Patent classifications
A01N43/88
Aqueous electrolyte-containing adjuvant compositions, active ingredient-containing compositions and the use thereof
The invention relates to adjuvant compositions which contain a) one or more polyalkylene glycol sulfate salts or polyalkylene glycol sulfonate salts, b) water, and c) one or more electrolytes dissociated into ions. Said adjuvant compositions can be preferably used combined with pharmaceutical active ingredients, agrochemical active ingredients, biocides or repellents which have a high electrolyte content.
Aqueous electrolyte-containing adjuvant compositions, active ingredient-containing compositions and the use thereof
The invention relates to adjuvant compositions which contain a) one or more polyalkylene glycol sulfate salts or polyalkylene glycol sulfonate salts, b) water, and c) one or more electrolytes dissociated into ions. Said adjuvant compositions can be preferably used combined with pharmaceutical active ingredients, agrochemical active ingredients, biocides or repellents which have a high electrolyte content.
SUBSTITUTED THIAZOLE AROMATIC RING-BASED COMPOUND AND PREPARATION METHOD THEREFOR, HERBICIDAL COMPOSITION AND USE THEREOF
A substituted thiazole aromatic ring compound and a preparation method therefor, a herbicidal composition and use thereof. The substituted thiazole aromatic ring compound is as shown in general formula I:
##STR00001##
Wherein, Y represents halogen, halogenated alkyl, cyano, nitro or amino; Q represents
##STR00002##
M represents CH or N; X represents
##STR00003##
X.sub.1 represents O or S; X.sub.2 represents OX.sub.3, SX.sub.3 or N(X.sub.3).sub.2. The compound has excellent herbicidal activity against gramineous weeds, broadleaf weeds, and so on even at low application rates, and has high selectivity for crops.
COMPOSITION, AND PROCESS FOR COATING SEED MATERIAL WITH THE COMPOSITION
The present disclosure relates to a biosticker composition comprising: a) at least one polymer having a weight percentage in a range of 1-10% with respect to the composition; b) at least one starch having a weight percentage in a range of 2-15% with respect to the composition; c) at least one organic acid having a weight percentage in a range of 0.01-1% with respect to the composition; and d) at least one solvent having a weight percentage in a range of 1-10% with respect to the composition. The method of preparing the biosticker composition is also disclosed herein. The present disclosure also discloses a biocoat composition comprising the biosticker composition, at least one microbial culture, and at least one pesticide.
COMPOSITION, AND PROCESS FOR COATING SEED MATERIAL WITH THE COMPOSITION
The present disclosure relates to a biosticker composition comprising: a) at least one polymer having a weight percentage in a range of 1-10% with respect to the composition; b) at least one starch having a weight percentage in a range of 2-15% with respect to the composition; c) at least one organic acid having a weight percentage in a range of 0.01-1% with respect to the composition; and d) at least one solvent having a weight percentage in a range of 1-10% with respect to the composition. The method of preparing the biosticker composition is also disclosed herein. The present disclosure also discloses a biocoat composition comprising the biosticker composition, at least one microbial culture, and at least one pesticide.
Mic reduction with lithium ions
The invention relates to a process for reducing the minimum inhibitory concentration (MIC) of a biocide against at least one strain of bacteria and/or at least one strain of yeast and/or at least one strain of mould in an aqueous preparation. The invention further relates to the use of a water soluble source of lithium ions for reducing the minimum inhibitory concentration (MIC) of a biocide against at least one strain of bacteria and/or at least one strain of yeast and/or at least one strain of mould in an aqueous preparation.
Mic reduction with lithium ions
The invention relates to a process for reducing the minimum inhibitory concentration (MIC) of a biocide against at least one strain of bacteria and/or at least one strain of yeast and/or at least one strain of mould in an aqueous preparation. The invention further relates to the use of a water soluble source of lithium ions for reducing the minimum inhibitory concentration (MIC) of a biocide against at least one strain of bacteria and/or at least one strain of yeast and/or at least one strain of mould in an aqueous preparation.
SYNERGISTIC FUNGICIDAL MIXTURES AND COMPOSITIONS COMPRISING 5-FLUORO-4-IMINO-3-METHYL-1-TOSYL-3,4-DIHYDROPYRIMIDIN-2(1H)-ONE FOR FUNGAL CONTROL (MSI)
A fungicidal composition containing a fungicidally effective amount of the compound of Formula I:
##STR00001##
5-fluoro-4-imino-3-methyl-1-tosyl-3,4-dihydropyrimidin-2(1H)-one, and at least one fungicide to provide synergistic control of selected fungi wherein the at least one fungicide is a multi-site inhibitor or a strobilurin inhibitor.
SYNERGISTIC FUNGICIDAL MIXTURES AND COMPOSITIONS COMPRISING 5-FLUORO-4-IMINO-3-METHYL-1-TOSYL-3,4-DIHYDROPYRIMIDIN-2(1H)-ONE FOR FUNGAL CONTROL (MSI)
A fungicidal composition containing a fungicidally effective amount of the compound of Formula I:
##STR00001##
5-fluoro-4-imino-3-methyl-1-tosyl-3,4-dihydropyrimidin-2(1H)-one, and at least one fungicide to provide synergistic control of selected fungi wherein the at least one fungicide is a multi-site inhibitor or a strobilurin inhibitor.
SYNERGISTIC FUNGICIDAL MIXTURES AND COMPOSITIONS COMPRISING 5-FLUORO-4-IMINO-3-METHYL-1-TOSYL-3,4-DIHYDROPYRIMIDIN-2(1H)-ONE FOR FUNGAL CONTROL (MSI)
A fungicidal composition containing a fungicidally effective amount of the compound of Formula I:
##STR00001##
5-fluoro-4-imino-3-methyl-1-tosyl-3,4-dihydropyrimidin-2(1H)-one, and at least one fungicide to provide synergistic control of selected fungi wherein the at least one fungicide is a multi-site inhibitor or a strobilurin inhibitor.