Novel insecticidal compositions containing elemental sulfur and acinonapyr

A synergistic pesticidal composition of elemental sulfur and acinonapyr addresses pest resistance and environmental toxicity issues, offering effective pest control and yield improvement through improved formulation properties.

JP7731499B2Active Publication Date: 2025-08-29ドーシ ハイトシュクマー アニルカント +1
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Patent Information

Application Number
JP2024515170
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-09-09
Filing Date
2022-09-09
Publication Date
2025-08-29
Estimated Expiration
2042-09-09

AI Technical Summary

Technical Problem

Current insecticidal compositions are inadequate in controlling pests like mites and insects due to pest resistance, environmental toxicity, and inefficiencies in application, necessitating the development of a synergistic combination with reduced dosages and broad spectrum activity.

Method used

A pesticidal composition comprising elemental sulfur (20-90% w/w) and acinonapyr (0.1-50% w/w) with agrochemically acceptable excipients, formulated as liquid or solid forms, providing synergistic pest control and improved application properties.

Benefits of technology

The composition effectively controls pests at reduced dosages, enhances crop protection, manages resistance, and improves yield with enhanced formulation properties and environmental safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to an insecticidal composition comprising elemental sulfur, acinonapyr, and at least one agrochemically acceptable excipient. The invention particularly relates to an insecticidal composition comprising elemental sulfur in the range of 20% w / w to 90% w / w of the total composition, acinonapyr present in the range of 0.1% to 50% w / w of the total composition, and at least one agrochemically acceptable excipient. The composition comprises particles in the size range of 0.1 microns to 50 microns. The present invention also relates to a process for preparing the insecticidal composition. The present invention relates to a method for treating a plant, crop, plant propagation material, a locus or part thereof, a seed, seedling, or surrounding soil with the insecticidal composition.
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Description

[Technical Field]

[0001] The present invention relates to novel pesticidal compositions comprising elemental sulfur, acinonapyr, and at least one agrochemically acceptable excipient. [Background technology]

[0002] In describing embodiments of the invention, specific terminology is chosen for the sake of clarity, however, it is not intended that the invention be limited to the specific terminology so chosen, and it should be understood that each specific term includes all technical equivalents that operate in a similar manner and achieve a similar purpose.

[0003] Pests, including mites, are agricultural pests that cause damage to growing crops by chewing the leaves of the crop, sucking out plant sap, boring holes into the fruit, roots, stems, or leaves, and also spreading plant pathogens. Damage to plants can be direct or indirect; in direct damage, feeding insects eat the leaves or bore holes into the stems, fruit, or roots. The second type is indirect damage, in which the insects themselves cause little or no harm but transmit bacterial, viral, or fungal infections to the crop.

[0004] The current insecticidal efficacy of known compounds is not sufficient in the field of insect pests and acarids such as ticks and mites.Due to the diverse practices in different fields, insecticides are sometimes administered at relatively higher dosages, and it is commonly observed that repeated and long-term application of higher dosages of individual insecticides or known chemicals will eventually result in the development of pest resistance to such known chemicals.In addition, in order to overcome resistance problems, runoff or leaching associated with the application of insecticidal compositions, which are usually applied at higher dosages, leads to their leakage into groundwater, which leads to soil toxicity and negatively impacts the environment.Again, currently, the area planted with economic crops is gradually expanding, and with the increase in the degree of disease occurrence and the number of pests, it is becoming increasingly difficult to effectively eliminate these pests.

[0005] Current pesticide combinations are outdated chemicals and repeated use of such chemical combinations causes problems in insect control or mite pest population management such as mite, mites or pest resistance to the pesticide, pest resurgence, secondary pest outbreaks, residue-related problems, toxic effects on humans, in addition to higher economic costs along with reduced yields.

[0006] Furthermore, insect species such as aphids, thrips, beetles, whiteflies, and mites are known to be among the most destructive pests worldwide, sucking essential nutrients, transmitting plant pathogenic viruses / bacteria, and causing feeding damage to many annual and perennial crops. Such pests are not easily eradicated, and therefore require corrective treatments to keep them below economic damage. Some sucking pest species have developed resistance to virtually all chemical classes of insecticides introduced to control them.

[0007] Therefore, it is desirable to reduce the application rate of the insecticidal active ingredient to address the adverse environmental or toxic effects observed with higher dosage applications of the insecticidal composition, while also overcoming the problems of pest resistance development and other drawbacks associated with known chemicals. There is also a need for new insecticides with modern integrated pest management features for improved toxicological and environmental profiles, such as reduced plant toxicity, resistance management, reduced dosage, substantially expanded spectrum of efficacy, and increased safety for end users.

[0008] Acinonapyr, a newly developed cyclic amine acaricide and insecticide, is used to selectively control spider mites. Acinonapyr is effective against Tetranychus and Panonychus mites and is also used effectively to control several pest species. Acinonapyr acts on inhibitory glutamate receptors and disrupts neurotransmission.

[0009] Furthermore, the role and benefits of sulfur as an insecticide have long been known. The benefits of sulfur not only reduce reliance on chemicals as an effective method of pest control, but it is also organic in nature, environmentally friendly, increases crop yields, and improves food safety, human, animal, and plant health and quality of life. The use of sulfur as a fungicide, acaricide, and miticide is particularly important and has long been used as an environmentally friendly method of agricultural practice.

[0010] There is also a need in modern integrated pest management for improved toxicological and environmental profiles, e.g., novel insecticides with reduced environmental toxicity, reduced phytotoxicity, resistance management, reduced dosage, substantially broadened spectrum of activity, improved synergy, and increased safety for humans, to name a few.

[0011] Although acaricidal compositions containing acinonapyr are known in the art, there is no specific disclosure of a combination containing acinonapyr and elemental sulfur.

[0012] WO2011105506 relates to acinonapyr having acaricidal activity. It provides a long list of insecticidal actives, stating that the insecticidal actives that may be present in the composition are either fungicides, other insecticides / acaricides, nematicides, soil insecticides, plant regulators, etc. The application is silent about the efficacy and synergistic effects of specific combinations of elemental sulfur and acinonapyr in insecticidally effective amounts. [Prior art documents] [Patent documents]

[0013] [Patent Document 1] International Patent Application Publication No. 2011 / 105506 Brochure Summary of the Invention [Problem to be solved by the invention]

[0014] Thus, certain known or available insecticidal compositions containing elemental sulfur and acinonapyr cannot be effectively used at lower dosages with broad spectrum insecticidal activity, and the above-mentioned shortcomings are not addressed in the known compositions. [Means for solving the problem]

[0015] The present invention relates to a pesticidal composition comprising elemental sulfur present in the range of 20% to 90% w / w of the total composition, acinonapyr present in the range of 0.1% to 50% w / w of the total composition, and at least one agrochemically acceptable excipient. The pesticidal composition is in a liquid form, such as a suspension concentrate or liquid suspension, a suspoemulsion, or a ZC composition (a combination of an encapsulated suspension and a suspension concentrate), or in a solid form, such as a wettable powder, water-dispersible granules, water-disintegrating granules, and water-dispersible granules of an encapsulated suspension. Furthermore, the pesticidal composition comprises particles in the size range of 0.1 microns to 50 microns.

[0016] The invention further relates to a process for preparing an insecticidal composition comprising elemental sulfur present in the range of 20% w / w to 90% w / w of the total composition, acinonapyr present in the range of 0.1% w / w to 50% w / w of the total composition, and at least one agrochemically acceptable excipient.

[0017] The invention further relates to a method of treating a plant, crop, plant propagation material, a locus or portion thereof, a seed, a seedling, or the surrounding soil with an insecticidal composition comprising elemental sulfur, acinonapyr, and at least one agrochemically acceptable excipient. DETAILED DESCRIPTION OF THE INVENTION

[0018] The present inventors have developed a stable composition comprising an effective amount of elemental sulfur, an effective amount of acinonapyr, and at least one agrochemically acceptable excipient, which composition has surprisingly been found to be synergistic in nature and to exhibit excellent field efficacy. The inventors have found that compositions comprising elemental sulfur and acinonapyr are not only effective in controlling mites, but also act as excellent crop protection agents against other pests, are non-phytotoxic, are effective at reduced application doses, aid in resistance management observed with older insecticide chemicals, and exhibit increased yields upon field application.

[0019] Additionally, the inventors have surprisingly determined that compositions comprising effective amounts of elemental sulfur and acinonapyr provide superior pest control and improve yield when the particles in the composition are in the size range of 0.1 microns to 50 microns.

[0020] The inventors have discovered that the compositions of the present invention, in various formulations, provide an organic, ecologically efficient combination of effective amounts of elemental sulfur and acinonapyr, which helps minimize active ingredient loss and provides a stable, easy-to-use formulation. Insecticidal compositions with particle sizes ranging from 0.1 microns to 50 microns also enhance the formulation's physical properties by providing improved suspendability, dispersibility, viscosity, and immediate dispersion of the active ingredient upon application via soil or foliar routes, resulting in effective control of target pests. The compositions of the present invention also demonstrated excellent performance under accelerated storage and, surprisingly, were effective in drip irrigation.

[0021] Thus, the present inventors have developed a stable pesticidal composition comprising elemental sulfur in the range of 20% w / w to 90% w / w of the total composition, acinonapyr in the range of 0.1% w / w to 50% w / w of the total composition, and at least one agrochemically acceptable excipient, wherein the particles are present in a size range of 0.1 microns to 50 microns. The pesticidal composition is inherently synergistic, providing crop protection and nutrition at reduced dosages. The pesticidal composition of the present invention provides a superior composition that is otherwise difficult to achieve in a cost-effective manner. The solid composition of the present invention has a granule size in the range of 0.1 mm to 6 mm, which, depending on the formulation, disintegrates or disperses into particles having a size range of 0.1 microns to 50 microns.

[0022] The present invention relates to a novel pesticidal composition comprising elemental sulfur and acinonapyr. The present invention relates to a pesticidal composition comprising elemental sulfur in the range of 20% w / w to 90% w / w of the total composition, acinonapyr present in the range of 0.1% w / w to 50% w / w of the total composition, and at least one agrochemically acceptable excipient.

[0023] Furthermore, the pesticidal composition may be in the form of a wettable powder, a water-dispersible granule or extruded granule, a dusting granule or a water-disintegrating granule or a spheronized granule, a water-dispersible granule of an encapsulated suspension, a liquid suspension or a suspension concentrate, a suspoemulsion, a combination of an encapsulated suspension and a suspension concentrate, a flowable concentrate.

[0024] The invention also relates to a process for preparing an insecticidal composition comprising elemental sulfur in the range of 20% w / w to 90% w / w of the total composition, acinonapyr in the range of 0.1% w / w to 50% w / w of the total composition, and at least one agrochemically acceptable excipient.

[0025] According to another embodiment, the invention also relates to a method for protecting or improving the health or yield of a crop by treating at least one of a plant, a crop, or part thereof, plant propagation material, a seed, a seedling, or the surrounding soil with an insecticidal composition.

[0026] In describing embodiments of the invention, specific terminology is selected for clarity. However, it is not intended that the invention be limited to the specific terminology so selected, and it should be understood that such specific terminology includes all technical equivalents that operate in a similar manner and achieve a similar purpose. It is understood that any numerical range recited herein is intended to include all subranges encompassed. Also, unless otherwise specified, the percentages of components in a composition are presented as weight percent.

[0027] The terms "a" and "an" are defined herein as one or more than one. The terms "containing" and / or "having" are defined herein as including (i.e., open language).

[0028] The term "sulfur" as used in the compositions refers to elemental sulfur obtained from natural or synthetic sources. The term includes allotropes of elemental sulfur, such as rubbery (amorphous) sulfur, monoclinic sulfur, orthorhombic sulfur consisting of S8 molecules, and other ring molecules, such as S7 and S12. The term also includes sulfur produced by petrochemical processing and refining. The term also includes "biosulfur." ​​The term also includes elemental sulfur produced by microbial processes.

[0029] Water-dispersible granules are defined as formulations that disperse or dissolve rapidly when added to water, providing a fine particle suspension. In this specification, "WG" or "WDG" refers to water-dispersible granules. Water-dispersible granules are formulated as small, easily measured granules (agglomerates of fine particles) by blending and agglomerating milled solid active ingredients together with surfactants and other formulation ingredients, which disperse into finer / primary particles when immersed in water.

[0030] According to the present invention, the term liquid suspension encompasses "aqueous suspension" or "aqueous dispersion" or "suspension concentrate (SC)" or "suspoemulsion (SE)" compositions. A liquid suspension can be defined as a composition in which solid particles are dispersed or suspended in a liquid. The liquid vehicle can be water and / or a water-miscible solvent.

[0031] As defined herein, an aqueous suspoemulsion is essentially a mixture of water-insoluble active ingredients dispersed in a water-based solution, where one (or more) of the active ingredients is a solid and is formulated as a suspension form (SC) and one (or more) of the actives is an oil and is formulated as an emulsion in water (EW).

[0032] As defined herein, WP refers to a wettable powder, which can be a powder formulation that is applied as a suspension after dispersion in water.

[0033] As defined herein, GR or water-disintegrating granules refers to a granular composition that includes agglomerated granules or particles that disintegrate or break down into individual particles.

[0034] As defined herein, a ZC formulation is a combination of an encapsulated suspension and a suspension concentrate, such that the formulation comprises a stable aqueous suspension of microcapsules and a suspension of solid fine particles (in an aqueous phase), each of which contains at least one active ingredient.

[0035] As defined herein, CS or encapsulated suspension refers to a formulation that is a combination of an active ingredient encapsulated within a polymeric shell suspended in water with one or more surfactants, the suspension may contain additional actives. Water-dispersible granules of encapsulated suspension refer to a granular composition obtained by spray drying the encapsulated suspension composition.

[0036] As defined herein, OD refers to an oil dispersion or oil suspension in which the solid active ingredient is dispersed in oil, which can range from paraffinic to aromatic solvent-type and vegetable or methylated seed oils.

[0037] The present invention relates to a pesticidal composition comprising elemental sulfur, acinonapyr, and at least one agrochemically acceptable excipient.

[0038] The present invention relates to a pesticidal composition comprising elemental sulfur in the range of 20% w / w to 90% w / w of the total composition, acinonapyr present in the range of 0.1% w / w to 50% w / w of the total composition, and at least one pesticidal excipient.

[0039] The present invention relates to a pesticidal composition comprising elemental sulfur in the range of 20% w / w to 90% w / w of the total composition, acinonapyr present in the range of 0.1% w / w to 50% w / w of the total composition, and at least one pesticidal excipient present in the range of 0.1% w / w to 80% w / w of the total composition.

