surfactants such as dispersants, stabilizers, wetting agents, binders, and defoamers.

[0018] The specific formulations of the herbicidal composition are dispersible oil suspensions, aqueous suspensions, emulsions, wettable powders, emulsifiable concentrates, water-dispersible granules (dry suspensions), water emulsions, and microemulsions.

[0019] In short, the compositions of the present invention can be mixed with solid and liquid additives conventionally used in existing formulations. The amount of active ingredient used varies with changing external conditions, such as temperature, humidity, and the nature of the herbicide used. It can vary considerably, for example, from 0.001 to 1.0 kg / ha, or more active substances, but is preferably between 0.005 and 750 g / ha, particularly between 0.005 and 500 g / ha.

[0020] In addition, the composition of the present invention can be applied to the leaves of the plant to be treated by spraying, i.e., applied to weeds, especially to surfaces that are infested or susceptible to weed infestation.

[0021] Furthermore, the present invention also provides an application of the herbicidal composition in controlling weeds; and a method for controlling unwanted plant growth, comprising applying the herbicidal composition to plants, plant parts, plant seeds, or areas where plants grow. Preferably, the herbicidal composition is used to selectively control weeds in useful crops; more preferably, the useful crop is a transgenic crop or a crop treated with genome editing technology.

[0022] The compounds of this invention can be used to treat all plants and plant parts. Plant varieties and cultivars can be obtained through conventional propagation and breeding methods or through genetic engineering methods. Genetically modified plants (transgenic plants) are those in which a heterologous gene (transgenic gene) has been stably integrated into the plant's genome. The transgenic event defined by its specific location in the plant genome is called a transformation event or transgenic event.

[0023] Genetically modified plant cultivars that can be treated according to the present invention include those resistant to one or more biotic stresses (pests, such as nematodes, insects, mites, fungi, etc.) or abiotic stresses (drought, low temperature, soil salinization, etc.), or those containing other desired traits. Plants can be genetically modified to express traits such as herbicide tolerance, insect tolerance, modified oil characteristics, or drought tolerance. Information on available genetically modified plants containing single gene transformation events or combinations of transformation events is available, for example, from publicly available databases maintained by the U.S. Department of Agriculture.

[0024] When the herbicidal compositions of the present invention are applied, their herbicidal activity exhibits unexpected synergistic effects relative to single agents and any binary combinations thereof. These synergistic effects manifest as reduced application rates, a broader spectrum of weed control, faster and more sustained weed control—characteristics desired in weed control practices. In terms of the described properties, these new compositions are significantly superior to existing herbicides, achieving reduced application rates and being more environmentally friendly.

[0025] The synergistic herbicidal composition of the present invention also has the following advantages:

[0026] (1) The compositions of the present invention are environmentally friendly and are easily degraded in the environment.

[0027] (2) The herbicide composition of the present invention is low in cost and easy to use, and its promotion and application have great economic and social benefits. Detailed Implementation

[0028] The following examples are not intended to limit the invention, but are merely illustrative of how the invention is implemented. These examples demonstrate particularly significant effectiveness against certain weeds. Examples are as follows:

[0029] Efficacy test (soil spray treatment):

[0030] 1) Cultivation conditions

[0031] The process is carried out in a controlled greenhouse with a temperature of 20–30°C, natural light, and a relative humidity of 55%–75%.

[0032] The soil type was loam, with an organic matter content of 1.63%, pH = 7.1, available nitrogen 84.3 mg / kg, available phosphorus 38.5 mg / kg, and available potassium 82.1 mg / kg. The soil was quantitatively filled to 3 / 4 full in pots, and then watered from the bottom to completely saturate the soil. The tested weed seeds were pre-germinated until they showed signs of germination, then evenly and quantitatively sown on the surface, covered with 0.5-1 cm of soil depending on seed size, and left to germinate for 72 hours.

[0033] 2) Test methods

[0034] The required active ingredients were purchased from reagent companies or synthesized using conventional methods. All raw materials were diluted with acetone as a solvent and diluted with a 0.1% Tween-80 emulsifier aqueous solution, and diluted immediately before use.

[0035] Water containing the same solvent and emulsifier but without any pharmaceuticals was used as a blank control.

[0036] Each treatment was repeated 4 times, with 3 pots per treatment per session, and 30 weed seeds sown in each pot.

[0037] 24 hours after weed sowing, soil spraying was used to treat the weeds with varying doses from low to high according to the experimental design, with each treatment repeated four times. After treatment, the weeds were transferred to a greenhouse for conventional cultivation.

[0038] 3) Data survey and statistical analysis

[0039] 3.1) Survey Methods

[0040] The absolute number method was used. Surviving weed seedlings were cut along the soil surface with a blade, and their fresh weight was measured using an analytical balance. Dead weeds were counted as having a fresh weight of zero.

[0041] 3.2) Survey time and frequency

[0042] An investigation was conducted 21 days after the incident, for a total of one investigation.

[0043] 3.3) Data Statistical Analysis

[0044] Use the Colby test to evaluate the combined effects of any two or three of these agents on weeds.

[0045] Aboveground green tissue was collected from each treatment area and weighed using an electronic balance. The actual survival rate was calculated as follows: E(%) = (fresh weight of weeds in the treatment area / fresh weight of weeds in the control area) × 100

[0046] The theoretical weed survival rate calculation formula is: E0(%) = X × Y / 100 (binary mixture)

[0047] In the formula, X represents the weed survival rate of A when the dosage is P, Y represents the weed survival rate of B when the dosage is Q, E0 represents the theoretical weed survival rate of A+B when the dosage is (P+Q), and E represents the actual weed survival rate of each treatment.

