Insecticidal composition containing thiophanate-methyl and iminoctadine tris
A technology of biguanide trioctyl benzene sulfonate and thiophanate-methyl, which is applied in the directions of fungicides, biocides, biocides, etc., can solve the problem of harmonious development of unfavorable environments, increased residual risks, and shortened duration of validity. and other problems, to achieve the effect of reducing the dosage and cost of pesticides, excellent control effect, and improved bactericidal effect
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example 1
[0023] Physical measurement example 1: Toxicity determination of thiophanate-methyl and biguanide trioctylbenzenesulfonate compound to Penicillium citri
[0024] 1. Test object: Penicillium italicum [Latin scientific name: Penicillium italicum]
[0025] 2. Test method: refer to "Pesticide Bioassay Test Guidelines NY / T 1156.16-2008", using the turbidity method.
[0026] 3. Data statistical analysis: use SAS statistical software for analysis. Calculate the mycelia growth inhibition rate (%) according to the test data, and obtain the virulence regression equation, correlation coefficient (r), EC 50 and co-toxicity coefficient.
[0027] 4. Evaluation method: Refer to the "Pesticide Bioassay Test Guidelines NY / T 1156.6-2006", and evaluate the synergistic effect of drug mixture according to Sun & Johnson's co-toxicity coefficient method (CTC), that is, CTC≤80 is antagonism, 80<CTC <120 is an additive effect, and CTC≥120 is a synergistic effect.
[0028] 5. Results and Analysis ...
example 2
[0033] Physical measurement example 2: Toxicity determination of thiophanate-methyl and biguanide trioctylbenzenesulfonate compound to citrus anthracnose pathogen
[0034] 1. Test object: citrus anthracnose bacteria [Latin scientific name: Colletotrichum gloeosporioides Penz]
[0035] 2. Test method: refer to the "Pesticide Bioassay Test Guidelines NY / T 1156.2-2006", and use the drug-containing medium method.
[0036] 3. Statistical analysis of data: SAS 6.12 statistical software was used for analysis. Calculate the mycelia growth inhibition rate (%) according to the test data, and obtain the virulence regression equation, correlation coefficient (r), EC 50 and co-toxicity coefficient.
[0037] 4. Evaluation method: Refer to the "Pesticide Bioassay Test Guidelines NY / T 1156.2-2006", and evaluate the synergistic effect of drug mixture according to Sun & Johnson's co-toxicity coefficient method (CTC), that is, CTC≤80 is antagonism, and 80<CTC <120 is an additive effect, and C...
example 3
[0044] Physical measurement example 3: Toxicity determination of the combination of thiophanate-methyl and biguanide trioctylbenzenesulfonate to the pathogen of banana crown rot
[0045] 1. Test object: banana crown rot fungus [Latin scientific name: Fusarium semimitectum]
[0046] 2. Test method: refer to the "Pesticide Bioassay Test Guidelines NY / T 1156.2-2006", and use the drug-containing medium method.
[0047] 3. Data statistical analysis: use SAS statistical software for analysis. Calculate the mycelia growth inhibition rate (%) according to the test data, and obtain the virulence regression equation, correlation coefficient (r), EC 50 and co-toxicity coefficient.
[0048] 4. Evaluation method: Refer to the "Pesticide Bioassay Test Guidelines NY / T 1156.2-2006", and evaluate the synergistic effect of drug mixture according to Sun & Johnson's co-toxicity coefficient method (CTC), that is, CTC≤80 is antagonism, and 80<CTC <120 is an additive effect, and CTC≥120 is a syne...
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