[0040] According to one embodiment, elemental sulfur is present in the range of 20% w / w to 90% w / w of the total composition. According to one embodiment, elemental sulfur is present in the range of 20% w / w to 80% w / w of the total composition. According to one embodiment, elemental sulfur is present in the range of 20% w / w to 70% w / w of the total composition. According to one embodiment, elemental sulfur is present in the range of 20% w / w to 60% w / w of the total composition. According to one embodiment, elemental sulfur is present in the range of 20% w / w to 40% w / w of the total composition.

[0041] According to one embodiment, acinonapir is present in the range of 0.1% to 50% w / w of the total composition. According to one embodiment, acinonapir is present in the range of 0.1% to 40% w / w of the total composition. According to one embodiment, acinonapir is present in the range of 0.1% to 30% w / w of the total composition. According to one embodiment, acinonapir is present in the range of 0.1% to 20% w / w of the total composition. According to one embodiment, acinonapir is present in the range of 0.1% to 15% w / w of the total composition.

[0042] According to one embodiment, acinonapir is present in the range of 0.1% to 10 w / w of the total composition.

[0043] According to one embodiment, the pesticidal composition is in the form of a solid, liquid or gel or paste.

[0044] According to one embodiment, the liquid pesticidal composition may be in the form of a suspension, oil dispersion, liquid suspension, flowable concentrate, seed dressing, suspoemulsion, encapsulated suspension and suspension concentrate combination (ZC).

[0045] According to one embodiment, the liquid pesticide composition is preferably in the form of a liquid suspension or suspension concentrate, a suspoemulsion, and a ZC combination, which is a combination of an encapsulated suspension and suspension concentrate.

[0046] According to one embodiment, the liquid pesticidal composition is preferably in the form of a liquid suspension or suspension concentrate. According to one embodiment, the liquid suspension or suspension concentrate comprises elemental sulfur in the range of 20% w / w to 70% w / w of the total composition and acinonapyr in the range of 0.1% w / w to 30% w / w of the total composition.

[0047] According to one embodiment, the liquid pesticide composition is preferably in the form of a suspoemulsion. According to one embodiment, the suspoemulsion composition comprises elemental sulfur in the range of 20% w / w to 70% w / w of the total composition and acinonapyr in the range of 0.1% w / w to 25% w / w of the total composition.

[0048] According to one embodiment, the liquid pesticide composition is preferably in the form of a ZC composition (a combination of an encapsulated suspension and a suspension concentrate).

[0049] According to one embodiment, the ZC composition comprises elemental sulfur in the range of 20% w / w to 70% w / w of the total composition and acinonapyr in the range of 1% w / w to 25% w / w of the total composition.

[0050] According to one embodiment, the pesticidal composition is in the form of a powder, including wettable powders, dusts, and dispersible powders. According to one embodiment, the pesticidal composition is in the form of a dusting granule, a pellet, an extruded granule, a water-dispersible granule, a water-disintegrable granule, a dry encapsulated suspension, or a granule, including a dry ZC composition (a combination of an encapsulated suspension and a suspension concentrate).

[0051] According to one embodiment, the pesticidal composition is preferably in the form of a wettable powder, water-dispersible granules and water-disintegrable granules.

[0052] According to one embodiment, the wettable powder composition comprises elemental sulfur in the range of 20% w / w to 90% w / w of the total composition and acinonapyr in the range of 0.1% w / w to 50% w / w of the total composition.

[0053] According to one embodiment, the pesticidal composition is preferably in the form of water-dispersible granules.

[0054] According to one embodiment, the water-dispersible granular composition comprises elemental sulfur in the range of 20% w / w to 90% w / w of the total composition and acinonapyr in the range of 0.1% w / w to 40% w / w of the total composition.

[0055] According to one embodiment, the pesticidal composition is preferably in the form of water-dispersible granules of an encapsulated suspension.

[0056] According to one embodiment, the water-dispersible granules of the encapsulated suspension comprise elemental sulfur in the range of 20% w / w to 80% w / w of the total composition and acinonapyr in the range of 0.1% w / w to 30% w / w of the total composition.

[0057] According to one embodiment, the insecticidal composition comprises granules in the size range of 0.1 mm to 6 mm. According to one embodiment, the insecticidal composition comprises granules in the size range of 0.1 to 5 mm. According to one embodiment, the insecticidal composition comprises granules in the size range of 0.1 to 4 mm. According to one embodiment, the insecticidal composition comprises granules in the size range of 0.1 to 3 mm. According to one embodiment, the insecticidal composition comprises granules in the size range of 0.1 to 2 mm. According to one embodiment, the insecticidal composition has a granule size in the range of 0.1 to 1.5 mm.

[0058] According to one embodiment, the insecticidal composition is in the form of water-disintegrable granules, spheronized granules, or extruded granules, wherein the granules range in size from 0.1 mm to 6 mm. According to one embodiment, the granules range in size from 0.1 mm to 5 mm. According to one embodiment, the granules range in size from 0.1 mm to 4 mm. According to one embodiment, the granules range in size from 0.1 mm to 3.5 mm.

[0059] According to one embodiment, the insecticidal composition is in the form of water-dispersible granules or water-dispersible granules of an encapsulated suspension, the granules ranging in size from 0.1 mm to 3 mm. According to one embodiment, the insecticidal composition is in the form of water-dispersible granules, the granules ranging in size from 0.1 mm to 2.5 mm. According to one embodiment, the insecticidal composition is in the form of water-dispersible granules, the granules ranging in size from 0.1 mm to 2.0 mm. According to one embodiment, the insecticidal composition is in the form of water-dispersible granules, the granules ranging in size from 0.1 mm to 1.5 mm.

[0060] According to one embodiment, the particle size of the insecticidal composition ranges from 0.1 microns to 50 microns. According to a further embodiment, the particle size of the insecticidal composition ranges from 0.1 microns to 40 microns. According to a further embodiment, the particle size of the insecticidal composition ranges from 0.1 microns to 30 microns. According to a further embodiment, the particle size of the insecticidal composition ranges from 0.1 microns to 20 microns. According to a further embodiment, the particle size of the insecticidal composition ranges from 0.1 microns to 15 microns. According to a further embodiment, the particle size of the insecticidal composition ranges from 0.1 microns to 10 microns. It has been found that the particle size range of 0.1 to 50 microns of the insecticidal composition is important not only from the standpoint of ease of application but also from the standpoint of efficacy. Upon contact with water, the compositions of the present invention disperse or disintegrate into particles in the size range of 0.1 microns to 50 microns, depending on the formulation of the composition.

[0061] According to one embodiment, the pesticidal composition in the form of a wettable powder, water-disintegrable granules or dusting or spheronized or extruded granules comprises particles in the size range of 0.1 microns to 50 microns.

[0062] According to one embodiment, the pesticidal composition in the form of water-dispersible granules, water-dispersible granules of an encapsulated suspension, liquid suspension or suspension concentrate, suspoemulsion, or ZC composition comprises particles in the size range of 0.1 microns to 30 microns. According to one embodiment, the pesticidal composition in the form of water-dispersible granules, water-dispersible granules of an encapsulated suspension, liquid suspension or suspension concentrate, suspoemulsion, or ZC composition comprises particles in the size range of 0.1 microns to 20 microns. According to one embodiment, the pesticidal composition in the form of water-dispersible granules, water-dispersible granules of an encapsulated suspension, liquid suspension or suspension concentrate, suspoemulsion, or ZC composition comprises particles in the size range of 0.1 microns to 10 microns.

[0063] According to one embodiment, the pesticidal composition comprises at least one agrochemically acceptable excipient. According to further embodiments, the agrochemically acceptable excipient comprises at least one of the following: surfactants, binders or binding agents, wetting agents, emulsifiers, disintegrants, fillers or carriers or diluents, coating agents, buffers or pH adjusters or neutralizing agents, antifoaming or defoaming agents, penetrating agents, ultraviolet absorbers, ultraviolet scattering agents, stabilizers, pigments or colorants, structuring agents, chelating or complexing agents or sesquitering agents, thickening agents, suspending agents or suspending aids or anti-caking or anti-settling agents, viscosity adjusters or rheology modifiers, adhesives, water retention agents, sticking agents, anti-freezing agents or freezing point depressants, solvents including water-immiscible or water-miscible solvents, polymers, monomers, crosslinkers, permeation enhancers, protective colloids, and mixtures thereof. However, one of ordinary skill in the art will recognize that additional agronomically acceptable excipients may be utilized without departing from the scope of the present invention.

[0064] According to one embodiment, the pesticidal composition in the form of water-dispersible or spheronized granules or extruded granules or wettable powders or water-disintegrable granules further comprises at least one agrochemical excipient, including: disintegrants, surfactants, binders or fillers or carriers or diluents, antifoaming agents, anti-caking or anti-settling agents or suspending aids or suspending agents, penetrating agents, adhesives, sticking agents, pigments, colorants, stabilizers. However, one skilled in the art will recognize that additional agrochemically acceptable excipients can be utilized without departing from the scope of the present invention.

[0065] According to one embodiment, the pesticidal composition in the form of a water-dispersible granule or wettable powder composition contains at least one pesticidal excipient, including: dispersants, surfactants, wetting agents, binders or fillers or carriers or diluents, antifoaming agents, ultraviolet absorbers, ultraviolet scattering agents, anti-caking or anti-settling agents or suspending aids or suspending agents, adhesives, pigments, colorants, and stabilizers. However, one skilled in the art will recognize that additional agrochemically acceptable excipients can be utilized without departing from the scope of the present invention.

[0066] According to one embodiment, the liquid pesticide composition in the form of a suspension concentrate or liquid suspension or suspoemulsion composition contains at least one pesticide excipient, including: a dispersing agent, a structuring agent, a surfactant, a humectant, a solvent, a suspending agent or suspending aid or anti-caking or anti-settling agent, a penetrating agent, a sticking agent, an ultraviolet absorber, an ultraviolet scattering agent, a buffer or pH adjuster or neutralizing agent, a stabilizer, an emulsifier, a biocide, an anti-freeze or freezing point depressant, and an anti-foaming agent. However, one skilled in the art will recognize that additional agrochemically acceptable excipients can be utilized without departing from the scope of the present invention.

[0067] According to one embodiment, the ZC composition comprises at least one agrochemical excipient, including at least one dispersant, structurant, surfactant, wetting agent, humectant, solvent, suspending agent or suspending aid or anti-caking or anti-settling agent, penetrating agent, adhesive, UV absorber, UV scattering agent, buffer or pH adjuster or neutralizing agent, stabilizer, emulsifier, biocide, antifreeze or freezing point depressant, antifoaming agent, monomers such as isocyanates and diamines or glycols, crosslinking agent, polymer, protective colloid, and permeation enhancer. However, one skilled in the art will recognize that additional agrochemically acceptable excipients can be utilized without departing from the scope of the present invention.

[0068] According to one embodiment, the water-dispersible granules of the encapsulated suspension contain at least one agrochemical excipient, including: dispersants, surfactants, wetting agents, suspending agents or suspension aids or anti-caking or anti-settling agents, penetrating agents, adhesives, ultraviolet absorbers, ultraviolet scattering agents, buffers or pH adjusters or neutralizing agents, stabilizers, emulsifiers, anti-foaming agents, monomers, polymers, crosslinkers, permeation enhancers, protective colloids, and stabilizers. However, one of ordinary skill in the art will recognize that additional agrochemically acceptable excipients may be utilized without departing from the scope of the present invention.

[0069] According to one embodiment, the agrochemically acceptable excipient is present in the range of 0.1% w / w to 80% w / w of the total composition. According to one embodiment, the agrochemically acceptable excipient is present in the range of 0.1% w / w to 70% w / w of the total composition. According to one embodiment, the agrochemically acceptable excipient is present in the range of 0.1% w / w to 60% w / w of the total composition. According to one embodiment, the agrochemically acceptable excipient is present in the range of 0.1% w / w to 50% w / w of the total composition. According to one embodiment, the agrochemically acceptable excipient is present in the range of 0.1% w / w to 40% w / w of the total composition. According to one embodiment, the agrochemically acceptable excipient is present in the range of 0.1% w / w to 30% w / w of the total composition.

[0070] According to one embodiment, the surfactant used in the pesticidal composition comprises one or more of anionic, cationic, nonionic, amphoteric and polymeric surfactants. According to one embodiment, the surfactant comprises one or more of emulsifiers, wetting agents and dispersing agents.

[0071] Anionic surfactants include, but are not limited to, one or more of the following: salts of fatty acids, benzoates, polycarboxylates, salts of alkyl sulfates, alkyl ether sulfates, alkyl sulfates, alkylaryl sulfates, alkyl diglycol ether sulfates, salts of alcohol sulfates, alkyl sulfonates, alkylaryl sulfonates, lignin sulfonates, alkyl diphenyl ether disulfonates, polystyrene sulfonates, salts of alkyl phosphates, alkylaryl phosphates, styrylaryl hydroxyl phosphates or derivatives thereof, styrylaryl phosphates, docusates, salts of polyoxyethylene alkyl ether sulfates, polyoxyethylene alkylaryl ether sulfates, alkyl sarcosinates, sodium alpha olefin sulfonate, alkylbenzene sulfonates or salts thereof, sodium lauroyl sarcosinate, sulfosuccinates, polyacrylates, salts of polyacrylates, salts of polyoxyethylene alkylaryl ether sulfates, polyoxyethylene alkyl ether phosphates, Salts of polyoxyethylene alkylaryl phosphate esters, sulfosuccinate mono- and other diesters, phosphate esters, alkylnaphthalenesulfonates, e.g. isopropyl and butyl derivatives, alkyl ether sulfates - sodium and ammonium salts, alkylaryl ether phosphates, salts of polyoxyethylene aryl ether phosphate esters, monoalkylsulfosuccinates, aromatic hydrocarbon sulfonates, 2-acrylamido-2-methylpropanesulfonic acid, ammonium lauryl sulfate, ammonium perfluorononanoate, disodium cocoamphodiacetate, magnesium laureth sulfate, perfluorobutanesulfonic acid, perfluorononanoic acid, carboxylates, perfluorooctane sulfonic acid, perfluorooctanoic acid, phospholipids, potassium lauryl sulfate, soap, soap substitutes, sodium alkyl sulfates, sodium dodecyl sulfate, sodium dodecylbenzenesulfonate, sodium laurate, sodium laureth sulfate, sodium lauroylsarcosinate, sodium myreth sulfate, sodium nonanoyloxybenzenesulfonate, sodium pareth sulfate,Alkyl carboxylates, sodium stearate, alpha olefin sulfonates, naphthalene sulfonates, alkyl naphthalene sulfonate fatty acid salts, naphthalene sulfonic acid condensates - sodium salts, fluorocarboxylates, fatty alcohol sulfates, alkyl naphthalene sulfonic acid condensates - sodium salts, salts of naphthalene sulfonic acid condensed with formaldehyde or salts of alkyl naphthalene sulfonic acid condensed with formaldehyde, or salts and derivatives thereof.

