Insecticidal composition and application thereof in pest control
A pesticidal composition and technology for controlling pests, applied in the fields of application, pesticides, biocides, etc., can solve the problems of few types of pests and single application method
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Embodiment 1
[0059] Calculate the toxicity index and co-toxicity coefficient (CTC) of the drug by calculating the co-toxicity coefficient of the compound according to the toxicity index.
[0060]
[0061] Theoretical toxicity index (TTI) = ∑ (the toxicity index TI of each single agent × the percentage of single agent in the mixture)
[0062]
[0063] Experimental judgment basis:
[0064] When CTC≤80, the composition exhibits antagonistic effect; when 80
[0065] Mix 2-chloro-5-((4-phenoxyphenoxy)methyl)thiazole and spirotetramat at a weight ratio of 60:1 to 1:60 to obtain various compositions, select several specific The composition corresponding to the weight ratio measures its toxicity to cotton aphids, and the test results are shown in Table 1:
[0066] Table 1 Comparison of toxicity test results against cotton aphids
[0067]
[0068] Analysis of experimental result...
Embodiment 2
[0076] Experimental effect calculation method and experimental judgment basis: the same as in Example 1.
[0077] Mix 2-chloro-5-((4-phenoxyphenoxy)methyl)thiazole and spirotetramat at a weight ratio of 60:1 to 1:60 to obtain various compositions, select several specific The composition corresponding to the weight ratio measures its toxic effect on Bemisia tabaci, and the test results are as shown in Table 2:
[0078] Table 2 Comparison of the virulence test results of Bemisia tabaci
[0079]
[0080] Analysis of experimental results: It can be seen from Table 2 that:
[0081] 1) 2-Chloro-5-((4-phenoxyphenoxy)methyl)thiazole and spirotetramat in the weight range of 60:1-1:60, the measured toxicity index (ATI) is high in toxicity index (TTI). Especially 2-chloro-5-((4-phenoxyphenoxy)methyl)thiazole and spirotetramat in the weight ratio range of 20:1-1:60, ATI is much higher than TTI, indicating that the increase The effect is obvious.
[0082] 2) 2-chloro-5-((4-phenoxyp...
Embodiment 3
[0088] Experimental effect calculation method and experimental judgment basis: the same as in Example 1.
[0089] Mix 2-chloro-5-((4-phenoxyphenoxy)methyl)thiazole and spirotetramat at a weight ratio of 60:1 to 1:60 to obtain various compositions, select several specific The composition corresponding to the weight ratio measures its toxic effect on thrips, and the test results are shown in Table 3:
[0090] Table 3 compares the toxicity test results to thrips
[0091]
[0092]
[0093] Analysis of experimental results: It can be seen from Table 3 that:
[0094] 1) 2-Chloro-5-((4-phenoxyphenoxy)methyl)thiazole and spirotetramat in the weight range of 60:1-1:60, the measured toxicity index (ATI) is high in toxicity index (TTI). Especially 2-chloro-5-((4-phenoxyphenoxy)methyl)thiazole and spirotetramat in the weight ratio range of 8:1-1:20, ATI is much higher than TTI, indicating that the increase The effect is obvious.
[0095] 2) 2-chloro-5-((4-phenoxyphenoxy)methyl)...
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