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Effects of UV-Light, Temperature and Storage on the Stability and Biological Effectiveness of Some Insecticides

机译:紫外线,温度和储存对某些杀虫剂稳定性和生物有效性的影响

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Effects of UV-Light, Temperature and Storage on the Stability and Biological Effectiveness of Some InsecticidesThe degradation and biological effectiveness of five insecticides, ES-Fenvalerate (Soumi Gold), pirimicarb (Afox), imidacloprid (Emax), buprofenzin (Ablloud) and methomyl (Methiolate) in their aqueous preparations and emulsifiable concentrates, on immature stages of whitefly insect Bemisia tabaci. when exposed to UV-light, two different temperatures and daylight and dark storage after exposure intervals was studied. The results indicated the degradation rates of the five tested insecticides varied according to the chemical structure, time of exposure and wavelength of UV-rays used. Of all the five insecticides, methomyl was the most affected by UV-rays. Losses of ES-Fenvalerate, pirimicarb, imidacloprid, buprofenzin and methomyl within this period were 11.30, 14.80, 29.03, 31.83 and 39%, respectively after one hour to UV-ray exposure. A significant increase in LC50 value was obtained when ES-Fenvalerate in aqueous preparation was exposed to UV-light for 6 hr. The LC50 values and their confidence ranges in aqueous preparations and emulsifiable concentrates were 107.5 ppm (51.7-199.2) and 93.10 ppm (48.3-150.4). The residual level of Fenvalerate, pirimicarb, imidacloprid, buprofenzin and methomyl were 13.52, 17.54 ppm; 12.67, 15.87 ppm; 11.78, 16.47 ppm; 11.38, 14.73 ppm; and 11.36, 11.83 ppm for two days exposed to daylight and dark storage. Insecticides could be arranged according to LC50 values at zero-time as follow: ES-Fenvalerate, pirimicarb, imidacloprid, buprofenzin and methomyl. The corresponding values of LC50 were 3.40, 15.4, 15.6, 16.2 and 23.5 ppm for daylight storage. On the other hand, the dark storage exposure for the tested insecticides could be arranged according to LC50 values as follow: ES-Fenvalerate, imidacloprid, pirimicarb, buprofenzin and methomyl. The corresponding LC50 were 3.20, 14.8, 14.9, 15.9 and 21.3 ppm, respectively. In general, the amount recovered after a one day, 45°C exposure were 14.63, 12.84, 12.79, 12.14 and 11.76 ppm, for ES-Fenvalerate, pirimicarb, imidacloprid, buprofenzin and methomyl, respectively. While the amounts recovered after a three day 45°C exposure were 9.28, 8.34, 7.76, 7.72 and 5.83 ppm for ES-Fenvalerate, pirimicarb, imidacloprid, buprofenzin and methomyl, respectively. Efficiency against whitefly insect, B. tabaci immature stages was affected when aqueous preparations of the five tested insecticides were stored at 45°C for one and three days, compared to those stored under normal condition of 25°C for the same periods of time. Generally it could be concluded that buprofenzin n and methomyl, were more affected by UV-light, storage and temperature than ES-Fenvalerate, pirimicarb, imidacloprid.
机译:紫外线,温度和储存对某些杀虫剂稳定性和生物有效性的影响五种杀虫剂ES-戊戊酸盐(Soumi Gold),吡虫威(Afox),吡虫啉(Emax),布洛芬嗪(Ablloud)和灭多威的降解和生物有效性(甲硫醇)的水性制剂和乳油,在粉虱昆虫烟粉虱的未成熟阶段。当暴露于紫外线下时,研究了两个不同的温度以及暴露间隔后的日光和黑暗存储。结果表明,五种测试杀虫剂的降解率随化学结构,暴露时间和所用紫外线的波长而变化。在所有五种杀虫剂中,灭多威受紫外线影响最大。暴露于紫外线一小时后,这段时间内ES-氰戊酸酯,吡虫威,吡虫啉,布洛芬嗪和灭多威的损失分别为11.30%,14.80%,29.03%,31.83%和39%。当将水性制剂中的ES-氰戊酸酯暴露于紫外线下6小时后,LC50值显着增加。在水性制剂和乳油中的LC50值及其置信范围为107.5 ppm(51.7-199.2)和93.10 ppm(48.3-150.4)。氰戊酸酯,吡虫威,吡虫啉,布洛芬嗪和灭多威的残留量分别为13.52、17.54 ppm; 12.67、15.87 ppm; 11.78,16.47 ppm; 11.38,14.73 ppm;和11.36、11.83 ppm,暴露在日光和黑暗中两天。杀虫剂可根据零时的LC50值进行排列,如下所示:ES-苯戊酸,吡虫威,吡虫啉,布洛芬嗪和灭多威。对于日光存储,LC50的相应值为3.40、15.4、15.6、16.2和23.5 ppm。另一方面,可根据LC50值安排被测杀虫剂的黑暗贮存暴露量:ES-苯甲戊酸,吡虫啉,吡虫威,丁苯丙草胺和灭多威。相应的LC50分别为3.20、14.8、14.9、15.9和21.3 ppm。通常,在45°C暴露1天后,ES-氰戊酸酯,吡虫威,吡虫啉,布洛芬嗪和灭多威的回收量分别为14.63、12.84、12.79、12.14和11.76 ppm。在三天的45°C暴露后回收的ES-氰戊酸酯,吡虫威,吡虫啉,布洛芬嗪和灭多威分别为9.28、8.34、7.76、7.72和5.83 ppm。当将五个测试的杀虫剂的水性制剂在45°C下储存1天和3天时相比,其在烟粉虱未成熟阶段的效率受到了影响,而在正常条件下在25°C下同时储存了这些制剂。通常可以得出结论,与ES-戊戊酸酯,吡虫威,吡虫啉相比,布洛芬嗪n和灭多威受紫外线,储存和温度的影响更大。

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