[0072] Nonionic surfactants include one or more of the following, but are not limited to: polyol esters, polyol fatty acid esters, polyethoxylated esters, polyethoxylated alcohols, ethoxylated and propoxylated fatty alcohols, ethoxylated and propoxylated alcohols, EO / PO copolymers, EO and PO block copolymers, di-, tri-block copolymers, block copolymers of polyethylene glycol and polypropylene glycol, poloxamers, polysorbates, alkyl polysaccharides such as alkyl polyglycosides and blends thereof, amine ethoxylates, sorbitan fatty acid esters, glycol and glycerol esters, glucosidyl alkyl ethers, polyoxyethylene glycols, sorbitan alkyl esters, sorbitan derivatives, fatty acid esters of sorbitan (Span) and their ethoxylated derivatives (Tween), and sucrose esters of fatty acids, cetostearyl alcohol, cetyl alcohol, decyl glucoside, decyl polyglucose, glycerol monostearate, lauryl ethers, lauric acid, glycerol monostearate ... Glycoside, Maltoside, Monolaurin, Narrow Diethoxylate, Nonidet P-40, Nonoxynol-9, Nonoxynol, Octaethylene Glycol Monododecyl Ether, N-Octyl β-D-Thioglucopyranoside, Octyl Glucoside, Oleyl Alcohol, PEG-10 Sunflower Glycerides, Pentaethylene Glycol Monododecyl Ether, Polidocanol, Poloxamer, Poloxamer 407, Polyethoxylated Tallowamine, Polyglycerol Polyricinoleate, Polysorbate, Polysorbate 20, Polysorbate 80, sorbitan derivatives, sorbitan monolaurate, sorbitan monostearate, sorbitan tristearate, stearyl alcohol, glyceryl laureate, lauryl glucoside, nonylphenol polyethoxyethanol, nonylphenol polyglycol ether, castor oil ethoxylate, polyglycol ether, polyadducts of ethylene oxide and propylene oxide, block copolymers of polyalkylene glycol ether and hydroxystearic acid, tributylphenoxypolyethoxyethanol,Octylphenoxypolyethoxyethanol, eth-propoxylated tristyrylphenol, ethoxylated alcohols, polyoxyethylene sorbitan, fatty acid polyglycerides, fatty acid alcohol polyglycol ethers, oxyalkylene block polymers, polyoxyethylene alkyl ethers, polyoxyethylene alkylaryl ethers, polyoxyethylene styrylaryl ethers, polyoxyethylene glycol alkyl ethers, polyethylene glycols, polyoxyethylene fatty acid esters, polyoxyethylene sorbitan fatty acid esters, polyoxyethylene glycerin fatty acid esters, alcohol ethoxylates - C6 to C16 / 18 alcohols, linear and branched, alcohol alkoxylates -Various hydrophobes and EO / PO contents and ratios, fatty acid esters - mono and diesters, lauric, stearic and oleic, glycerol esters - with and without EO, lauric, stearic, cocoa and tall oil derived, ethoxylated glycerin, sorbitan esters - with and without EO, lauric, stearic and oleic based, mono and triesters, castor oil ethoxylates - 5 to 200 moles EO, non-hydrogenated and hydrogenated, block polymers, amine oxides - ethoxylated and non-ethoxylated, alkyl dimethyl, fatty amine ethoxylates - coco, tallow, stearyl, oleylamine, polyoxyethylene hydrogenated castor oil or polyoxypropylene fatty acid esters, their salts or derivatives.

[0073] Amphoteric or zwitterionic surfactants include one or more of the following, but are not limited to one or more of the following: betaine, coco and lauryl amidopropyl betaine, coco alkyl dimethyl amine oxide, alkyl dimethyl betaine, C8-C18, alkyl dipropionate-sodium lauriminodipropionate, cocoamidopropyl hydroxysulfobetaine, imidazoline, phospholipids phosphatidylserine, phosphatidylethanolamine, phosphatidylcholine, and sphingomyelin, lauryl dimethylamine oxide, alkyl amphoacetates and proprionates, alkyl ampho(di)acetates and diproprionates, lecithin and ethanolamine fatty amides or salts, derivatives thereof.

[0074] Surfactants commercially available under trademarks include, but are not limited to, one or more of the following: Atlas G5000, TERMUL 5429, TERMUL 2510, ECOTERIC®, EULSOGEN® 118, Genapol® X, Genapol® OX-080, Genapol® C100, Emulsogen® EL200, Arlacel P135, Ha Hypermer 8261, Hypermer B239, Hypermer B261, Hypermer B246sf, Solutol HS15, Promulgen™ D, Soprophor 7961P, Soprophor TSP / 461, Soprophor TSP / 724, Croduret 40, Etocas 200, Etocas 2 9, Rokacet R26, Cetomacrogol 1000, Chemonic OE-20, Triton N-101, Triton X-100, Tween 20, 40, 60, 65, 80, Span 20, 40, 60, 80, 83, 85, 120, Brij (registered trademark), Atlox 4912, Atlas G5000, Termul 3512, Termul 3015, Termul 5429, Te TERMUL 2510, ECOTERIC (registered trademark), ECOTERIC (registered trademark) T85, ECOTERIC (registered trademark) T20, TERIC 12A4, EULSOGEN (registered trademark) 118, GENAPOL (registered trademark) X, GENAPOL (registered trademark) OX-080, GENAPOL (registered trademark) C100, EMULSOGEN (registered trademark) EL200, ARACEL P135, Hypermer 8261, Hypermer B239,Hypermer B261, Hypermer B246sf, Solutol HS15, Promulgen™ D, Soprophor 7961P, Soprophor TSP / 461, Soprophor TSP / 724, Croduret 40, Etocas 200, Etocas 29, Rokacet R26, CHEMONIC OE-20, Triton™ N-101, IGEPAL CA-630, and Isoceteth-20.

[0075] However, one skilled in the art will recognize that other conventionally known surfactants may be utilized without departing from the scope of the present invention. Surfactants are commercially produced and available through a variety of companies.

[0076] According to one embodiment, the surfactant is present in an amount of 0.1% to 60% w / w of the total composition. According to one embodiment, the surfactant is present in an amount of 0.1% to 40% w / w of the total composition. According to one embodiment, the surfactant is present in an amount of 0.1% to 30% w / w of the total composition. According to a further embodiment, the surfactant is present in an amount of 0.1% to 20% w / w of the total composition. According to one embodiment, the surfactant is present in an amount of 0.1% to 10% w / w of the total composition.

[0077] According to one embodiment, the dispersant used in the pesticidal composition includes one or more of, but is not limited to, polyvinyl alcohol, phenol naphthalene sulfonate, lignin sulfonate, lignin derivatives, dibutyl naphthalene sulfonate, alkyl aryl sulfonate, alkyl sulfate, alkyl sulfonate, fatty alcohol sulfate, fatty acid and sulfated fatty alcohol glycol ether, polyoxyethylene alkyl ether, dioctyl sulfosuccinate, lauryl sulfate, polyoxyethylene styryl phenyl ether sulfate salts and the like, including alkali metal, ammonium or amine salts thereof, polyoxyethylene styryl phenyl ether, polyoxyethylene sorbitan alkyl ester, and the like, a mixture of sodium salts of naphthalene sulfonate urea formaldehyde condensate and sodium salts of phenol sulfonate formaldehyde condensate ethoxylated alkylphenol, ethoxylated fatty acid, alkoxylated linear alcohol, polyaromatic sulfonate, sodium alkyl aryl sulfonate, glycol ether, ethoxylated fatty acid, alkoxylated linear alcohol, polyaromatic sulfonate, sodium alkyl aryl sulfonate, glycol ether, polyoxyethylene alkyl ether, dioctyl sulfosuccinate, lauryl sulfate, polyoxyethylene styryl phenyl ether sulfate salts and the like, including alkali metal, ammonium or amine salts thereof, polyoxyethylene styryl phenyl ether, polyoxyethylene sorbitan alkyl ester, and the like, a mixture of sodium salts of naphthalene sulfonate urea formaldehyde condensate and sodium salts of phenol sulfonate formaldehyde condensate ethoxylated alkylphenol, ethoxylated fatty acid, alkoxylated linear alcohol, polyaromatic sulfonate, sodium alkyl aryl sulfonate, glycol ether, polyoxyethylene alkyl ether, dioctyl sulfosuccinate, polyoxyethylene styryl phenyl ether sulfate salts and the like, Lyceryl esters, ammonium salts of maleic anhydride copolymers, phosphate esters, salts of addition products of ethylene oxide and fatty acid esters, polycarboxylates, sodium salts of condensed phenolsulfonic acid and naphthalenesulfonic acid-formaldehyde condensates, sodium naphthalenesulfonic acid-formaldehyde condensates, ammonium salts of sulfonated naphthalenes, salts of polyacrylic acids, tristyrylphenol ethoxylate phosphate esters, fatty alcohol ethoxylates, alkyl ethoxylates, EO-PO block copolymers, graft copolymers, ammonium salts of sulfonated naphthalenes, salts of polyacrylic acids, their salts and derivatives, polymethyl methacrylate / acrylic graft copolymers and derivatives thereof, nonyl-phenol ethoxylate and derivatives thereof, castor oil-based ethoxylates, sorbitan ester ethoxylates, lanolin alcohol ethoxylates, polyol ethoxylates, phosphate esters and derivatives thereof, stearic fatty acids and derivatives thereof, oleic fatty acids, vegetable fatty acids, tallow fatty acid ethoxylates.

[0078] Commercially available dispersants include: "Morwet D425" (sodium naphthalene formaldehyde condensate, from Nouryon Corporation, USA); "Morwet EFW" sulfated alkyl carboxylate and alkyl naphthalene sulfonate - sodium salt; "Tamol PP" (sodium salt of phenolsulfonic acid condensate); "Reax 80N" (sodium lignosulfonate); and "Wettol D1" sodium alkyl naphthalene sulfonate (from BASF). However, those skilled in the art will recognize that other conventionally known dispersants can be utilized without departing from the scope of the present invention. Dispersants are commercially manufactured and available through various companies.

[0079] According to one embodiment, the dispersing agent is present in an amount of 0.1-60% w / w of the total composition. According to one embodiment, the dispersing agent is present in an amount of 0.1-30% w / w of the total composition. According to one embodiment, the dispersing agent is present in an amount of 3-20% w / w of the total composition.

[0080] According to one embodiment, the wetting agent used in the insecticidal composition may include, but is not limited to, one or more of the following: phenol naphthalene sulfonate, alkyl naphthalene sulfonate and its salts, sodium alkyl naphthalene sulfonate, sodium salts of sulfonated alkyl carboxylic acids, polyoxyalkylated ethyl phenols, polyoxyethoxylated fatty alcohols, polyoxyethoxylated fatty amines, lignin derivatives, alkanesulfonates or their salts, alkyl benzene sulfonates, salts of polycarboxylic acids, salts of sulfosuccinic acid esters, alkyl polyglycol ether sulfonates, alkyl ether phosphates, alkyl ether sulfates and alkyl sulfosuccinic acid monoesters, alkyl polyglucosides, alkyl polysaccharides, or their salts or derivatives. However, those skilled in the art will recognize that other conventionally known wetting agents can be utilized without departing from the scope of the present invention. Wetting agents are commercially available and are available from various companies.

[0081] According to one embodiment, the humectant is present in an amount of 0.1%-60% w / w of the total composition. According to one embodiment, the humectant is present in an amount of 0.1%-40% w / w of the total composition. According to one embodiment, the humectant is present in an amount of 0.1%-30% w / w of the total composition.

[0082] According to one embodiment, the emulsifier used in the insecticidal composition may include, but is not limited to, one or more of the following: alkylated benzenesulfonates, ethoxylated or alkoxylated tristyrylphenols, alkoxylated copolymers, fatty alcohol ethoxylates, fatty acid derivatives, sorbitol derivatives, castor oil ethoxylates and derivatives, ethoxylated phenols, ethoxylated alkylphenols, nonylphenol alkoxylates, alcohol alkoxylates, sulfosuccinates, alkyl ether phosphates, alkoxylated fatty alcohol phosphates (e.g., PEG 10 PPG 5 cetyl phosphate), polyvinyl alcohol, polyvinylpyrrolidone, lignin sulfonates, polyacrylates, polysorbates, polycarboxylates, alcohol ethoxylates, salts of alkylarylsulfonic acids, and derivatives thereof. However, those skilled in the art will recognize that other conventionally known wetting agents can be utilized without departing from the scope of the present invention. Emulsifiers are commercially available and are available from various companies.

[0083] Emulsifiers used in the pesticidal composition include, but are not limited to, one or more of the following: Atlas G5000, Termul 5429, Termul 2510, ECOTERIC®, Emulsogen® 118, Genapol® X, Genapol® OX-080, Genapol® C100, Emulsogen® EL200, Arlacel P135, Hypermer 8261, Hypermer B239, Hypermer B261, Hypermer B246sf, Solutol lutol HS15, Promulgen™ D, Soprophor 7961P, Soprophor TSP / 461, Soprophor TSP / 724, Croduret 40, Etocas 200, Etocas 29, Rokacet R26, CHEMONIC OE-20, Triton™ N-101, Tween 20, 40, 60, 65, 80, Span 20, 40, 60, 80, 83, 85, 120, Brij®, Triton™ Atlox 4912.Atlas G5000, TERMUL 3512, TERMUL 3015, TERMUL 5429, TERMUL 2510, ECOTERIC (registered trademark), ECOTERIC (registered trademark) T85, ECOTERIC (registered trademark) T20, TERIC 12A4, EULSOGEN® 118, Genapol® X, Genapol® OX-080, Genapol® C100, Emulsogen® EL200, Arlacel P135, Hypermer 8261, Hypermer B239, Hypermer B261, Hypermer B246sf, Solutol HS15, Promulgen® D , Soprophor 7961P, Soprophor TSP / 461, Soprophor TSP / 724, Croduret 40, Etocas 200, Etocas 29, Rokacet R26, Chemonic OE-20, Triton™ N-101, Tween 20, 40, 60, 65, 80, and Span 20, 40, 60, 80, 83, 85, 120 may also be used. However, those skilled in the art will recognize that other conventionally known emulsifiers may be utilized without departing from the scope of the present invention. Emulsifiers are commercially manufactured and available through various companies.

[0084] According to one embodiment, the emulsifier is present in an amount of 0.1%-60% w / w of the total composition. According to one embodiment, the emulsifier is present in an amount of 0.1%-50% w / w of the total composition. According to one embodiment, the emulsifier is present in an amount of 0.1%-30% w / w of the total composition.

