Pesticidal suspended seed coating capable of preventing diseases
A technology for suspended seed coating, insecticide and disease prevention, applied in the field of pesticides, can solve the problems of large pesticide residues in crops, unfavorable human health, and single control spectrum, and achieve the effects of long special effect period, good control effect, and obvious synergy.
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example 116
[0026] Example 116.2% Difenoconazole Clothianidin Suspension Seed Coating
[0027] Difenoconazole 16%, clothianidin 0.2%, polyethylene glycol 3.5%, magnesium aluminum silicate 1.5%, animal glue 6.5%, silicone defoamer 0.8%, fatty alcohol polyoxyethylene ether 2%, Add 3.5% dodecylbenzenesulfonate, 1.5% FGR-13, and deionized water to 100% by weight to prepare a 16.2% difenoconazole·clothianidin suspension seed coating.
[0028] Replace clothianidin with thiacloprid and also can be a new embodiment.
example 224
[0029] Example 224.3% Difenoconazole Clothianidin Suspension Seed Coating
[0030] Difenoconazole 0.3%, clothianidin 24%, glycerin 0.5%, sodium carboxymethylcellulose 0.5%, polyacrylamide 5%, C 8~10 Add 0.5% of fatty alcohols, 1% of alkylphenol polyoxyethylene ether, polyoxyethylene fatty acid, 0.1% of basic rose essence, and deionized water to 100% by weight to obtain 24.3% of difenoconazole·thiazole Amine suspension seed coating.
[0031] Replace clothianidin with thiacloprid and also can be a new embodiment.
example 36
[0032] Example 36.1% difenoconazole clothianidin suspension seed coating
[0033] Difenoconazole 0.1%, clothianidin 6%, sodium carboxymethylcellulose 0.5%, polyacrylamide 5%, C 8~10 0.5% of fatty alcohols, 1% of alkylphenol polyoxyethylene ether, polyoxyethylene fatty acid, 0.1% of rhodamine alkaline, and deionized water are added to 100% by weight to prepare 6.1% of difenoconazole Thiaclodia Amine suspension seed coating.
[0034] Replace clothianidin with thiacloprid and also can be a new embodiment.
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