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减少农田硝酸盐淋失的可能性。

Possibilities for reducing nitrate leaching from agricultural land.

作者信息

Kirchmann Holger, Johnston A E Johnny, Bergström Lars F

机构信息

Swedish University of Agricultural Sciences, Department of Soil Sciences, Box 7014, SE-750 07 Uppsala, Sweden.

出版信息

Ambio. 2002 Aug;31(5):404-8. doi: 10.1579/0044-7447-31.5.404.

Abstract

Agricultural soil is a contributor of nitrate to natural waters. High nitrate levels in water leached from soils are related to high nitrate concentrations in drinking water, and excess levels change the ecological balance of rivers and lakes. In this paper, sound solutions to the major environmental issue of limiting nitrate leaching by modifying agricultural practices are discussed. The causes of nitrate leaching from agricultural land are briefly explained and existing measures for the reduction of nitrate losses are described, analyzed and evaluated. Reduction of nutrient leaching is not a question of organic or conventional farming, but rather of the introduction and use of appropriate countermeasures. We propose the following guiding principles to minimize leaching from agricultural soils. To some extent these principles require a new way of thinking: i) environmental indexing of fields and consideration of spatial variability within fields in relation to their contribution to leaching losses within a catchment; ii) reduction of nitrogen inputs to soil to levels slightly below those expected to give the optimum yield by applying less nitrogen fertilizer and by a further reduction in animal density; and iii) use of a range of counter-measures (catch crops, minimum tillage, control of biological processes, etc.) depending on how sensitive the farming system, soil and climate are to the risk of nitrate leaching.

摘要

农业土壤是天然水体硝酸盐的一个来源。从土壤中淋溶出的水中高硝酸盐含量与饮用水中的高硝酸盐浓度相关,并且过量水平会改变河流和湖泊的生态平衡。本文讨论了通过改变农业实践来限制硝酸盐淋溶这一主要环境问题的合理解决方案。简要解释了农业用地硝酸盐淋溶的原因,并对现有的减少硝酸盐损失的措施进行了描述、分析和评估。减少养分淋溶不是有机农业或传统农业的问题,而是引入和使用适当对策的问题。我们提出以下指导原则以尽量减少农业土壤中的淋溶。在某种程度上,这些原则需要一种新的思维方式:i)对田地进行环境索引,并考虑田内空间变异性及其对集水区内淋溶损失的贡献;ii)通过减少氮肥施用量和进一步降低养殖密度,将土壤中的氮输入量降低到略低于预期获得最佳产量的水平;iii)根据耕作系统、土壤和气候对硝酸盐淋溶风险的敏感程度,使用一系列对策(填闲作物、少耕、生物过程控制等)。

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