[0085] According to one embodiment, the solvent used in the pesticidal composition includes a water-miscible or water-immiscible solvent.

[0086] Water-miscible solvents include, but are not limited to, ethylene glycol, glycerol, N-methyl-2-pyrrolidone, 1,3-propanediol, 1,5-pentanediol, propylene glycol, triethylene glycol, 1,2-butanediol, 1,3-butanediol, 1,4-butanediol, dimethylformamide, decainamide, dimethoxyethane, dimethyloctaneamide, dimethyldecaneamide, water, propylene glycol, monoethylene glycol, polyethylene glycol ethers and derivatives thereof, glycerol, sorbitol, dimethyloctaneamide, dimethyldecaneamide, dimethyloctadecanamide, monobutyl ether, glycols and glycol ethers in general, alkylene carbonates, n-methylpyrrolidone, dimethylformamide, acetophenone, cyclohexanone, and dimethyl sulfoxide. However, those skilled in the art will recognize that other water-miscible solvents can be utilized without departing from the scope of the present invention.

[0087] According to one embodiment, the solvent is present in an amount of 0.1-80% w / w of the total composition. According to one embodiment, the solvent is present in an amount of 0.1-60% w / w of the total composition. According to one embodiment, the solvent is present in an amount of 0.1-40% w / w of the total composition. According to one embodiment, the solvent is present in an amount of 0.1-30% w / w of the total composition.

[0088] According to one embodiment, disintegrants used in the pesticidal composition include, but are not limited to, one or more of the following: inorganic water-soluble salts of sodium, potassium, magnesium, ammonium, nitrate, acetate, such as sodium chloride, potassium chloride, potassium nitrate, water-insoluble organic compounds, such as microcrystalline cellulose, cross-linked sodium carboxymethylcellulose, carboxymethyl calcium, cellulose powder, sodium tripolyphosphate, sodium hexametaphosphate, metal stearates, dextrin, methacrylate copolymers, Polyplasdone® XL-10 (cross-linked polyvinylpyrrolidone), polyaminocarboxylic acids, sulfonated styrene-isobutylene-maleic anhydride copolymers, salts of polyacrylates or methacrylates, starch. Polyacrylonitrile graft copolymers, sodium or potassium bicarbonate / carbonate or mixtures thereof, or salts with acids such as citric acid and fumaric acid, or salts thereof, phenol naphthalene sulfonates, alkyl naphthalene sulfonates, sodium alkyl naphthalene sulfonates, sodium salts of sulfonated alkyl carboxylic acids, polyoxyalkylated ethyl phenols, polyoxyethoxylated fatty alcohols, polyoxyethoxylated fatty amines, lignin derivatives, alkanesulfonates, alkyl benzene sulfonates, salts of polycarboxylic acids, salts of sulfosuccinic acid esters, alkyl polyglycol ether sulfonates, alkyl ether phosphates, alkyl ether sulfates and alkyl sulfosuccinic acid monoesters, lignosulfonates, salts and derivatives thereof. However, those skilled in the art will recognize that different disintegrants can be used without departing from the scope of the present invention. Disintegrants are commercially produced and available from various companies.

[0089] According to one embodiment, the disintegrant is present in an amount of 0.1% to 50% w / w of the composition. According to one embodiment, the disintegrant is present in an amount of 0.1% to 30% w / w of the composition. According to one embodiment, the disintegrant is present in an amount of 0.1% to 20% w / w of the composition. According to one embodiment, the disintegrant is present in an amount of 0.1% to 10% w / w of the composition.

[0090] According to one embodiment, the binding agent or binder used in the insecticidal composition includes, but is not limited to, one or more of the following: polyvinyl alcohol, lactose, polyvinylyrrolidone, water-soluble cellulose derivatives such as carboxymethylcellulose, methylcellulose, starch, dextrin, lignin sulfonate, and bentonite, carbohydrates such as monosaccharides, disaccharides, oligosaccharides, and polysaccharides, clay, kaolin, attapulgite, xanthan gum, guar gum, carrageenan, polyacrylates, polycarboxylates, carbomers, derivatives, and combinations thereof. However, one skilled in the art will recognize that different binding agents can be utilized without departing from the scope of the present invention. Binders are commercially produced and available through various companies.

[0091] According to one embodiment, the binder is present in an amount of 0.1% to 50% w / w of the composition. According to a further embodiment, the binder is present in an amount of 0.1% to 30% w / w of the composition. According to a further embodiment, the binder is present in an amount of 0.1% to 20% w / w of the composition. According to a further embodiment, the binder is present in an amount of 0.1% to 10% w / w of the composition.

[0092] According to one embodiment, the carrier used in the pesticide composition may include, but is not limited to, one or more of a solid carrier, a filler, or a diluent. According to another embodiment, the carrier may include a mineral carrier, a plant carrier, a synthetic carrier, or a water-soluble carrier. However, those skilled in the art will recognize that different carriers can be used without departing from the scope of the present invention. Carriers are commercially produced and available through various companies.

[0093] Solid carriers include natural minerals such as clays, e.g., bentonite, china clay, acid clay, dolomite, kaolins, e.g., kaolinite, dickite, nacrite, and halloysite, synthetic and diatomaceous silicas, montmorillonite minerals, e.g., sodium montmorillonite, smectites, e.g., saponite, hectorite, sauconite, and hyderite, micas, e.g., pyrophyllite, talc, pyrophyllite, muscovite, phengite, sericite, and illite, silicas, e.g., cristobalite, attapulgite, Slite, sepiolite, vermiculite, laponite, pumice, perlite, volclay, vermiculite, limestone, natural and synthetic silicates, charcoal, silica, powdered silica, fused quartz, hydrophobic silica, wet process silica, dry process silica, calcined products of wet process silica, surface modified silica, mica, zeolites, diatomaceous earth, their derivatives, fly ash, chalk (Omya®), fuller's earth, loess, Glauber's salt, white carbon, hydrated lime, synthetic silicic acid, starch, modified starch (Pineflow, available from Matsutani Chemical industry co, Ltd), sucrose, potassium pyrophosphate, sodium tripolyphosphate, kaolin 1777, lactose, maltodextrin, dextrin, sorbitol, salts of lignosulfonic acid such as ammonium, sodium, calcium, zinc. Water-insoluble carriers include, but are not limited to, clay, microcrystalline cellulose, perlite, volcanic ash, mica, calcium or magnesium carbonate, diatomaceous earth, soapstone, starch, hydrophobically or hydrophilically modified starch, and calcium phosphate. Water-soluble salts include, for example, citrates, nitrates, sulfates, hexametaphosphates, phosphates, and ammonium salts, such as sulfates, phosphates, and magnesium sulfate. However, those skilled in the art will recognize that different solid carriers can be used without departing from the scope of the present invention. Solid carriers are commercially produced and available through various companies.

[0094] According to one embodiment, the carrier is present in an amount of 0.1% to 98% w / w of the composition. According to a further embodiment, the carrier is present in an amount of 0.1% to 80% w / w of the composition. According to a further embodiment, the carrier is present in an amount of 0.1% to 60% w / w of the composition. According to a further embodiment, the carrier is present in an amount of 0.1% to 40% w / w of the composition. According to a further embodiment, the carrier is present in an amount of 0.1% to 20% w / w of the composition.

[0095] According to one embodiment, the anti-caking agent used in the insecticidal composition may include, but is not limited to, one or more of the following: precipitated silica, fumed silica, hydrophobically modified silica, perlite, mica, talc, soapstone, magnesium aluminum silicate, clay, calcium silicate, sodium bicarbonate, magnesium trisilicate, fumed silica (white carbon), ester gum, petroleum resin, Foammaster® Soap L, sodium stearate, sodium metasilicate, sodium carbonate, sodium aluminosilicate, calcium and magnesium carbonate, magnesium stearate, calcium phosphate salts or derivatives thereof. However, those skilled in the art will recognize that different anti-caking agents can be utilized without departing from the scope of the present invention. Anti-caking agents are commercially manufactured and available through various companies.

[0096] According to one embodiment, the anti-foaming or defoaming agent used in the insecticidal composition includes, but is not limited to, one or more of the following: silica, siloxane, silicone dioxide, polydimethylsiloxane and its derivatives, vegetable oil, petroleum oil, paraffin oil, polyethylene glycol, silicone oil, and magnesium stearate or its derivatives. Preferred anti-foaming agents include silicone emulsions (e.g., Silicon® SRE, Wacker, or Rhodorsil®, Rhodia), long-chain alcohols, and fatty acids. Non-silicone defoamers can also be used. However, those skilled in the art will recognize that other conventionally known anti-foaming agents can be utilized without departing from the scope of the present invention. Anti-foaming agents are commercially manufactured and available through various companies.

[0097] According to one embodiment, the anti-foaming agent is present in an amount of 0.01% to 5% w / w of the total composition. According to one embodiment, the anti-foaming agent is present in an amount of 0.01% to 4% w / w of the total composition. According to one embodiment, the anti-foaming agent is present in an amount of 0.01% to 2% w / w of the total composition.

[0098] According to one embodiment, the pH adjuster, buffer, or neutralizer used in the pesticidal composition includes both organic and inorganic acids and bases, and mixtures thereof. According to a further embodiment, the pH adjuster, buffer, or neutralizer includes one or more of the following, but is not limited to: organic acids, inorganic acids, and alkali metal compounds, or their salts or derivatives. According to one embodiment, the organic acids include one or more of the following, but are not limited to: acetic acid, propionic acid, citric acid, oxalic acid, malic acid, adipic acid, fumaric acid, maleic acid, succinic acid, tartaric acid, hydrochloric acid, nitric acid, sulfuric acid, phosphoric acid, boric acid, phytic acid, or their salts or derivatives, and mono-, di-, or tribasic salts of these acids, or their derivatives. Alkali metal compounds include, but are not limited to, one or more of the following: alkali metal hydroxides, such as sodium hydroxide and potassium hydroxide; alkali metal carbonates, such as sodium carbonate; alkali metal bicarbonates, such as sodium bicarbonate; and alkali metal phosphates, such as sodium phosphate, sodium dihydrogen phosphate, sodium hydroxide, potassium hydroxide, ammonium hydroxide, borax, sodium borate, calcium carbonate, calcium hydroxide, ferrous hydroxide, magnesia, lime, potassium acetate, potassium bicarbonate, potassium carbonate, sodium acetate, sodium benzoate, sodium carbonate, sodium bicarbonate, sodium metasilicate, trisodium phosphate, ammonia, primary amines, secondary amines, and tertiary amines, and mixtures thereof. According to one embodiment, salts of organic acids include, but are not limited to, one or more of the following: alkali metal salts, such as sodium citrate. Mixtures can also be used to prepare pH adjusters, buffers, or neutralizers. However, those skilled in the art will recognize that other conventionally known pH adjusters, buffers, or neutralizers can be utilized without departing from the scope of the present invention. pH adjusters or buffers or neutralizers are commercially produced and available through a variety of companies.

[0099] According to one embodiment, the pH adjusting or buffering agent is present in an amount of 0.01% to 20% w / w of the total composition. According to one embodiment, the pH adjusting or buffering agent is present in an amount of 0.01% to 10% w / w of the total composition. According to one embodiment, the pH adjusting or buffering agent is present in an amount of 0.01% to 5% w / w of the total composition. According to one embodiment, the pH adjusting or buffering agent is present in an amount of 0.01% to 1% w / w of the total composition.

[0100] According to one embodiment, the spreading agent used in the insecticidal composition includes, but is not limited to, one or more of the following: silicone surfactants, copolymers of maleic acid with styrene compounds, (meth)acrylic acid copolymers, half esters of polymers of polyhydric alcohols with dicarboxylic acid anhydrides, water-soluble salts of polystyrene sulfonic acid, fatty acids, fatty alcohols, vegetable oils such as cottonseed or mineral oils, petroleum distillates, modified trisiloxanes, polyglycols, polyethers, polyoxyalkylated ethylphenols, polyoxyethoxylated fatty alcohols, polyoxyethoxylated fatty amines, alkyl polyglycol ether sulfonates, alkyl ether phosphates, alkyl polyglucosides, alkyl polysaccharides, vegetable oils, mineral oils, petroleum, silicone oils, siloxanes, polyoxyalkylene alkyl ethers, polyoxyalkylene alkylphenyl ethers, polyoxyalkylene polyhydric alcohol fatty acid esters, polyhydric alcohol fatty acid esters, polyoxyalkylene alkylamines, alkyl polyglycosides, and glycidyl ethers are preferred. Examples of polyhydric alcohols that may constitute nonionic surfactants include dihydric alcohols such as ethylene glycol, 1,2-propylene glycol, 1,3-propylene glycol, 1,4-butanediol, 2,3-butanediol, 1,5-pentanediol, 1,6-hexanediol, 1,8-octanediol, neopentyl glycol, or 2-methyl-1,3-propanediol, and trihydric alcohols such as glycerol, clathrates, or salts or derivatives thereof. However, those skilled in the art will recognize that other conventionally known spreading agents can be utilized without departing from the scope of the present invention. Spreading agents are commercially available and are available from a variety of companies.

[0101] According to one embodiment, the spreading agent is present in an amount of 0.1% to 20% w / w of the total composition. According to one embodiment, the spreading agent is present in an amount of 0.1% to 10% w / w of the total composition. According to one embodiment, the spreading agent is present in an amount of 0.1% to 5% w / w of the total composition. According to one embodiment, the spreading agent is present in an amount of 0.1% to 1% w / w of the total composition.

[0102] According to one embodiment, the adhesive agent used in the insecticidal composition may include, but is not limited to, one or more of the following: silicone surfactants, mineral oils, vegetable oils, petroleum, silicone oils, emulsifiers, fish oils or fatty acid soaps or emulsified vegetable oils. carboxymethylcellulose and natural and synthetic polymers, such as gum arabic, xanthan gum, guar gum, carrageenan, carbomer, polyvinyl alcohol, polyvinylpyrrolidone and polyvinyl acetate, lecithin, carboxymethylcellulose, natural and synthetic polymers, paraffin, polyamide resins, polyacrylates, polyoxyethylene, waxes, polyvinyl alkyl ethers, alkylphenol-formalin condensates, fatty acids, fatty alcohols, vegetable oils, such as cottonseed oils, or mineral oils, petroleum distillates, modified trisiloxanes, polyglycols, polyethers, clathrates, synthetic resin emulsions, or salts or derivatives thereof. However, those skilled in the art will recognize that other conventional adhesive agents can be utilized without departing from the scope of the present invention. Adhesives are commercially available and are available from a variety of companies.

[0103] According to one embodiment, the binder may be present in an amount of 0.1% to 5% w / w of the total composition. According to one embodiment, the binder is present in an amount of 0.1% to 4% w / w of the total composition. According to one embodiment, the binder is present in an amount of 0.1% to 3% w / w of the total composition.

