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四英国土壤中氯氰菊酯的提取和矿化。

The extractability and mineralisation of cypermethrin aged in four UK soils.

机构信息

Lancaster Environment Centre, Lancaster University, Lancaster, UK.

出版信息

Chemosphere. 2011 Jan;82(2):187-92. doi: 10.1016/j.chemosphere.2010.10.025. Epub 2010 Oct 30.

Abstract

Cypermethrin is a widely used insecticide that has caused concern due to its toxicity in the aquatic environment. As with all land applied pesticides, the most significant source of water pollution is from the soil, either due to leaching or washoff. The behaviour of cypermethrin in the soil controls the likelihood of future pollution incidents, with two of the most significant processes being the formation of bound residues and microbial degradation. The formation of bound residues and mineralisation was measured in four organically managed soils from the UK. The formation of bound residues was measured using three different extraction solutions, 0.01 M CaCl₂, 0.05 M HPCD and acetonitrile. Biodegradation was assessed by measurement of mineralisation of cypermethrin to CO₂. The formation of bound residues varied according to extraction method, soil type and length of ageing. In two of the four soils studied, acetonitrile extractability decreased from 100% initially to 12-14% following 100 d ageing. The extent of mineralisation increased after 10-21 d ageing, reaching 33% of remaining activity in one soil, however following 100 d ageing the extent of mineralisation was significantly reduced in three out of the four soils. As with the formation of bound residues, mineralisation was impacted by soil type and length of ageing.

摘要

氯菊酯是一种广泛使用的杀虫剂,由于其在水生环境中的毒性而引起关注。与所有施用于土地的农药一样,水污染的最主要来源是土壤,无论是由于淋溶还是冲刷。氯菊酯在土壤中的行为控制着未来污染事件发生的可能性,其中两个最重要的过程是形成结合残留和微生物降解。从英国的四种有机管理土壤中测量了氯菊酯的结合残留和矿化作用。使用三种不同的提取溶液(0.01 M CaCl₂、0.05 M HPCD 和乙腈)测量结合残留的形成。通过测量氯菊酯矿化为 CO₂来评估生物降解。结合残留的形成根据提取方法、土壤类型和老化时间而变化。在所研究的四种土壤中的两种中,乙腈的可提取性从最初的 100%下降到 100 天老化后的 12-14%。在 10-21 天老化后,矿化程度增加,在一种土壤中达到剩余活性的 33%,但在 100 天老化后,四种土壤中有三种的矿化程度显著降低。与结合残留的形成一样,矿化作用也受到土壤类型和老化时间的影响。

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