[0048] E0(%)=X×Y×Z×…×N / 100 (n-1) (Mixed use of ternary or higher-grade compounds)

[0049] In the formula, X, Y, Z, and N represent the actual survival rates of n single agents, and n is the number of compound herbicides.

[0050] When E0-E > 10%, it indicates a synergistic effect; when E0-E < -10%, it indicates an antagonistic effect; when E0-E is between ±10%, it indicates an additive effect.

[0051] The statistical results of the actual control efficacy and combined effect evaluation of each component in weed control are shown in Table 1-8 below.

[0052] Table 1. Statistical results of the actual control efficacy and combined effect of each component mixture on *Setaria viridis* (A represents...). B is isoxazolidin.

[0053] Table 2. Statistical results of the actual control efficacy and combined effect evaluation of each component mixture on Japanese market vendors (A represents...). B is nicosulfuron (Nicosulfuron-methyl)

[0054] Table 3. Statistical results of the evaluation of the actual control efficacy and combined effects of each component mixture on ryegrass (A represents...). (B benzosulfuron)

[0055] Table 4. Statistical results of the actual control efficacy and combined effect evaluation of each component mixture on Kentucky bluegrass (A represents...). B is )

[0056] Table 5. Statistical results of the actual control efficacy and combined effect evaluation of each component mixture on Lernica perennial (A is dichlorvos, B isoxaflutole).

[0057] Table 6. Statistical results of the actual control efficacy and combined effect evaluation of each component mixture on velvetleaf (A is dichlorvos, B is benzoxazole).

[0058] Table 7. Statistical results of the actual control efficacy and combined effect evaluation of each component mixture on Lernicolone oryzae (A represents dichloroisoxane, B represents...). )

[0059] Table 8. Statistical results of the actual control efficacy and combined effect evaluation of each component in the combination of virginiana (A is dichloroisoxane, B is nicosulfuron).

[0060] Note: E(A): Measured fresh weight survival rate of component A treatment at a given dose.

[0061] E(B): Measured fresh weight survival rate of component B treatment at a given dose.

[0062] E(C): Measured fresh weight survival rate of component C treatment at a given dose.

[0063] E(A+B): Measured fresh weight survival rate of a binary mixture of components A and B at a given dosage.

[0064] E(A+C): Measured fresh weight survival rate of a binary mixture of components A and C at a given dosage.

[0065] E(B+C): Measured fresh weight survival rate of a binary mixture of components B and C at a given dosage.

[0066] E(A+B+C): Measured fresh weight survival rate of a ternary mixture of components A, B, and C at a given dosage.

[0067] E0(A+B+C): The theoretical fresh weight survival rate of a ternary mixture of components A, B, and C at a given dosage.

[0068] E0((A+B)+C): The theoretical fresh weight survival rate of components A and B as a whole when mixed with component C at a given dose.

[0069] E0((A+C)+B): The theoretical fresh weight survival rate of components A and C as a whole, mixed with component B at a given dose.

[0070] E0(A+(B+C)): The theoretical fresh weight survival rate of components B and C as a whole when mixed with component A at a given dose.

[0071] Through extensive experimentation and exploration, this invention unexpectedly discovered that the composition exhibits a surprising and unexpected synergistic effect in controlling various gramineous and broadleaf weeds. This synergistic effect is more pronounced at low doses, reducing the amount of herbicide used and environmental pollution. Furthermore, rational formulation lowers agricultural costs, demonstrating excellent application prospects. Simultaneously, tests in field crops have shown good selectivity and superior synergistic effects, suggesting its potential for development into a herbicide mixture with broad market value.

Claims

1. A ternary herbicidal composition, characterized in that, It includes active ingredients A, B, and C, which are effective in controlling weed growth. Active ingredient A is Or dichloroisoxamate; Active ingredient B is isoxaflutole, benzoylflutole, Or nicosulfuron; The active ingredient C is cypermethrin.

2. The ternary herbicidal composition according to claim 1, characterized in that, The weight ratios of A, B, and C are 1–100:1–150:1–500, 5–80:3–100:5–300, 10–60:5–90:10–150, 15–40:10–60:15–80, or 20–30:15–25:40–50.

3. The ternary herbicidal composition according to claim 1 or 2, characterized in that, The herbicidal composition contains A, B, and C at a mass percentage of 1-95% of the total, preferably 10-80%.

4. The ternary herbicidal composition according to claim 1 or 2, characterized in that, The herbicidal composition also includes conventional adjuvants, preferably including carriers and / or surfactants.

5. The ternary herbicidal composition according to claim 1 or 2, characterized in that, The herbicidal composition further includes at least one safener, preferably selected from one or more of bis(oxazolyl) acid, cyprosulfamide, pyrazolyl glufosinate, quinoline, gibberellic acid, furilazole, and metcamifen.

6. The ternary herbicidal composition according to claim 1 or 2, characterized in that, The specific formulation of the herbicidal composition is a dispersible oil suspension, an aqueous suspension, a suspension emulsion, a wettable powder, an emulsifiable concentrate, a water-dispersible granule, an emulsion, or a microemulsion.

7. The application of the ternary herbicidal composition according to any one of claims 1-6 in the control of weeds, preferably, the herbicidal composition is used to selectively control weeds in useful crops, more preferably, the useful crops are transgenic crops or crops treated with genome editing technology.

8. A method for controlling unwanted plant growth, comprising applying the ternary herbicidal composition of any one of claims 1-6 to a plant, plant part, plant seed or area of ​​plant growth, preferably, the herbicidal composition is used to selectively control weeds in a useful crop, more preferably, the useful crop is a transgenic crop or a crop treated with genome editing technology.