[0104] According to one embodiment, stabilizers used in the insecticidal composition include, but are not limited to, alkyl glyoxylates, such as ethyl glyoxylate, zeolites, EDTA and chelating agents, sequestering agents, antioxidants, such as sodium bisulfite, sodium metabisulfite, ascorbic acid, citric acid, malic acid and their salts, phenolic compounds, and ultraviolet absorbers, such as benzophenone compounds or their derivatives. However, those skilled in the art will recognize that other conventionally known stabilizers can be utilized without departing from the scope of the present invention. Stabilizers are commercially produced and available through various companies.

[0105] According to one embodiment, the stabilizer is present in an amount of 0.1% to 30% w / w of the total composition. According to one embodiment, the stabilizer is present in an amount of 0.1% to 20% w / w of the total composition. According to one embodiment, the stabilizer is present in an amount of 0.1% to 10% w / w of the total composition.

[0106] According to one embodiment, preservatives used in the pesticidal composition include, but are not limited to, one or more of the following: bactericides, antifungals, biocides, antibacterial agents, and antioxidants. Non-limiting examples of preservatives include one or more of the following: parabens, their esters and salts, propionic acid and its salts, 2,4-hexadienoic acid (sorbic acid) and its salts, formaldehyde and paraformaldehyde, 2-hydroxybiphenyl ether and its salts, inorganic sulfites and bisulfites, sodium iodate, chlorobutanol, 1,6-bis(4-amidino-2-bromophenoxy)-n-hexane and its salts, 5-amino-1,3-bis(2-ethylhexyl)-5-methyl Hexahydropyrimidine, 5-bromo-5-nitro-1,3-dioxane, 2-bromo-2-nitropropane-1,3-diol, 2,4-dichlorobenzyl alcohol, 5-chloro-2-(2,4-dichlorobenzyl alcohol), N-(4-chlorophenyl)-N'-(3,4-dichlorophenyl)urea, 4-chloro-m-cresol, 2,4,4'-trichloro-2'-hydroxydiphenyl ether, 4-chloro-3,5-dimethylphenol, 1,1'-methylene-bis(3-(1-hydroxymethyl)phenyl)-2,4-dichlorobenzyl alcohol), ethyl-2,4-dioxoimidazolidin-5-yl)urea), 2-phenoxyethanol, hexamethylenetetramine, 1-(3-chloroallyl)-3,5,7-triaza-1-azonia-adamantane chloride, 1(4-chlorophenoxy)-1-(1H-imidazol-1-yl)-3,3-dimethyl-2-butanone, 1,3-bis(hydroxymethyl)-5,5-dimethyl-2,4-imidazolidinedione, benzyl alcohol, octopirox, 1,2-dibromo-2,4-dicyanobutane, 2,2 '-Methylenebis(6-bromo-4-chlorophenol), bromochlorophene, dichlorophen, 2-benzyl-4-chlorophenol, 2-chloroacetamide, chlorhexidine, chlorhexidine acetate, chlorhexidine gluconate, chlorhexidine hydrochloride, 1-phenoxypropan-2-ol, N-alkyl(C12-C22)trimethylammonium bromide and chloride, 4,4-dimethyl-1,3-oxazolidine, N-hydroxymethyl-N-(1,3-di(hydroxymethyl)-2,5-Dioxoimidazolidin-4-yl)-N'-hydroxymethylurea, 1,6-bis(4-amidinophenoxy)-n-hexane and its salts, glutaraldehyde, 5-ethyl-1-aza-3,7-dioxabicyclo(3.3.0)octane, 3-(4-chlorophenoxy)propane-1,2-diol, hyamine, alkyl(C8-C18)dimethylbenzylammonium chloride, alkyl(C8-C18)dimethylbenzylammonium bromide, alkyl(C8-C18)dimethylbenzylammonium saccharinate, benzyl hemiformal, 3-iodo-2-propynyl butylcarbamate, sodium hydroxymethylaminoacetate, cetyltrimethylammonium bromide ammonium, acetic acid, cetylpyridinium chloride, and derivatives of 2H-isothiazol-3-one (so-called isothiazolone derivatives), such as alkylisothiazolones (e.g., 2-methyl-2H-isothiazol-3-one, MIT, chloro-2-methyl-2H-isothiazol-3-one, CIT), benzisothiazolones (e.g., 1,2-benzisothiazol-3(2H)-one, BIT, commercially available from ICI as Proxel® type) or 2-methyl-4,5-trimethylene-2H-isothiazol-3-one (MTIT), C1-C4-alkyl para-hydroxybenzoates, dichlorophen, Proxel® or Thor® from ICI. Acticide® RS manufactured by Chemie and Kathon® MK manufactured by Rohm & Haas, Bacto-100, Sodium Propinoate, Sodium Benzoate, Propylparaben, Propylparaben Sodium, Potassium Sorbate, Potassium Benzoate, Phenyl Ethyl Alcohol, Sodium, Ethylparaben, Methylparaben, Butylparaben, Bezyla Alcohol, Benzothonium Chloride, Cetylpyridinium Chloride, Benzalkonium Chloride, 1,2-Benzothiazol-3-one, Preventol® (Lanxess®), butylated hydroxytoluene, potassium sorbate, iodine-containing organic compounds such as 3-bromo-2,3-diiodo-2-propenyl ethyl carbonate, 3-iodo-2-propynyl butylcarbamate, 2,3,3-triiodoallyl alcohol, and parachlorophenyl-3-iodopropargyl formal, benzimidazole compounds and benzthiazole compounds such as 2-(4-thiazolyl)benzimidazole and 2-thiocyanomethylthio benzo-thiazoles, triazole compounds such as 1-(2-(2',4'-dichlorophenyl)-1,3-dioxolan-2-ylmethyl)-1H-1,2,4-triazole, 1-(2-(2',4'-dichlorophenyl)-4-propyl-1,3-dioxolan-2-ylmethyl)-1H-1,2,4-triazole, and α-(2-(4-chlorophenyl)ethyl)-α-(1,1-dimethylethyl)-1H-1,2,4-triazole-1-ethanol, as well as naturally occurring compounds such as 4-isopropyltropolone (hinokitiol) and borax or their salts or derivatives. Antioxidants include, but are not limited to, one or more of the following: sodium or potassium bisulfite, sulfite salts, ascorbic acid, isoascorbic acid, imidazole and imidazole derivatives (e.g., urocanic acid), 4,4'-thiobis-6-t-butyl-3-methylphenol, 2,6-di-t-butyl-p-cresol (BHT), and pentaerythrityl tetrakis[3-(3,5-di-t-butyl-4-hydroxyphenyl)]propionate, amine antioxidants such as N,N'-di-2-naphthyl-p-phenylenediamine, hydroquinoline antioxidants such as 2,5-Di(t-amyl)hydroquinoline, phosphorus-containing antioxidants such as triphenylphosphate propylthiouracil, hydroquinone and its derivatives (e.g., arbutin), ubiquinone and ubiquinol and their derivatives, ascorbyl palmitate, stearate, dipalmitate, acetate, magnesium ascorbyl phosphate, diiso-diumascorbyl phosphate and sulfate, potassium ascorbyl tocopheryl phosphate, isoascorbic acid and its derivatives, disodium rutinyl disulfate Examples of preservatives include butyl hydroxytoluene, 4,4-thiobis-6-tert-butyl-3-methylphenol, butylhydroxyanisole, p-octylphenol, mono(di- or tri-)methylbenzylphenol, 2,6-tert-butyl-4-methylphenol, pentaerythritol-tetrakis-3-(3,5-di-tert-butyl-4-hydroxyphenyl)propionate, butylhydroxyanisole, and trihydroxybutyrophenone. However, those skilled in the art will recognize that other conventionally known preservatives can be utilized without departing from the scope of the present invention. Preservatives are commercially manufactured and available through various companies.

[0107] According to one embodiment, the preservative or bactericide or antifungal or biocide or antibacterial or antioxidant is present in an amount of 0.1% to 5% w / w of the total composition. According to a further embodiment, the preservative or bactericide or antifungal or biocide or antibacterial or antioxidant is present in an amount of 0.1% to 4% w / w of the total composition. According to a further embodiment, the preservative or bactericide or antifungal or biocide or antibacterial or antioxidant is present in an amount of 0.1% to 3% w / w of the total composition. According to a further embodiment, the preservative or bactericide or antifungal or biocide or antibacterial or antioxidant is present in an amount of 0.1% to 1% w / w of the total composition.

[0108] According to one embodiment, the structuring agent used in the pesticidal composition includes, but is not limited to, one or more of the following: thickeners, viscosity modifiers, adhesives, suspending aids, rheology modifiers, or anti-settling agents. The structuring agent prevents settling of the active ingredient particles after extended storage.

[0109] According to one embodiment, the structuring agents used in the composition include, but are not limited to, one or more of the following: polymers such as polyacrylics, polyacrylamides, polysaccharides, modified cellulose derivatives, copolymers of cellulose derivatives, carboxyvinyl or polyvinylpyrrolidone, polyethylene, polyethylene oxide, polyvinyl alcohol and derivatives, clays such as bentonite clay, kaolin, smectite, attapulgite, attaclay, veegum, high surface area vangel, silica and natural gums such as guar gum, xanthan gum, gum arabic, tragacanth gum, rhamsan gum, locust bean gum, carrageenan, welan gum. gum), dextrin, polyacrylic acid and its sodium salts, fumed silica, mixtures of fumed silica and fumed aluminum oxide, swelling polymers, swelling clays, polyamides or derivatives thereof, polyols such as poly(vinyl acetate), sodium polyacrylate, poly(ethylene glycol), stachyose, fructooligosaccharides, amylose, pectin, alginate, hydrocolloids and mixtures thereof. Also included are celluloses such as carboxymethyl cellulose, ethyl cellulose, hydroxyethyl cellulose, hydroxymethylethyl cellulose, hydroxyethylpropyl cellulose, methylhydroxyethyl cellulose, methylcellulose, starch, starch acetate, starch hydroxyethyl ether, ionic starch, long-chain alkyl starch, dextrin, maltodextrin, corn starch, amine starch, phosphate starch, and dialdehyde starch, vegetable starches such as corn starch and potato starch, other carbohydrates such as pectin, amylopectin, xylan, glycogen, agar, gluten, alginic acid, phycocolloid, chitosan, or derivatives thereof. However, those skilled in the art will recognize that other conventionally known structuring agents can be utilized without departing from the scope of the present invention.

[0110] Preferred structuring agents include one or more of the following: xanthan gum, aluminum silicate, methylcellulose, polysaccharides, alkaline earth metal silicates, veegum, bentonite, attapulgite, kaolin, and polyvinyl alcohol. Structurants are commercially produced and available through a variety of companies.

[0111] According to one embodiment, the structuring agent is present in an amount of 0.01% to 5% w / w of the composition. According to one embodiment, the structuring agent is present in an amount of 0.01% to 4% w / w of the composition. According to one embodiment, the structuring agent is present in an amount of 0.01% to 3% w / w of the composition. According to one embodiment, the structuring agent is present in an amount of 0.01% to 2% w / w of the composition. According to one embodiment, the structuring agent is present in an amount of 0.01% to 1% w / w of the composition. According to one embodiment, the structuring agent is present in an amount of 0.01% to 0.1% w / w of the composition.

[0112] According to one embodiment, the cryoprotectants or freezing point depressants used in the liquid suspension composition include, but are not limited to, one or more of the following: polyhydric alcohols such as ethylene glycol, diethylene glycol, dipropylene glycol, propylene glycol, glycerol, monohydric or polyhydric alcohols, glycol ethers, glycol ethers, glycol monoethers such as the methyl, ethyl, propyl and butyl ethers of ethylene glycol, diethylene glycol, propylene glycol and dipropylene glycol, glycol diethers such as the methyl and ethyl diethers of ethylene glycol, diethylene glycol and dipropylene glycol, or urea, glycerol, isopropanol, propylene glycol monomethyl ether, di- or tripropylene glycol monomethyl ether, or carbohydrates such as glucose, mannose, fructose, galactose, sucrose, lactose, maltose, xylose, arabinose, sorbitol, mannitol, trehalose, raffinose or derivatives thereof. However, those skilled in the art will recognize that different cryoprotectants can be used without departing from the scope of the present invention. Antifreeze agents are commercially manufactured and available through a variety of companies.

[0113] According to one embodiment, the chelating or complexing or sequestering agents used in the pesticidal composition include, but are not limited to, one or more of the following: lignosulfonates, polycarboxylic acids such as polyacrylic acid and various hydrolyzed poly(methyl vinyl ether / maleic anhydride), N-hydroxyethyliminodiacetic acid, nitrilotriacetic acid (NTA), N,N,N',N'-ethylenediaminetetraacetic acid, N-hydroxyethyl-N,N',N'-ethylenediaminetriacetic acid and N,N,N',N",N"-diethylenetriaminepentaacetic acid, alpha-hydroxy acids such as citric acid, tartaric acid and gluconic acid, orthophosphates such as trisodium phosphate, disodium phosphate, monosodium phosphate, condensed phosphates such as tripolyphosphate. Examples of suitable chelating or complexing agents include sodium pyrophosphate, tetrasodium pyrophosphate, sodium hexametaphosphate and sodium tetrapolyphosphate, 5-sulfo-8-hydroxyquinoline, and 3,5-disulfopyrocatechol, polycarboxylates, ethylenediaminetetraacetic acid (EDTA), diethylenetriaminepentaacetic acid (DTPA), N-hydroxyethyl-ethylenediaminetriacetic acid (HEDTA), ethylenediaminediacetic acid (EDDA), ethylenediaminedi(o-hydroxyphenylacetic acid) (EDDHA), cyclohexanediaminetetraacetic acid (CDTA), polyethyleneaminepolyacetic acid, lignosulfonates, Ca-, K-, Na-, and ammonium lignosulfonates, fulvic acid, urmic acid, citric acid, cyclodextrins, phytic acid, humic acid, and pyrophosphates. However, those skilled in the art will recognize that other chelating or complexing or sesquitering agents can be utilized without departing from the scope of the present invention. Chelating or complexing or sesquitering agents are commercially produced and available through a variety of companies.

