Bactericidal composition including tridemorph
A technology of tridemorpholine and its composition, which is applied in the field of agricultural fungicides, can solve the problems of resistance occurrence and drug efficacy decline, achieve good effect, slow down the generation of drug resistance, and reduce the dosage and cost per mu.
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[0082] 1. Preparation of suspoemulsion
[0083] When the composition is made into a suspoemulsion, the following components are included: 1-40% of active ingredient A, 1-40% of active ingredient B, 2-12% of emulsifier, 2-10% of dispersing wetting agent, 0.1-2% of defoamer %, thickener 0.1~2%, antifreeze 0.1~8%, stabilizer 0.05~3%, water to 100%.
[0084] The dispersant, defoamer, thickener, antifreeze, and stabilizer in the above-mentioned formula material are mixed uniformly through high-speed shearing, and the active ingredient A is added, and ball milled in a ball mill for 2 to 3 hours to make the particle size all Below 5 μm, a suspension is prepared, and then the active ingredient B original drug, emulsifier and various auxiliaries are directly emulsified into the suspending agent with a high-speed agitator to prepare the suspoemulsion product of the present invention.
Embodiment 1
[0085] Example 1 Azoxystrobin 20%, Tridecamorpholine 30%, OP-10 Phosphate 8%, Fatty Acid Polyoxyethylene 4%, Sapindus japonica Powder 5%, Silicone Compound 0.1%, Hydroxyethyl Fiber 0.1% azoxystrobin, 2% ethylene glycol, and deionized water were added to 100%, and mixed to obtain 50% azoxystrobin·tridecamorpholine suspoemulsion.
Embodiment 2
[0086] Example 2 Pyraclostrobin 20%, Tridecamorpholine 25%, Polycarboxylate 2%, Calcium Alkylbenzenesulfonate 5%, Sodium Lauryl Sulfate 2%, Silicone Compound 0.1%, Polycarboxylate Ethylene glycol 0.5%, glycerol 4%, deionized water were added to 100%, and mixed to obtain 45% pyraclostrobin·tridecamorpholine suspoemulsion.
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