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首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Effect of nitrogen on the degradation of cypermethrin and its metabolite 3-phenoxybenzoic acid in soil
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Effect of nitrogen on the degradation of cypermethrin and its metabolite 3-phenoxybenzoic acid in soil

机译:氮对氯氰菊酯及其代谢产物3-苯氧基苯甲酸在土壤中的降解作用

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摘要

Increasing use of pyrethroid insecticides has resulted in concerns regarding potential effects or, human health and ecosystems. Cypermethrin and its metabolite 3-phenoxybenzoic acid (PBA) have exerted adverse biological impacts oil the environment; therefore, it is critically important to develop different methods to enhance their degradation. In this study, incubation experiments were conducted rising samples of an Aquic Inceptisol supplied with nitrogen (N) in the form of NH4NO3 at different, levels to investigate the effect of nitrogen on the degradation of cypermethrin and PBA in soil. The results indicated that appropriate N application can promote the degradation of cypermethrin and PBA in soil. The maximum degradation rates were 80.0% for cypermethrin after 14 days of incubation in the treatment with N at a rate of 122.1 kg ha(-1) and 41.0% for PBA after 60 days of incubation in the treatment with N at a rate of 182.7 kg ha(-1). The corresponding rates in the treatments without nitrogen were 62.7% for cypermethrin and 27.8% for PBA. However, oversupplying N significantly reduced degradation of these compounds. Enhancement of degradation could be explained by the stimulation of microbial activity after the addition of N. In particular, dehydrogenase activities in the soil generally increased with the addition of N, except in the soil where N was applied at the highest level. The lower degradation rate measured in the treatment with an oversupply of N may be attributed to the microbial metabolism shifts induced by high N.
机译:拟除虫菊酯类杀虫剂的日益使用引起人们对潜在影响或人类健康和生态系统的担忧。氯氰菊酯及其代谢物3-苯氧基苯甲酸(PBA)对环境产生了不利的生物影响;因此,开发不同方法以增强其降解至关重要。在这项研究中,进行了温育实验,研究了以不同水平的NH4NO3形式供给氮(N)的Aquic Inceptisol的上升样品,以研究氮对土壤中氯氰菊酯和PBA降解的影响。结果表明,适当施用氮肥可促进土壤中氯氰菊酯和PBA的降解。氯氰菊酯在N处理下孵育14天后最大降解率为80.0%,在N处理下以182.7孵育后60天在N处理下的PBA降解率为41.0%千克公顷(-1)。氯氰菊酯无氮处理的相应比例为62.7%,PBA为27.8%。但是,过量供应N会大大降低这些化合物的降解。氮的添加可以通过刺激微生物活性来解释降解的增强。特别是,土壤中的脱氢酶活性通常随氮的添加而增加,但在土壤中以最高水平施用氮的情况除外。在供过于求的氮的处理中测得的较低的降解率可能归因于高氮诱导的微生物代谢变化。

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