[0114] According to one embodiment, the penetrants used in the insecticidal composition include, but are not limited to, one or more of the following: alcohols, glycols, glycol ethers, esters, amines, alkanolamines, amine oxides, quaternary ammonium compounds, triglycerides, polyoxyethylene trimethylolpropane hexaoleate, sorbitan monooleate, polyoxyethylene sorbitan monolaurate, polyoxyethylene trimethylolpropane trioleate, ethoxylated triglycerides, ethoxylated polyol esters, alkoxylated alkanols and also alkoxylated triglyceride fatty acid esters, fatty acid ethers, N-methylpyrrolidone, dimethylformamide, dimethylacetamide, or dimethyl sulfoxide, polyoxyethylene trimethylolpropane monooleate, polyoxyethylene trimethylolpropane dioleate, polyoxyethylene trimethylolpropane trioleate, polyoxyethylene sorbitan monooleate, polyoxyethylene sorbitol hexaoleate. However, one skilled in the art will recognize that different penetrants may be utilized without departing from the scope of the present invention. Penetrants are commercially manufactured and available through a variety of companies.

[0115] According to one embodiment, the UV absorber is selected from one or more of the following, but is not limited to: zinc oxide, titanium oxide, lignosulfonate, 2-(2'-hydroxy-5'-methylphenyl)benzotriazole, 2-ethoxy-2'-ethyloxazalic acid bisanilide bisanilide), dimethyl succinate-1-(2-hydroxyethyl)-4-hydroxy-2,2,6,6-tetramethylpiperidine polycondensates, benzotriazole compounds such as 2-(2'-hydroxy-5'-methylphenyl)benzotriazole and 2-(2'-hydroxy-4'-n-octoxyphenyl)benzotriazole, benzophenone compounds such as 2-hydroxy-4-methoxybenzophenone and 2-hydroxy-4-n-octoxybenzophenone, salicylic acid compounds such as phenyl salicylate and pt-butylphenyl salicylate, 2-ethylhexyl 2-cyano-3,3-diphenylacrylate, 2-ethoxy-2'-ethyloxalic acid bisanilide, and dimethyl succinate-1-(2-hydroxyethyl)-4-hydroxy-2,2,6,6-tetramethylpiperidine polycondensates or derivatives. However, one skilled in the art will recognize that different UV absorbers can be utilized without departing from the scope of the present invention. Such UV absorbers are commercially manufactured and available through a variety of companies.

[0116] According to one embodiment, UV scattering agents include, but are not limited to, zinc oxide, titanium dioxide, and the like. However, one skilled in the art will recognize that different UV scattering agents or mixtures thereof can be utilized without departing from the scope of the present invention. Such UV scattering agents are commercially manufactured and available through various companies.

[0117] According to one embodiment, the polymeric shell wall material is a polyuria, polyurethane, aminoplast, or polyisocyanate shell wall, although one skilled in the art will recognize that different materials may be utilized without departing from the scope of the present invention.

[0118] According to one embodiment, the humectant is selected from one or more of the following, but is not limited to: polyoxyethylene / polyoxypropylene copolymers, particularly block copolymers, such as the Synperonic PE series copolymers available from Uniqema, or salts or derivatives thereof. Other humectants include polyhydric alcohol compounds, such as propylene glycol, monoethylene glycol, hexylene glycol, butylene glycol, ethylene glycol, diethylene glycol, poly(ethylene glycol), poly(propylene glycol), glycerol, and the like, such as propylene glycol ethers, and derivatives thereof. Other humectants include calcium chloride, sodium lactate, urea, polydextrose, sodium metaphosphate, amino acids, such as proline and triacetin, and the like. The above-mentioned nonionic surfactants also function as humectants. However, those skilled in the art will recognize that other conventionally known humectants can be utilized without departing from the scope of the present invention. These humectants are commercially available and available from a variety of companies.

[0119] According to one embodiment, the humectant is present in the range of 0.1% to 20% w / w of the total composition. According to one embodiment, the humectant is present in the range of 0.1% to 10% w / w of the total composition. According to one embodiment, the humectant is present in the range of 0.1% to 5% w / w of the total composition. According to one embodiment, the humectant is present in the range of 0.1% to 3% w / w of the total composition. According to one embodiment, the humectant is present in the range of 0.1% to 1% w / w of the total composition.

[0120] According to one embodiment, the water-dispersible granules of the ZC composition or encapsulation suspension comprise monomers, including at least one first monomer used in the organic phase, such as isocyanates, such as polymethylene polyphenylene isocyanate (PMPPI), hexamethylene diisocyanate (HMDI), isophorone diisocyanate (IPDI) or 4,4' methylenebis(cyclohexyl isocyanate) and / or trimers of HMDI or IPDI, isomers of toluene diisocyanate, isomers and derivatives of phenylene diisocyanate, isomers and derivatives of biphenylene diisocyanate, methylene diphenyl diisocyanate (MDI), polymeric polyisocyanates, biuret and blocked polyisocyanates or mixtures thereof.

[0121] The concentration of the isocyanate(s), and the ratio when more than one isocyanate is used, is selected to obtain the desired release rate profile for a particular application. Generally, the isocyanate(s) will comprise from about 0.1 to about 8% by weight of the microcapsules, more preferably from about 0.5 to about 6%, even more preferably from about 1% to about 5%, and most preferably from about 0.5% to about 4%.

[0122] According to one embodiment, the water-dispersible granules of the ZC composition or encapsulation suspension contain at least one second monomer, such as a diamine or polyamine, or a mixture thereof. The monomer includes compounds that are soluble in the aqueous phase. Aliphatic or alicyclic primary or secondary diamines or polyamines, such as ethylene-1,2-diamine, diethylenetriamine, triethylenetetramine, bis-(3-aminopropyl)amine, bis-(2-methylaminoethyl)methylamine, 1,4-diaminocyclohexane, 3-amino-1-methylaminopropane, N-methyl-bis-(3-aminopropyl)amine, 1,4-diamino-n-butane, propylene-1,3-diamine, tetramethylenediamine, pentamethylenediamine, 1,6-hexamethylenediamine, triethylenediamine, 1,6-diamino-n-hexane, and tetraethylenepentamine, and mixtures thereof, are preferably used. Polyethyleneimine is also suitable. Typically the diamines and polyamines chosen, either as water-soluble themselves or in water-soluble salt form, are polymethylenediamines, phenylenediamines, toluenediamines and piperazines.

[0123] Particularly suitable amines are polyfunctional amines, having a functionality greater than 2 but less than 3, which can provide some degree of crosslinking in the shell wall. The polyfunctional amine must be in a water-soluble salt form. Suitable examples of polyfunctional amines that can be used include 1,3,5-benzenetriamine trihydrochloride, 2,4,6-triaminotoluene trihydrochloride, 1,3,6-triaminonaphthalene, 3,4,5-triamino-1,2,4-triazole, melamine, 2,4,5,8-tetraminoanthraquinone, propylenediamine, isopropylenediamine, ethenediamine, triethylenetetraamine, bix-hexamethylenetriamine, polyalkylenepolyamines such as pentaethylenehexamine, and the like. The amines may be used alone or in combination with each other, preferably in combination with 1,6-hexamethylenediamine (HMDA).

[0124] According to one embodiment, the water-dispersible granules of the ZC composition or encapsulation suspension contain a protective colloid selected from at least one of the following: polyvinyl alcohol, polyvinyl acetal, polyvinylpyrrolidone, water-soluble polysaccharides such as starch (amylose and amylopectin), cellulose and its methyl, hydroxyethyl, and hydroxypropyl derivatives, and poly(meth)acrylic. Polyvinyl alcohol is usually sold in solid form with a wide range of molecular weights and degrees of hydrolysis. The polyvinyl alcohol is added in an amount sufficient to enhance the stability of the microcapsules. In particular, polyvinyl alcohols with lower molecular weights or lower degrees of hydrolysis are more water-soluble and are preferred.

[0125] According to one embodiment, the water-dispersible granules of the ZC composition or encapsulation suspension comprise a polymer, such as a polyurea formed by the reaction of a polyisocyanate with a polyamine, a polymer formed from melamine formaldehyde or urea formaldehyde condensates and similar types of aminoplasts, polyurethanes, polyamides, polyolefins, polysaccharides, proteins, silica, lipid-modified cellulose, gums, polyacrylates, polyphosphates, polystyrene, polyesters or mixtures thereof.

[0126] According to one embodiment, the insecticidal composition can contain at least one additional active ingredient. According to one embodiment, the active ingredient can include at least one insecticidal active, a nutrient selected from macronutrients, micronutrients, biostimulants, fertilizers, plant growth regulators, microorganisms, algae, bacterial spores, and mixtures thereof. However, those skilled in the art will recognize that other additional active ingredients can be used without departing from the scope of the present invention.

[0127] According to one embodiment, the pesticidal actives include one or more of the following: antifouling agents, insecticides, fungicides, herbicides, nematicides, pheromones, defoliants, miticides, plant growth regulators, algicides, feeding deterrents, bird killers, bactericides, bird repellents, biopesticides, biocides, sterilizers, safeners, insect attractants, insect repellents, insect growth regulators, mammalian repellents, mating disruptors, disinfectants, molluscicides, antibacterial agents, acaricides, ovicides, fumigants, plant vitalizers, rodenticides, synergists, antivirals, microbial pesticides, plant-integrated protectants, various other pesticidal actives or salts or derivatives and mixtures thereof, etc. However, one of ordinary skill in the art will recognize that other pesticidal actives can be utilized without departing from the scope of the present invention.

[0128] According to further embodiments, the additional active ingredient may be present in a concentration range of 0.1% w / w to 90% w / w of the total composition. According to further embodiments, the active ingredient may be present in a concentration range of 0.1% w / w to 70% w / w of the total composition. According to further embodiments, the active ingredient may be present in a concentration range of 0.1% w / w to 50% w / w of the total composition. According to further embodiments, the active ingredient may be present in a concentration range of 0.1% w / w to 30% w / w of the total composition.

[0129] Surprisingly, it has been found that the pesticidal compositions of the present invention enhance and improve the physical properties of dispersibility, suspendability, wetting, viscosity, pourability, provide ease of handling, and reduce material loss during handling of the product at the point of packaging and during field application.

[0130] According to one embodiment, the viscosity of the liquid composition is determined according to CIPACMT-192. According to one embodiment, the insecticidal composition has a viscosity of about 10 cps to about 3000 cps at 25°C. According to one embodiment, the insecticidal composition has a viscosity of about 10 cps to about 2500 cps at 25°C. According to one embodiment, the insecticidal composition has a viscosity of about 10 cps to about 2000 cps at 25°C. According to one embodiment, the insecticidal composition has a viscosity of about 10 cps to about 1500 cps at 25°C. According to one embodiment, the insecticidal composition has a viscosity of about 10 cps to about 1200 cps at 25°C. According to one embodiment, the insecticidal composition has a viscosity of about 10 cps to about 500 cps at 25°C. According to one embodiment, the insecticidal composition has a viscosity of less than about 500 cps at 25°C. According to one embodiment, the insecticidal composition has a viscosity of about 10 cps to about 400 cps at 25°C. According to one embodiment, the pesticidal composition has a viscosity at 25°C of about 10 cps to about 300 cps.

[0131] According to one embodiment, the liquid suspension compositions of the present invention are easily pourable. Pourability is a measure of the percentage of residue.

[0132] According to one embodiment, the injectability of the pesticidal composition is determined according to CIPACMT-148.1. According to a further embodiment, the injectability of the pesticidal composition is less than 5% residual. According to a further embodiment, the injectability of the pesticidal composition is preferably less than 2.5% residual. According to a further embodiment, the injectability of the pesticidal composition is more preferably less than 2.0% residual.

[0133] According to one embodiment, the insecticidal composition has a dispersibility of at least 30%. According to one embodiment, the insecticidal composition has a dispersibility of at least 40%. According to one embodiment, the insecticidal composition has a dispersibility of at least 50%. According to one embodiment, the insecticidal composition has a dispersibility of at least 60%. According to one embodiment, the insecticidal composition has a dispersibility of at least 70%. According to one embodiment, the insecticidal composition has a dispersibility of at least 80%. According to one embodiment, the insecticidal composition has a dispersibility of at least 90%. According to one embodiment, the insecticidal composition has a dispersibility of at least 99%. According to one embodiment, the insecticidal composition has a dispersibility of 100%. The dispersibility of the compositions of the present application was determined according to standard CIPAC test, MT174.

[0134] Suspensionability is defined as the amount of active ingredient suspended in a column of liquid of a defined height after a given time, expressed as a percentage of the amount of active ingredient in the original suspension. Tests for suspensionability are performed according to the CIPAC Handbook, "MT184 Test for Suspensionability."

[0135] According to one embodiment, the pesticidal composition has a suspendability of at least 30%. According to one embodiment, the pesticidal composition has a suspendability of at least 40%. According to one embodiment, the pesticidal composition has a suspendability of at least 50%. According to one embodiment, the pesticidal composition has a suspendability of at least 60%. According to one embodiment, the pesticidal composition has a suspendability of at least 70%. According to one embodiment, the pesticidal composition has a suspendability of at least 80%. According to one embodiment, the pesticidal composition has a suspendability of at least 90%. According to one embodiment, the pesticidal composition has a suspendability of at least 99%. According to one embodiment, the pesticidal composition has a suspendability of 100%.

[0136] According to one embodiment, the pesticidal composition exhibits excellent stability in terms of suspendability under accelerated storage conditions (ATS). According to one embodiment, the pesticidal composition exhibits at least 90% suspendability under the ATS. According to one embodiment, the pesticidal composition exhibits at least 80% suspendability under the ATS. According to one embodiment, the pesticidal composition exhibits at least 70% suspendability under the ATS. According to one embodiment, the pesticidal composition exhibits at least 60% suspendability under the ATS. According to one embodiment, the pesticidal composition exhibits at least 50% suspendability under the ATS. According to one embodiment, the pesticidal composition exhibits at least 40% suspendability under the ATS. According to one embodiment, the pesticidal composition exhibits at least 30% suspendability under the ATS.

[0137] According to one embodiment, the insecticidal composition exhibits at least 90% dispersibility under the ATS. According to one embodiment, the insecticidal composition exhibits at least 80% dispersibility under the ATS. According to one embodiment, the insecticidal composition exhibits at least 70% dispersibility under the ATS. According to one embodiment, the insecticidal composition exhibits at least 60% dispersibility under the ATS. According to one embodiment, the insecticidal composition exhibits at least 50% dispersibility under the ATS. According to one embodiment, the insecticidal composition exhibits at least 40% dispersibility under the ATS.

[0138] According to one embodiment, the pesticidal composition exhibits a dispersibility of at least 30% under the ATS.

[0139] Wettability is the state or condition of being wettable and can be defined as the degree to which a solid is wetted by a liquid, as measured by the adhesive force between the solid and liquid phases. The wettability of a granular composition is measured using standard CIPAC test MT-53, which describes a procedure for determining the time for complete wetting of a wettable formulation. A weighed amount of the granular composition is dropped from a specific height onto water in a beaker, and the time required for complete wetting is determined. According to another embodiment, the insecticidal composition in the form of water-dispersible granules, spheronized granules, or spray granules or water-disintegrable granules has a wettability of less than 2 minutes. According to another embodiment, it has a wettability of less than 1 minute. According to another embodiment, the insecticidal composition has a wettability of less than 30 seconds.

