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砂质土壤中微生物活性和土壤性质的田间尺度变化与农药矿化及吸附的关系

Field-scale variation in microbial activity and soil properties in relation to mineralization and sorption of pesticides in a sandy soil.

作者信息

Vinther F P, Brinch U C, Elsgaard L, Fredslund L, Iversen B V, Torp S, Jacobsen C S

机构信息

Univ. of Aarhus, Faculty of Agricultural Sciences, Inst. of Agroecology and Environment, DK-8830 Tjele, Denmark.

出版信息

J Environ Qual. 2008 Aug 8;37(5):1710-8. doi: 10.2134/jeq2006.0201. Print 2008 Sep-Oct.

Abstract

Pesticides applied to agricultural soils are subject to environmental concerns because leaching to groundwater reservoirs and aquatic habitats may occur. Knowledge of field variation of pesticide-related parameters is required to evaluate the vulnerability of pesticide leaching. The mineralization and sorption of the pesticides glyphosate and metribuzin and the pesticide degradation product triazinamin in a field were measured and compared with the field-scale variation of geochemical and microbiological parameters. We focused on the soil parameters clay and organic carbon (C) content and on soil respiratory and enzymatic processes and microbial biomass. These parameters were measured in soil samples taken at two depths (Ap and Bs horizon) in 51 sampling points from a 4-ha agricultural fine sandy soil field. The results indicated that the spatial variation of the soil parameters, and in particular the content of organic C, had a major influence on the variability of the microbial parameters and on sorption and pesticide mineralization in the soil. For glyphosate, with a co-metabolic pathway for degradation, the mineralization was increased in soils with high microbial activity. The spatial variability, expressed as the CV, was about five times higher in the Bs horizon than in the Ap horizon, and the local-scale variation within 100 m(2) areas were two to three times lower than the field-scale variation within the entire field of about 4 ha.

摘要

施用于农业土壤的农药会引发环境问题,因为它们可能会渗入地下水库和水生栖息地。为了评估农药淋溶的脆弱性,需要了解与农药相关参数的田间变化情况。对农田中农药草甘膦、嗪草酮以及农药降解产物三嗪氨基的矿化作用和吸附作用进行了测定,并与地球化学和微生物学参数的田间尺度变化进行了比较。我们重点关注了土壤参数粘粒和有机碳(C)含量,以及土壤呼吸、酶促过程和微生物生物量。在一块4公顷的农业细砂质土壤田块的51个采样点,对取自两个深度(Ap层和Bs层)的土壤样本进行了这些参数的测定。结果表明,土壤参数的空间变异性,尤其是有机碳含量,对微生物参数的变异性以及土壤中的吸附和农药矿化作用有重大影响。对于具有共代谢降解途径的草甘膦来说,在微生物活性高的土壤中其矿化作用增强。以变异系数(CV)表示的空间变异性在Bs层比在Ap层高约五倍,100平方米区域内的局部尺度变化比约4公顷整块田地的田间尺度变化低两到三倍。

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