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首页> 外文期刊>Soil Biology & Biochemistry >Field-scale study of the variability in pesticide biodegradation with soil depth and its relationship with soil characteristics.
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Field-scale study of the variability in pesticide biodegradation with soil depth and its relationship with soil characteristics.

机译:田间规模研究农药生物降解随土壤深度的变化及其与土壤特性的关系。

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摘要

The extent of within-field spatial variability of pesticide degradation was characterised in topsoil and subsoil, using the compounds isoproturon, bentazone and mecoprop, which are major contaminants of groundwater and surface freshwater in Europe. Twenty topsoil samples from 0 to 15 cm depth and twenty subsoil samples from 50 to 60 cm depth were collected from a single agricultural field within a 160x90 grid. It was shown that degradation rates of all compounds declined with soil depth. Variability of pesticide degradation rates, pesticide sorption and formation of non-extractable pesticide residues was higher in subsoil relative to topsoil. Furthermore, in the subsoil, there was variation in large scale soil physicochemical composition, which did not occur in topsoil. The greater variability in pesticide degradation rates in subsoil relative to topsoil could be the result of a greater range of degradation kinetics, which could reflect greater spatial variability in the distribution and/or activities of pesticide metabolising communities..
机译:在表层土壤和下层土壤中,农药降解的场内空间变异程度已在欧洲,地下水和地表淡水的主要污染物中使用了异丙隆,苯达松和甲丙酸。从160x90网格内的单个农田中收集了20个0至15 cm深度的表土样品和20个50至60 cm深度的底土样品。结果表明,所有化合物的降解率均随土壤深度的增加而降低。相对于表土,地下土壤中农药降解率,农药吸附和不可提取农药残留形成的变异性更高。此外,在下层土壤中,大规模的土壤理化组成存在变化,而在表层土壤中则没有。相对于表土,地下土壤中农药降解速率的更大变异性可能是降解动力学范围更大的结果,这可能反映了农药代谢群落分布和/或活动的更大空间变异性。

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