[0140] According to one embodiment, the pesticidal composition exhibits excellent stability against heat, light, temperature, and caking. According to one embodiment, the pesticidal composition exhibits stability for at least 3 years. According to a further embodiment, the pesticidal composition exhibits stability for at least 2 years. According to a further embodiment, the pesticidal composition exhibits stability for at least 1 year. According to a further embodiment, the pesticidal composition exhibits stability for at least 6 months.

[0141] According to one embodiment, the present invention relates to a process for preparing an insecticidal composition of the present invention comprising elemental sulfur present in the range of 20% w / w to 90% w / w of the total composition, acinonapyr present in the range of 0.01% w / w to 50% w / w of the total composition, and at least one agrochemically acceptable excipient.

[0142] According to another embodiment, the pesticidal composition in the form of water-dispersible granules or spheronized granules or water-disintegrable granules or dusting granules is produced by various techniques, such as spray drying, fluidized bed granulation, pan granulation, pin agglomerator, spheronizer, freeze-drying, etc. The granules can also be extruded through an extruder to obtain extruded granules.

[0143] According to one embodiment, a process for preparing a water-dispersible granular insecticidal composition includes milling a blend of elemental sulfur, acinonapyr, and at least one excipient to obtain a slurry or wet mixture. According to one embodiment, the process for preparing a water-dispersible granular insecticidal composition includes, inter alia, milling a blend of elemental sulfur and acinonapyr, followed by adding at least one filler or carrier and at least one excipient to obtain a slurry or wet mixture having a particle size of 0.1 to 50 microns. The resulting wet mixture is then dried, for example, in a spray dryer, followed by sieving to remove undersized and oversized granules as needed to obtain water-dispersible granules of the desired size. However, those skilled in the art will recognize that the process or process parameters can be modified, altered, or changed to obtain a water-dispersible granular composition without departing from the scope of the present invention. Furthermore, water can be added to the dry powder, the mixture blended, a wet mass obtained, and then extruded through an extruder to obtain granules of the desired size. Granules can also be formed by hot melt extrusion, however, one skilled in the art will recognize that the process or process parameters can be modified, changed or varied to achieve a granular composition without departing from the scope of the present invention.

[0144] The granules obtained from the extruder may also be dried in the open air, or by air drying, or using a suitable dryer to remove any residual moisture, however, those skilled in the art will recognize that the process or process parameters can be modified or changed or varied without departing from the scope of the present invention.

[0145] According to another embodiment, the invention further relates to a process for preparing water-disintegrating granules, spreadable granules, or spheronized granules, comprising milling a blend of elemental sulfur, acinonapyr, and at least one excipient to obtain a slurry or wet mixture. The process specifically comprises milling a blend of elemental sulfur, acinonapyr, and at least one agrochemically acceptable excipient to obtain a crushed powder mixture. This crushed powder mixture is then granulated with water, to which a suitable binder may be added. Once the desired consistency is reached, the wet mass is extruded using a suitable extruder or, optionally, spheronized to obtain spherical granules. The spherical granules are then dried in a tray dryer or fluidized-bed dryer to obtain water-disintegrating granules. The dried granules are then sieved to remove undersized and oversized granules, resulting in granules of uniform size. The powder or granules can be further subjected to agglomeration in an agglomerator to obtain granules having a size of about 0.1 mm to 6 mm. According to one embodiment, the composition contains at least one filler or carrier during the preparation process to produce the composition. The agglomerator can include various devices, such as a disk pelletizer or pan granulator, a pin agglomerator, an extruder, a spheronizer, or a combination thereof.

[0146] According to one embodiment, the present invention relates to a process for preparing a wettable powder composition. The process comprises mixing acinonapir with excipients using a mass mixer to form a dry mass. Elemental sulfur and other ingredients are then added to the mixture, which is then passed through a jet mill to obtain a powder having a desired particle size.

[0147] According to one embodiment, the present invention relates to a process for preparing a liquid suspension pesticidal composition, the process comprising: homogenizing a mixture of elemental sulfur, acinonapyr, and at least one agrochemically acceptable excipient to obtain a suspension, and wet-milling the resulting suspension to provide a liquid suspension composition. However, one skilled in the art will recognize that the process or process parameters can be modified, changed, or varied without departing from the scope of the present invention.

[0148] According to one embodiment, the gel compositions of the present invention are prepared by adding a higher amount of viscosity modifier to a suspension concentrate or liquid suspension composition, however, one skilled in the art will recognize that the process or process parameters can be modified, changed or varied to obtain a gel composition without departing from the scope of the present invention.

[0149] According to one embodiment, the ZC composition of the present invention is prepared by mixing a suspension concentrate of elemental sulfur and an encapsulated suspension of acinonapir. The process for preparing the suspension concentrate of elemental sulfur includes adding suitable excipients to water, suspending elemental sulfur therein to form a slurry. The slurry is milled using a suitable wet mill to obtain the desired particle size. Alternatively, the process for preparing an encapsulated suspension of acinonapir includes dissolving acinonapir in a suitable oil, adding a polymer precursor to the oil, and emulsifying the oil in water using a suitable homogenizer. A crosslinker for the polymer precursor is added to the aqueous phase, either alone or optionally with at least one excipient. The encapsulated suspension is then added to the elemental sulfur suspension under continuous stirring. At least one further excipient is added at this stage, and the mixture is then spray-dried to obtain a dried ZC formulation. Alternatively, if a ZC formulation is desired, the spray-drying step can be avoided, and at least one humectant, biocide, and structurant can be added to the mixture of the suspension concentrate and the encapsulated suspension.

[0150] According to one embodiment, the present invention relates to a process for preparing a suspoemulsion pesticidal composition, comprising dissolving acinonapyr in an oil or solvent and preparing a concentrated emulsion with required pesticide excipients to obtain a first portion. The process further comprises mixing an effective amount of elemental sulfur with a surfactant or excipient to obtain a second portion, which is then milled to obtain a desired particle size. The two resulting portions are then mixed using a suitable homogenizer for 30 minutes to obtain a suspoemulsion composition having a desired particle size of 0.1 to 50 microns.

[0151] According to one embodiment, the invention further relates to a method of applying the composition.

[0152] According to one embodiment, the invention also relates to a method for protecting crops, controlling plant pathogens, controlling pests, improving crop health and growth, enhancing crop yield, and strengthening plants, comprising treating at least one of a plant, crop, plant propagation material, a locus or part thereof, a seed, a seedling, or surrounding soil with an insecticidal composition comprising elemental sulfur present in the range of 20% w / w to 90% w / w of the total composition and acinonapyr present in the range of 0.1% w / w to 50% w / w of the total composition. The composition may be sprayed directly onto the plant, e.g., its leaves, or may be applied to the plant propagation material or to the locus before sowing or planting.

[0153] Composition can be applied by various methods.The method of applying to soil includes any suitable method, so that composition can penetrate into soil, for example, seedling tray application, furrow application, soil dipping, soil injection, drip irrigation, sprinkler irrigation, seed treatment, seed coating and other methods.Composition is particularly applied in the form of foliar spray.

[0154] The application rate or dosage of the composition will depend on the type of use, the type of crop, or the particular active ingredient in the composition, so that the insecticidally active ingredient is present in an amount effective to provide the desired effect (e.g., crop protection, crop yield).

[0155] According to one embodiment, the compositions of the present invention are synergistic in nature and provide better control of plant pathogens, such as pests, compared to the application of the individual active ingredients. Furthermore, such compositions are useful for improving crop yields, crop characteristics, etc. Thus, the compositions of the present invention have been observed to exhibit enhanced, effective, and superior performance in the field at reduced dosages. [Example]

[0156] A. Preparation example: The following examples demonstrate the basic methodology and versatility of the compositions of the invention. It should be noted that the invention is not limited to these examples and can be extrapolated to the full claimed concentration ranges of the components.

[0157] Example 1: Water-dispersible granular formulation of 88% elemental sulfur and 2% acinonapyr A water-dispersible granular composition was prepared by adding 88 parts elemental sulfur, 2 parts acinonapyr to 1 part naphthalene sulfonic acid condensate, 5 parts Tensiofix LX, and 4 parts Stepsperse 500 to 100 parts water. The powders were mixed with water in a suitable mixing device to form a slurry or wet mixture.

[0158] The resulting slurry was wet-milled in a suitable wet-milling device. The resulting wet-milled slurry was spray-dried at an inlet temperature of less than 140°C and an outlet temperature of less than 90°C to yield a granular powder. The composition had a particle size of approximately 15 microns and a granule size of 2 mm. The composition had a dispersibility of 84%, a suspendability of 65%, a wet sieve retention of 0.25%, and a wettability of less than 20 seconds. The composition further exhibited a suspendability of approximately 60% and a dispersibility of approximately 78% under accelerated storage conditions.

[0159] Example 2: Water-dispersible granules of 60% elemental sulfur and 6% acinonapyr Granules were prepared by blending 60 parts elemental sulfur, 6 parts acinonapyr, 10 parts Supragil MNS90, 5 parts Supragil WP, 15 parts lignosulfonate, and 4 parts kaolin according to the process described in Example 1. The composition had a particle size of approximately 8 microns and a granule size of 1.5 mm. The composition had 87% dispersibility, 73% suspendability, a wettability of less than 12 seconds, and a wet sieve retention of 0.2%. The composition also exhibited 75% dispersibility and approximately 80% suspendability under accelerated storage conditions.

[0160] Example 3: Water-dispersible granules of acinonapyr containing 50% and 35% elemental sulfur Granules were prepared by extrusion according to the following process: 50 parts sulfur and 35 parts acinonapyr were mixed in a mass mixer. 2 parts Geropon T36, 1 part Geropon T77, 8 parts Ufoxane 3A, 2 parts silica, and 2 parts china clay were added and mixed thoroughly to obtain a uniform dry mix. The dry mix was milled using a suitable mill to obtain a particle size of 21.4 microns. The crushed powder was granulated using water to obtain a wet mass with the desired consistency. This was extruded to obtain extruded granules. The wet extruded granules were dried using a suitable dryer to obtain granules with a size of approximately 2.5 to 5.0 mm. The composition had a dispersibility of 96%, a suspendability of 78%, a wettability of less than 25 seconds, and a wet sieve retention of 0.12%. The composition further exhibited a dispersibility of 90% and a suspendability of approximately 71% under accelerated storage conditions.

[0161] Example 4: Water-dispersible granules of 45% elemental sulfur and 25% acinonapyr Granules are prepared by blending 45 parts elemental sulfur, 25 parts acinonapyr, 8 parts Oparyl DT, 14 parts Tersperse 2700, 3 parts soapstone, and 5 parts silica according to the process described in Example 3. The composition has a particle size of approximately 18 microns and a granule size of 2.1 mm. The composition has 90% dispersibility, 82% suspendability, a wettability of less than 30 seconds, and a wet sieve retention of 0.12%. The composition further exhibited 85% dispersibility and approximately 75% suspendability under accelerated storage conditions.

[0162] Example 5: Liquid suspension composition of 45% elemental sulfur and 10% acinonapyr A liquid suspension composition was prepared by mixing 45 parts elemental sulfur, 10 parts acinonapyr, 5 parts monoethylene glycol, 2.5 parts Morwet D425, 0.5 parts Soprophor 3D33, 0.5 parts potassium sorbate, and 36.35 parts water, and then homogenizing the mixture in a container equipped with a stirrer until the mixture was uniform. The resulting suspension was then passed through a wet mill to obtain a suspension with a 4 micron particle size. 0.15 parts xanthan gum was then added under continuous homogenization to obtain a suspension concentrate. The composition had a suspendability of approximately 92%, a dispersibility of 90%, a wet sieve retention of 0.1%, a viscosity of approximately 600 cps, and a pourability of less than 1.5. Under accelerated storage conditions, the composition had a suspendability of approximately 89%, a dispersibility of 90%, and a viscosity of approximately 650 cps.

[0163] Example 6: Liquid suspension composition of 40% elemental sulfur and 5% acinonapyr A liquid suspension was prepared according to Example 5 and contained 40 parts elemental sulfur, 5 parts acinonapyr, 3 parts Soprophor 3D33, 2 parts Morwet D425, 5 parts propylene glycol, 0.1 parts benzisothiazolinone, 0.2 parts xanthan gum, 0.2 parts silicone antifoam agent, and 44.5 parts water. The composition has a particle size of about 4 microns, about 95% suspendability, 85% dispersibility, a viscosity of about 620 cps, a pourability of less than 1.7%, and a wet sieve retention of 0.08%. Under accelerated storage conditions, the composition has about 90% suspendability, 80% dispersibility, and a viscosity of about 750 cps.

[0164] Example 7: Liquid suspension composition of 25% elemental sulfur and 20% acinonapyr A liquid suspension was prepared according to Example 5 and contained 25 parts elemental sulfur, 20 parts acinonapyr, 4 parts Reax 907M, 1.5 parts Gelopon SC213, 5 parts polyethylene glycol 400, 0.1 part Rocima BT 2S, 0.2 parts silicone antifoam agent, 0.2 parts xanthan gum, and 44 parts water. The composition has a particle size of about 6 microns, a suspendability of about 70, a dispersibility of 75%, a viscosity of about 800 cps, a pourability of less than 2%, and a wet sieve retention of 0.18%. Under accelerated storage conditions, the composition has a suspendability of about 65%, a dispersibility of 71%, and a viscosity of about 820 cps.

[0165] Example 8: Wettable powder of 90% elemental sulfur and 5% acinonapyr A wettable powder is prepared by mixing 90 parts elemental sulfur, 5 parts acinonapyr, 1.5 parts sodium dodecyl sulfate, 0.45 parts precipitated silica, and 2.1 parts clay. The resulting mixture is passed through a jet mill to produce particles approximately 7.5 microns in size, with a 77% suspendability, 15-second wettability, and 80% dispersibility. Under accelerated storage conditions, the composition has a 72% suspendability and 75% dispersibility.

[0166] Example 9: Encapsulated suspension composition of 25% elemental sulfur and 1% acinonapyr or ZC water-dispersible granules A suspension concentrate of elemental sulfur was prepared by mixing 25 parts of elemental sulfur with 3 parts of sodium polycarboxylate and 2 parts of Morwet D425 and water. The slurry was then milled using a suitable wet mill to obtain the desired particle size. An encapsulation suspension was prepared by dissolving 1.5 parts of polyvinyl alcohol (PVA) in water. 1 part of acinonapyr technical was dissolved in 5 parts of Garosol 110, and 1.5 parts of polymethylene diisocyanate was added to the oil. The oil phase was added to the PVA solution while homogenizing to form an emulsion. 0.5 parts of ethylenediamine was added, followed by 0.2 parts of citric acid, 0.05 parts of potassium hydroxide, and 0.19 parts of antifoaming agent.

