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野生动物对复合污染物的脆弱性和风险图。

Wildlife vulnerability and risk maps for combined pollutants.

机构信息

Alterra, Wageningen UR, PO Box 47, 6700 AA Wageningen, The Netherlands.

出版信息

Sci Total Environ. 2010 Aug 15;408(18):3891-8. doi: 10.1016/j.scitotenv.2009.11.018. Epub 2010 Jan 8.

Abstract

Ecological risk and vulnerability maps can be used to improve the analysis of pollutant risks and communication to stakeholders. Often, such maps are made for one pollutant at the time. We used the results of wildlife vulnerability analysis, a novel trait-based risk assessment approach, to map overall vulnerability of habitats in Denmark to various metals and one insecticide. These maps were combined with maps of estimated soil concentrations for the same compounds divided by their Maximum Permissible Concentrations. This combination yielded relative risk maps that can be used to assess where the highest risk conditions to wildlife from these individual pollutants in Denmark occur (hot spot identification). In order to show how cumulative risk maps can be made, the maps of the individual pollutants were combined assuming different mechanisms of joint toxicity: no addition, concentration addition, antagonism and synergism. The study demonstrated that with an accurate set of geographical and ecological data one can use the results of vulnerability analysis to make relevant ecological risk maps that show hot spot areas for risks of single or cumulative risks from soil pollutants.

摘要

生态风险和脆弱性图可用于改进污染物风险分析和与利益相关者的沟通。通常,此类地图是针对一种污染物绘制的。我们使用野生动物脆弱性分析的结果(一种基于新特性的风险评估方法)来绘制丹麦各种金属和一种杀虫剂对栖息地的总体脆弱性地图。这些地图与同一化合物的估计土壤浓度地图相结合,这些化合物的浓度除以其最大允许浓度。这种组合产生了相对风险地图,可以用来评估丹麦单个污染物对野生动物的最高风险条件(热点识别)发生的位置。为了展示如何制作累积风险图,我们假设不同的联合毒性机制(无加性、浓度加性、拮抗作用和协同作用)来组合单个污染物的地图。该研究表明,通过一套准确的地理和生态数据,可以利用脆弱性分析的结果来制作相关的生态风险图,这些图显示了来自土壤污染物的单一或累积风险的热点区域。

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