A01N37/34

CONTROL OF RESISTANT PESTS
20230292751 · 2023-09-21 ·

Methods of controlling pesticide resistant pests include exposing the pesticide resistant pests to a pest controlling amount of a triketone compound. Formulations and kits can include the triketone compound.

CONTROL OF RESISTANT PESTS
20230292751 · 2023-09-21 ·

Methods of controlling pesticide resistant pests include exposing the pesticide resistant pests to a pest controlling amount of a triketone compound. Formulations and kits can include the triketone compound.

AN INSECTICIDAL COMPOSITION FOR PEST CONTROL COMPRISING OF DIACYLHYDRAZINES

An insecticidal composition for pest control comprising diacylhyrazines. More particularly the present invention related to a synergistic agrochemical insecticidal composition comprising of bioactive amount of at least one insecticide from diacylhydrazines group; at least one insecticide from diamide or a pyridylpyrazole group; and at least one insecticidal compound selected from Acephate, Profenofos, Fipronil, Bifenthrin, lambda-cyhalothrin, Clothiandin, Dinotefuran, Thiamethoxam, Pymetrozine, Spinetoram, Spinosad, Emamectin benzoate, Novaluron, Indoxacarb, Azadirechtin. The present invention further relates to process for preparing the said compositions in specific ratio. The present invention further relates to the process for preparing the said composition along with at least one inactive excipient; and formulations thereof. The present invention further relates to the synergistic insecticidal compositions, wherein active ingredient present in fixed ratio shows synergy in an insecticidal activity.

AN INSECTICIDAL COMPOSITION FOR PEST CONTROL COMPRISING OF DIACYLHYDRAZINES

An insecticidal composition for pest control comprising diacylhyrazines. More particularly the present invention related to a synergistic agrochemical insecticidal composition comprising of bioactive amount of at least one insecticide from diacylhydrazines group; at least one insecticide from diamide or a pyridylpyrazole group; and at least one insecticidal compound selected from Acephate, Profenofos, Fipronil, Bifenthrin, lambda-cyhalothrin, Clothiandin, Dinotefuran, Thiamethoxam, Pymetrozine, Spinetoram, Spinosad, Emamectin benzoate, Novaluron, Indoxacarb, Azadirechtin. The present invention further relates to process for preparing the said compositions in specific ratio. The present invention further relates to the process for preparing the said composition along with at least one inactive excipient; and formulations thereof. The present invention further relates to the synergistic insecticidal compositions, wherein active ingredient present in fixed ratio shows synergy in an insecticidal activity.

Plant disease control composition and method for controlling plant disease by applying the same

Provided is a plant disease control composition having a broad spectrum against various plant pathogens, and shows excellent controlling effects (synergistic controlling effects) which cannot be expected from a single component alone. The plant disease control composition includes (Group a) at least one quinoline compound represented by the formula: ##STR00001##
(wherein R.sup.1, R.sup.2: an alkyl which may be substituted, an aryl which may be substituted, etc.; R.sup.3, R.sup.4: H, an alkyl which may be substituted, etc.; X: halogen, an alkyl which may be substituted, etc.; Y: halogen, alkyl, etc.; n: 0 to 4; m: 0 to 6) or a salt thereof, and at least one of fungicidal compounds selected from the group consisting of a Strobilurin series compound, a triazole series compound, etc., as effective ingredients.

Plant disease control composition and method for controlling plant disease by applying the same

Provided is a plant disease control composition having a broad spectrum against various plant pathogens, and shows excellent controlling effects (synergistic controlling effects) which cannot be expected from a single component alone. The plant disease control composition includes (Group a) at least one quinoline compound represented by the formula: ##STR00001##
(wherein R.sup.1, R.sup.2: an alkyl which may be substituted, an aryl which may be substituted, etc.; R.sup.3, R.sup.4: H, an alkyl which may be substituted, etc.; X: halogen, an alkyl which may be substituted, etc.; Y: halogen, alkyl, etc.; n: 0 to 4; m: 0 to 6) or a salt thereof, and at least one of fungicidal compounds selected from the group consisting of a Strobilurin series compound, a triazole series compound, etc., as effective ingredients.

Control of resistant pests
11712039 · 2023-08-01 · ·

Methods of controlling pesticide resistant pests include exposing the pesticide resistant pests to a pest controlling amount of a triketone compound. Formulations and kits can include the triketone compound.

Control of resistant pests
11712039 · 2023-08-01 · ·

Methods of controlling pesticide resistant pests include exposing the pesticide resistant pests to a pest controlling amount of a triketone compound. Formulations and kits can include the triketone compound.

Biocide blend for treating wellbores

A biocide blend can be used in an oil or gas operation. The biocide blend can include a first biocide of a formaldehyde-releasing biocide and a second biocide of a quaternary ammonium compound. The formaldehyde-releasing biocide can release formaldehyde after introduction into a wellbore. The first and second biocide can possess at least one property that is the same. The first biocide and/or the second biocide can maintain biocidal activity for extended periods of time in high salinity wellbore fluids, be thermally stable, and less expensive than other biocides.

Biocide blend for treating wellbores

A biocide blend can be used in an oil or gas operation. The biocide blend can include a first biocide of a formaldehyde-releasing biocide and a second biocide of a quaternary ammonium compound. The formaldehyde-releasing biocide can release formaldehyde after introduction into a wellbore. The first and second biocide can possess at least one property that is the same. The first biocide and/or the second biocide can maintain biocidal activity for extended periods of time in high salinity wellbore fluids, be thermally stable, and less expensive than other biocides.