首页> 外文期刊>Geoderma: An International Journal of Soil Science >Geostatistical modelling of heavy metal contamination in the topsoil of Guadiamar river margins (S Spain) using a stochastic simulation technique.
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Geostatistical modelling of heavy metal contamination in the topsoil of Guadiamar river margins (S Spain) using a stochastic simulation technique.

机译:使用随机模拟技术对瓜迪亚玛尔河边缘(西班牙)表层土壤中重金属污染进行地统计学建模。

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摘要

This paper presents a methodology to evaluate and map environmental hazard and characterize environmental impact of heavy metals in Guadiamar river margins (South of Spain) contaminated by the Aznalcollar mining spill. This methodology accounts for uncertainties in the mapping of the probability of soil contamination with different heavy metals and is based on a co-simulation technique using direct sequential simulation of a multivariate set of variables. Each variable is simulated based on primary data - the heavy metal concentrations in the soil - and on secondary data, consisting of a previously simulated map of one of the heavy metals. Using several realizations of the simulated multivariate set, a "hazard" index was calculated for each pixel of the study area, based on the simultaneous proportions (joint probabilities) of different levels of all metals. Finally, the intersection of the hazard map, based on the joint dispersion of all contaminants, with the environmental impact map for the different ecosystems, resulted in environmental hazard maps for the river margins. The performances of the multivariate sets of co-simulated variables were compared considering two extreme alternatives: (i) the soil is considered in need of treatment if all 5 heavy metals simultaneously exceed their concentration limit value at the same location; (ii) the soil is considered in need of treatment if at least one heavy metal exceeds its concentration limit at the same location..
机译:本文介绍了一种方法,用于评估和绘制环境危害图,并描述受到Aznalcollar采矿泄漏污染的瓜迪亚马尔河边缘(西班牙南部)的重金属对环境的影响。该方法论解决了不同重金属污染土壤的可能性图的不确定性,它是基于使用多变量集的直接顺序模拟的协同模拟技术。每个变量都是根据主要数据(土壤中的重金属浓度)和次要数据(包括先前模拟的一种重金属图)进行模拟的。使用模拟多元集的几种实现,基于所有金属不同含量的同时比例(联合概率),为研究区域的每个像素计算了“危险”指数。最后,基于所有污染物的联合扩散,危害图与不同生态系统的环境影响图的交集,得出了河沿岸的环境危害图。比较了两个共同变量的多元变量组的性能,并考虑了两种极端的选择:(i)如果所有5种重金属同时超过其同一位置的浓度极限值,则认为土壤需要处理; (ii)如果至少一种重金属在同一位置超过其浓度极限,则认为该土壤需要处理。

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