A kind of microemulsion for chrysanthemum
A technology of microemulsion and chrysanthemum is applied in the field of microemulsion for preventing and controlling chrysanthemum anthracnose, which can solve the problems of exceeding the standard, unstable active ingredients of raw materials, and heavy metal content of pesticide residues in medicinal materials, and achieves good crop safety, enhanced prevention and treatment. Action, effect of fewer doses
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Embodiment 1
[0023] 20% difenoconazole and allicin microemulsion
[0024] Each raw material component is by weight percentage:
[0025] Difenoconazole 19.5%
[0026] Allicin 0.5%
[0027] Naphthalenesulfonic acid formaldehyde condensate sodium salt 7%
[0028] Pull open powder BX 6%
[0029] N,N-Dimethylformamide 8%
[0030] Phenylphenol polyoxyethyl ether phosphate 5%
[0031] C 8-10 Fatty alcohols 0.2%
[0032] Gum Arabic 0.05%
[0033] Glycerol 1.8%
[0034] Deionized water was added to 100%.
[0035] A microemulsion product suitable for agricultural use is prepared by applying conventional pesticide processing technology to the above-mentioned ingredients. The co-toxicity coefficient of difenoconazole and allicin in this example is 256.2.
[0036] The microemulsion that the embodiment of the present invention 1 is obtained is used for preventing and treating chrysanthemum anthracnose, and chrysanthemum anthracnose morbidity initial stage spraying, active ingredient dosage is...
Embodiment 2
[0038] 30% difenoconazole and allicin microemulsion
[0039] Each raw material component is by weight percentage:
[0040] Difenoconazole 29.9%
[0041] Allicin 0.1%
[0042] Naphthalenesulfonic acid formaldehyde condensate sodium salt 6%
[0043] Pull open powder BX 8%
[0044] N,N-Dimethylformamide 5%
[0045] Phenylphenol polyoxyethyl ether phosphate 4%
[0046] C 8-10 Fatty alcohols 0.3%
[0047] Gum Arabic 0.08%
[0048] Glycerol 1%
[0049] Deionized water was added to 100%.
[0050] A microemulsion formulation suitable for agricultural use is prepared by applying conventional pesticide processing technology to the above-mentioned ingredients. The co-toxicity coefficient of difenoconazole and allicin in this example is 232.27.
[0051] The microemulsion that the embodiment of the present invention 2 is obtained is used for preventing and treating chrysanthemum anthracnose, and chrysanthemum anthracnose morbidity initial stage spraying, active ingredient dosage...
Embodiment 3
[0053] 16% difenoconazole and allicin microemulsion
[0054] Each raw material component is by weight percentage:
[0055] Difenoconazole 15%
[0056] Allicin 1%
[0057]Naphthalenesulfonic acid formaldehyde condensate sodium salt 8%
[0058] Pull open powder BX 6%
[0059] N,N-Dimethylformamide 5%
[0060] Phenylphenol polyoxyethyl ether phosphate 7%
[0061] C 8-10 Fatty alcohols 0.5%
[0062] Gum Arabic 0.1%
[0063] Glycerol 2.5%
[0064] Deionized water was added to 100%.
PUM
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