[0167] The elemental sulfur suspension concentrate is mixed with Acnonapyr encapsulation suspension to form ZC. 5 parts propylene glycol, 0.1 parts benzisothiazolinone, and 0.11 parts xanthan gum are added to the ZC or the combination of elemental sulfur suspension concentrate and Acnonapyr encapsulation suspension under stirring. The formulation had a particle size of 6.2 microns, 92% susceptibility, and a viscosity of 790 cps. Under accelerated storage conditions, the formulation exhibited 88% susceptibility and a viscosity of 810 cps.

[0168] Example 10: Water-dispersible granules of encapsulated suspension of 40% elemental sulfur and 0.1% acinonapyr A suspension concentrate of elemental sulfur and an encapsulated suspension of acinonapyr were prepared according to Example 9. The two were mixed together, and 10 parts Borresperse NA, 9 parts ammonium sulfate, 0.3 parts silicone antifoam agent, and 23.6 parts maltodextrin were added to the mixture. The slurry was then spray-dried to obtain a dry encapsulated suspension. The composition had a particle size of 8.3 microns, 75% suspendability, and 80% dispersibility. The formulation exhibited 72% suspendability and 76% dispersibility under accelerated storage conditions.

[0169] Example 11: Water-disintegrable granular composition of 30% sulfur and 20% acinonapyr A composition was prepared by blending 30 parts elemental sulfur with 20 parts acinonapyr, 4 parts Morwet D500, 50.93 parts Borresperse CA, 3 parts precipitated silica, and 9.07 parts talc (to obtain a blend), 4 parts polyvinylpyrrolidone, and 24 parts maltodextrin. The resulting blend was milled to obtain a powder with a particle size of less than 50 microns. The powder was granulated with water to obtain a wet mass suitable for extrusion processing. The wet mass was extruded using a suitable extrusion device and then spheronized to obtain spherical granules measuring approximately 4.5 mm. The spheronized granules were dried in a fluidized bed dryer for 30 minutes at 45°C.

[0170] The sample had a granule size of 4.5 mm and a particle size of 30 microns. The granular composition had a wettability of less than 100 seconds, 50% suspendability, and 47% dispersibility. The composition further exhibited 41% dispersibility and approximately 46% suspendability under accelerated storage conditions.

[0171] Example 12: Water-disintegrable granular composition of 80% elemental sulfur and 10% acinonapyr Spheronized granules were prepared according to Example 11, containing 80 parts elemental sulfur technical, 10 parts acinonapyr, 5 parts sodium lignosulfonate, 3 parts ammonium sulfate, and 2 parts bentonite. The sample had a granule size of 3.5 mm and a particle size of 22 microns. The granular composition had a wettability of less than 80 seconds, 55% suspendability, and 50% dispersibility. The composition further exhibited 44% dispersibility and approximately 50% suspendability under accelerated storage conditions.

[0172] Example 13: ZC Composition of 20% Elemental Sulfur and 10% Acinonapyr First, a sulfur slurry was prepared by adding a sufficient amount of water to a beaker and adding a surfactant, such as 5 parts Soprophor 3D33, 5 parts monoethylene glycol, and 2 parts Resicare MSW. Then, 20 parts sulfur was added and milled to obtain the desired particle size. To obtain an acinonapyr encapsulation suspension, 10 parts acinonapyr and 5 parts Solvesso 200ND were mixed. Furthermore, a solution of 1.5 parts Kuraray Poval 3-98 was prepared in water. 1.5 parts polymethylene diisocyanate was added to the oil phase and then added dropwise to the aqueous Kuraray Poval 3-98 solution at 50°C. Furthermore, 1.25 parts trimethylolpropane was dissolved in water and added to the dispersion. The crushed sulfur suspension and acinonapyr CS were then mixed in a 1:1 w / w ratio. Then, 0.12 parts of xanthan gum and 0.1 parts of benzisothiazolinone were added under stirring. The resulting ZC composition had a sulfur content of 20% and an acinonapyr content of 10%.

[0173] The composition has particles with a size of about 18 microns and a suspendibility of 89%. The composition has a suspendibility of about 78% under accelerated storage conditions.

[0174] Example 14: Suspoemulsion composition of 35% elemental sulfur and 5% acinonapyr A suspoemulsion was prepared by adding 3.5 parts alcohol ethoxylate, followed by 2 parts Powerblox SN, 2 parts Stepac TSPK, 0.1 part benzisothiazolinone, and 5 parts propylene glycol to a sufficient amount of water in a beaker. To this mixture, 35 parts elemental sulfur was added. The resulting slurry was blended for 30 minutes using a laboratory homogenizer and milled using a bead mill to obtain the desired particle size. Separately, 5 parts acinonapyr, 10 parts Garasol 110, and 1 part dioctyl sodium sulfosuccinate were added. The oil phase was added to the aqueous sulfur suspension with stirring using a homogenizer. 0.1 parts xanthan gum was added to the mixture to obtain the desired viscosity. The composition had a particle size of approximately 7 microns, a suspendability of approximately 85, a viscosity of approximately 390 cps, a pourability of less than 1%, and a wet sieve retention of 0.01%. The composition has a suspensionability of about 82% under accelerated storage conditions and a viscosity of about 410 cps.

[0175] B. On-site investigation Field Trial 1: Study of the Efficacy of Elemental Sulfur and Acinonapyr to Control Red Spider Mite (RSM) in Tea A field trial was conducted to study the efficacy of a composition of elemental sulfur and acinonapyr on red spider mites in tea crops. The trial consisted of seven treatments, including an untreated control, replicated four times. Test product samples, elemental sulfur and acinonapyr alone, and in combination at prescribed doses were applied foliarly. Tea crops at the trial site were grown according to good agricultural practices.

[0176] [Experiment details] a) Test location: Siliguri, WB b) Crop: Tea & TV25 d) Test design: RBD e) Iterations: 4 f) Processing: 7 g) Plot size: 70Sqm (7x10m) h) Applicable date: i) Application method: Foliar

[0177] The number of RSM from the top five leaves of each shrub observed was recorded. Three shrubs per replicate were randomly tagged at the start of the study and the RSM population from those shrubs was recorded throughout the observation period. Observations were recorded before counting and 1, 3, 5, 7, 10, 14, and 21 days after application, and the average data are presented in Table 1.

[0178] Control (%) = [(damage in control plot - damage in treated plot) / damage in control plot] x 100

[0179] [Table 1]

[0180] From the data presented in Table 1, it can be observed that compositions comprising elemental sulfur and acinonapyr according to embodiments of the present invention are synergistic in nature and effective in controlling Red Spider Mite (RSM) in tea. The synergistic compositions prepared according to embodiments of the present invention are also effective in treating mites compared to the individual applications of elemental sulfur, acinonapyr, and have been used commercially as insecticides for mites and untreated plots.

[0181] "Synergism" is as defined in the article entitled "Calculation of the synergistic and antagonistic responses of herbicide combinations" by Colby SR, published in Weeds, 1967, 15, pp. 20-22. The expected effect for a given combination of two active ingredients can be calculated as follows: E=X+Y-(XY / 100) In the formula: E = expected % effect of a mixture of two products X and Y at a defined dose. X = Observed % effect of product A Y = Observed % effect of Product B The synergy factor (SF) is calculated by the Abbott formula (Eq. (2) (Abbott, 1925)). SF = observed effect / expected effect Here, SF>1 for a synergistic reaction, SF<1 for an antagonistic reaction, and SF=1 for an additive reaction.

[0182] A synergistic effect of the combination can be inferred if the percentage yield or control effect (E) observed for the combination is greater than the expected percentage. An additive effect can only be inferred if the percentage effect observed for the combination is equal to the expected percentage, and an antagonistic effect of the combination can be inferred if the percentage effect observed for the combination is lower than the expected percentage.

[0183] For example, when comparing treatments T1 (60% sulfur + 6% acinonapyr WDG, according to an embodiment of the present invention), T2 (30% sulfur + 3% acinonapyr WDG, according to an embodiment of the present invention) with T4 (80% sulfur WDG) and T5 (6% acinonapyr EC) applied at the same dosage, it was found that 21 days after application, treatments T1 and T2 showed 93.26% and 91.57% control against mites, respectively, while treatments T4 and T5 showed 42.7% and 52.81% control. Furthermore, it was observed that treatment T3 (90% sulfur + 5% acinonapyr WP, according to an embodiment of the present invention), applied at a reduced dosage, showed better control against mites compared to treatments T3 and T4.

[0184] Additionally, when comparing treatments T1, T2, and T3 with T6, it was found that treatments T1, T2, and T3 provided better control of mites than treatment T5 (Hexythiazox 5.45% EC, a commercially available insecticide for mites). Thus, the combination of elemental sulfur in the form of WDG and WP (having particles in the size range of 0.1 microns to 50 microns) with acinonapyr in accordance with embodiments of the present invention is synergistic in nature, providing better control of pests compared to the application of the individual actives and commercial insecticides.

[0185] Field Test 2: Study of the Effect of a Composition Containing Elemental Sulfur and Acinonapyr on Chili A field trial was conducted in a commercially grown chili field in Guntur, Andhra Pradesh, to compare the efficacy of elemental sulfur and acinonapyr compositions in chili. The trial was conducted during the spring season in a randomized block design (RBD) with five treatments, including an untreated control. The compositions of the present invention were applied as foliar sprays using prescribed doses.

[0186] The chilli crop at the trial site was cultivated according to good agricultural practices.

[0187] [Experiment details] a) Test location: Guntur, Andhra Pradesh b) Crop: Chili (variety Sitara green chili) c) Study design: Randomized block design d) Pest: Red Spider Mite (RSM) e) Processing: 5 f) Plot size: 5m x 6m = 30 sq.m g) Transplant date: 5.07.2021 h) Applicable date: 10.09.2021 i) Application method: Foliar spray using a hollow cone nozzle j) Water volume used per hectare: 500L

[0188] Chilean RSM populations were recorded from the top five leaves of five randomly selected plants per replicate at the start of the study, and mites were recorded throughout the observation period, with the average data presented in Table 2:

[0189] [Table 2]

[0190] [Table 3]

[0191] It can be observed from the data presented in Table 2 that compositions containing elemental sulfur and acinonapyr prepared according to embodiments of the present invention are synergistic in nature and effective in controlling mites in chili. The percentage of mites was found to be lowest in plots treated with treatments T1 and T2, respectively, compared to the other treatments, indicating that the compositions of the present invention are superior in protecting chili crops from mites. For example, treatment T2 had 94% control after 21 days of application, while treatments T3 and T4 showed approximately 45% and 69.7%, respectively. Furthermore, chili yield was found to be highest with treatments T1 and T2 compared to treatments T3 and T4 and untreated plots. The percent increase in yield with treatments T1 and T2 was approximately 24.24% and 27.27%, respectively, while treatments T3 and T4 were approximately 12.12% and 6.01%, respectively. Thus, compositions comprising elemental sulfur and acinonapyr in various formulations having particles in the size range of 0.1 microns to 50 microns according to embodiments of the present invention can be found to be synergistic in nature, providing better control of pests and higher crop yields compared to application of the individual actives.

[0192] Furthermore, the inventors of the present invention also tested compositions of elemental sulfur and acinonapyr in various formulations on crops such as tomato, okra, and citrus brinjal. It was observed that the compositions of the present invention provided enhanced pest control compared to the application of the individual active ingredients. Furthermore, the compositions of the present invention also helped improve crop physiological characteristics such as crop yield, root length, plant height, fruit size, and foliage improvement. Thus, it was observed that the compositions of the present invention exhibited enhanced, effective, and superior performance in the field.

[0193] The inventors have further found that when applied to soil, the present composition not only releases active ingredients immediately, but also provides continuous sustained release throughout the entire life cycle of crops, thus providing effective crop protection and nutrient solution to crops.This is because the composition has specific properties, namely, when added to water, the composition disperses into particles of a specific size range, and has good suspendability, dispersibility and wettability for granules or powders, and good viscosity and suspendability for liquid compositions.The composition of the present invention also provides immediate release of active ingredients when applied to leaves or soil, strengthening crops and protecting them against pest attacks.Due to its ease of application, the composition is very economical for end users.

[0194] From the foregoing, it will be appreciated that many modifications and variations can be effected without departing from the true spirit and scope of the novel concepts of the present invention. It is to be understood that no limitation with respect to the specific embodiments illustrated is intended or should be inferred.

Claims

1. 1. An insecticidal composition comprising: Elemental sulfur in the range of 20% w / w to 90% w / w of the total composition; acinonapir present in the range of 0.1% w / w to 50% w / w of the total composition; at least one agrochemically acceptable excipient; An insecticidal composition comprising:

2. 10. The insecticidal composition of claim 1, wherein the composition comprises particles ranging in size from 0.1 microns to 50 microns.

3. 10. The insecticidal composition of claim 1, wherein the composition is in the form of a solid, liquid, or gel.

4. 4. The pesticidal composition of claim 3, wherein the solid composition is in at least one of the following forms: water-dispersible granules, extruded granules, water-disintegrating granules, dusting granules, spheronized granules, wettable powders, and water-dispersible granules of an encapsulated suspension.

5. 5. The insecticidal composition according to claim 4, wherein the water-disintegrable granules or the spreadable granules or the extruded granules or the spheronized granules are in the size range of 0.1 to 6 mm.

6. 5. The insecticidal composition of claim 4, wherein the water-dispersible granules or the water-dispersible granules of the encapsulated suspension are in the size range of 0.1 to 2.5 mm.

7. 4. The insecticidal composition of claim 3, wherein the liquid composition is in the form of a ZC composition which is a combination of a flowable concentrate, a liquid suspension, a suspoemulsion, an encapsulated suspension and a suspension concentrate.

8. 10. The pesticidal composition of claim 1, wherein the composition further comprises at least one active ingredient selected from macronutrients, micronutrients, biostimulants, fertilizers, pesticidal actives, plant growth regulators, algae, bacterial spores, and mixtures thereof.

9. 8. The pesticidal composition of claim 7, wherein the composition has a viscosity of from 10 cps to 3000 cps.

10. 8. The pesticidal composition of claim 7, wherein the composition has a residual injectability of less than 5%.

11. 8. The pesticidal composition of claim 4 or 7, wherein the suspendability of the composition is at least 30%.

12. 8. The pesticidal composition of claim 4 or 7, wherein the dispersibility of the composition is at least 30%.

13. 8. The pesticidal composition of claim 4 or 7, wherein the suspendability or dispersibility of the composition is at least 30% under accelerated storage conditions.

Citation Information

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