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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Degradation of pesticides in biobeds: The effect of concentration and pesticide mixtures
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Degradation of pesticides in biobeds: The effect of concentration and pesticide mixtures

机译:生物床中农药的降解:浓度和农药混合物的影响

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摘要

Biobeds aim to create an environment whereby any pesticide spills are retained and then degraded, thus reducing the potential for surface or groundwater contamination. Biobeds may receive high concentrations of relatively complex mixtures of pesticides. The effects of concentration and pesticide interaction on degradation rate were therefore investigated. At concentrations up to 20 times the maximum recommended application rate for isoproturon and chlorothalonil, the rate of degradation in topsoil and biomix decreased with increasing concentration. With the exception of isoproturon at concentrations above 11 mg kg(-1), degradation was quicker in biomix (a composted mixture of topsoil, compost, and wheat straw) than in topsoil. One possible explanation for faster isoproturon degradation in topsoil as compared to biomix may be that previous treatments of isoproturon applied to the field soil as part of normal agricultural practices had resulted in proliferation of microbial communities specifically adapted to use isoproturon as an energy source. Such microbial adaptation could enhance the performance of a biobed. Studies with a mixture of isoproturon and chlorothalonil showed that interactions between pesticides are possible. In biomix, the degradation of either isoproturon or chlorothalonil was unaffected by the presence of the other pesticide, whereas in topsoil, isoproturon DT50 values increased from 18.5 to 71.5 days in the presence of chlorothalonil. These studies suggest that biobeds appear capable of treating high concentrations of more than one pesticide.
机译:生物床的目的是创造一种环境,使任何农药溢出物得以保留并随后降解,从而降低地表或地下水污染的可能性。生物床可能会接受高浓度的相对复杂的农药混合物。因此,研究了浓度和农药相互作用对降解速率的影响。在异丙隆和百菌清的最大推荐施用量达到20倍的浓度下,表土和生物混合物的降解率随浓度的增加而降低。除了异丙隆浓度高于11 mg kg(-1)以外,生物混合物(表土,堆肥和麦草的堆肥混合物)的降解速度快于表土。与生物混合物相比,表土中异丙隆的更快降解的一种可能解释可能是,以前作为常规农业实践一部分应用于田间土壤的异丙隆处理导致微生物种群的扩散,这些微生物特别适合使用异丙隆作为能源。这种微生物适应性可以增强生物床的性能。用异丙隆和百菌清的混合物进行的研究表明,农药之间可能发生相互作用。在生物混合物中,异丙隆或百菌清的降解不受其他农药的存在的影响,而在表土中,百菌清中的DT50值从18.5天增加到71.5天。这些研究表明,生物床似乎能够处理高浓度的一种以上的农药。

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