Patent classifications
A01N39/04
Cellulose ether as a drift control agent and rainfastness agent
Disclosed is an agricultural composition comprising at least one agricultural chemical and at least one cellulose ether, wherein the cellulose ether is a nonionic methylethylhydroxyethyl cellulose (MEHEC) polymer as well as a method for reducing spray drift during the spraying of an aqueous solution. The method comprises combining the MEHEC polymer with at least one agricultural chemical to obtain the aqueous solution and spraying the aqueous solution. Also disclosed is a method for increasing resistance to rain wash off of an aqueous solution sprayed onto a surface.
Cellulose ether as a drift control agent and rainfastness agent
Disclosed is an agricultural composition comprising at least one agricultural chemical and at least one cellulose ether, wherein the cellulose ether is a nonionic methylethylhydroxyethyl cellulose (MEHEC) polymer as well as a method for reducing spray drift during the spraying of an aqueous solution. The method comprises combining the MEHEC polymer with at least one agricultural chemical to obtain the aqueous solution and spraying the aqueous solution. Also disclosed is a method for increasing resistance to rain wash off of an aqueous solution sprayed onto a surface.
Cellulose ether as a drift control agent and rainfastness agent
Disclosed is an agricultural composition comprising at least one agricultural chemical and at least one cellulose ether, wherein the cellulose ether is a nonionic methylethylhydroxyethyl cellulose (MEHEC) polymer as well as a method for reducing spray drift during the spraying of an aqueous solution. The method comprises combining the MEHEC polymer with at least one agricultural chemical to obtain the aqueous solution and spraying the aqueous solution. Also disclosed is a method for increasing resistance to rain wash off of an aqueous solution sprayed onto a surface.
Quaternized fatty amines, amidoamines and their derivatives from natural oil metathesis
Quaternary ammonium, betaine, or sulfobetaine compositions derived from fatty amines, wherein the fatty amine is made by reducing the amide reaction product of a metathesis-derived C.sub.10-C.sub.17 monounsaturated acid, octadecene-1,18-dioic acid, or their ester derivatives and a secondary amine, are disclosed. Quaternary ammonium, betaine, or sulfobetaine compositions derived from fatty amidoamines, wherein the amidoamine is made by reacting of a metathesis-derived C.sub.10-C.sub.17 monounsaturated acid, octadecene-1,18-dioic acid, or their ester derivatives and an aminoalkyl-substituted tertiary amine, are also disclosed. The quaternized compositions are advantageously sulfonated or sulfitated. In one aspect, the ester derivative of the C.sub.10-C.sub.17 monounsaturated acid or octadecene-1,18-dioic acid is a lower alkyl ester. In other aspects, the ester derivative is a modified triglyceride made by self-metathesis of a natural oil or an unsaturated triglyceride made by cross-metathesis of a natural oil with an olefin. The quaternary ammonium, betaine, and sulfobetaine compositions and their sulfonated or sulfitated derivatives are valuable for a wide variety of end uses, including cleaners, fabric treatment, hair conditioning, personal care (liquid cleansing products, conditioning bars, oral care products), antimicrobial compositions, agricultural uses, and oil field applications.
Quaternized fatty amines, amidoamines and their derivatives from natural oil metathesis
Quaternary ammonium, betaine, or sulfobetaine compositions derived from fatty amines, wherein the fatty amine is made by reducing the amide reaction product of a metathesis-derived C.sub.10-C.sub.17 monounsaturated acid, octadecene-1,18-dioic acid, or their ester derivatives and a secondary amine, are disclosed. Quaternary ammonium, betaine, or sulfobetaine compositions derived from fatty amidoamines, wherein the amidoamine is made by reacting of a metathesis-derived C.sub.10-C.sub.17 monounsaturated acid, octadecene-1,18-dioic acid, or their ester derivatives and an aminoalkyl-substituted tertiary amine, are also disclosed. The quaternized compositions are advantageously sulfonated or sulfitated. In one aspect, the ester derivative of the C.sub.10-C.sub.17 monounsaturated acid or octadecene-1,18-dioic acid is a lower alkyl ester. In other aspects, the ester derivative is a modified triglyceride made by self-metathesis of a natural oil or an unsaturated triglyceride made by cross-metathesis of a natural oil with an olefin. The quaternary ammonium, betaine, and sulfobetaine compositions and their sulfonated or sulfitated derivatives are valuable for a wide variety of end uses, including cleaners, fabric treatment, hair conditioning, personal care (liquid cleansing products, conditioning bars, oral care products), antimicrobial compositions, agricultural uses, and oil field applications.
Herbicide Compatibility Improvement
A herbicidal composition comprises an aqueous solution of a plurality of salts of glyphosate wherein said glyphosate is in anionic form accompanied by low molecular weight non-amphiphilic cations, wherein a major amount but less than 100% of the low molecular weight non-amphiphilic cations are potassium cations, and wherein the composition has a measured pH of at least about 4.8.
Herbicide Compatibility Improvement
A herbicidal composition comprises an aqueous solution of a plurality of salts of glyphosate wherein said glyphosate is in anionic form accompanied by low molecular weight non-amphiphilic cations, wherein a major amount but less than 100% of the low molecular weight non-amphiphilic cations are potassium cations, and wherein the composition has a measured pH of at least about 4.8.
USE OF A BLEND, ADJUVANT COMPOSITION FOR DRIFT REDUCTION, USE THEREOF, AGROCHEMICAL FORMULATION AND SPRAY MIX
This invention describes an adjuvant composition comprising a blend containing fatty acid esters with an alkoxylated polyol for drift reduction during the application of agrochemical product. This invention further describes the incorporation of this adjuvant composition in agrochemical formulations or the addition thereof in a step prior to its application, directly in the spray mix. The adjuvant composition described in this invention is compatible with a great variety of pesticides and inert components used in agrochemical compositions and proved to be able of reducing the formation of fine droplets, responsible for the formation of drift in more than one type of nozzle, without increasing the relative amplitude of the droplet spectrum, thus avoiding compromising the effectiveness of the active ingredient.
USE OF A BLEND, ADJUVANT COMPOSITION FOR DRIFT REDUCTION, USE THEREOF, AGROCHEMICAL FORMULATION AND SPRAY MIX
This invention describes an adjuvant composition comprising a blend containing fatty acid esters with an alkoxylated polyol for drift reduction during the application of agrochemical product. This invention further describes the incorporation of this adjuvant composition in agrochemical formulations or the addition thereof in a step prior to its application, directly in the spray mix. The adjuvant composition described in this invention is compatible with a great variety of pesticides and inert components used in agrochemical compositions and proved to be able of reducing the formation of fine droplets, responsible for the formation of drift in more than one type of nozzle, without increasing the relative amplitude of the droplet spectrum, thus avoiding compromising the effectiveness of the active ingredient.
USE OF A BLEND, ADJUVANT COMPOSITION FOR DRIFT REDUCTION, USE THEREOF, AGROCHEMICAL FORMULATION AND SPRAY MIX
This invention describes an adjuvant composition comprising a blend containing fatty acid esters with an alkoxylated polyol for drift reduction during the application of agrochemical product. This invention further describes the incorporation of this adjuvant composition in agrochemical formulations or the addition thereof in a step prior to its application, directly in the spray mix. The adjuvant composition described in this invention is compatible with a great variety of pesticides and inert components used in agrochemical compositions and proved to be able of reducing the formation of fine droplets, responsible for the formation of drift in more than one type of nozzle, without increasing the relative amplitude of the droplet spectrum, thus avoiding compromising the effectiveness of the active ingredient.