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A comprehensive risk assessment of metals in riverine surface sediments across the rural-urban interface of a rapidly developing watershed

机译:在快速发展的流域的城乡交界处河流表面沉积物中金属的综合风险评估

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摘要

Metal contamination in aquatic environments is a severe global concern to human health and aquatic ecosystems. This study used several risk assessment indices, to evaluate metal (Cu, Zn, Pb, Cd and Cr) environmental risk of riverine surface sediments across the rural-urban interface of the rapidly developing Wen-Rui Tang River watershed in eastern China. Risk assessments were determined for 38 sites based on the potential ecological risk index (RI), consensus-based sediment quality guidelines (SQGs) and risk assessment code (RAC). Land-use cluster analysis showed that sediments were severely contaminated, especially for Cd, whose concentrations were similar to 100 times higher than background levels and had a high proportion in the bioaccessible fraction. According to RI, E-r(cd) was identified with extremely high risk potential, resulting in the highest ecological risk of Cluster 4 (industrial). Similarly, risk within Cluster 4 (industrial) was also ranked highest by SQGs assessment due to the high proportion of industrial land use. Zinc was determined with high risk due to its high concentration compared to its effect range medium (ERM) value. Discrepancies in predicting environmental risks from metals among the three indices were mainly attributed to the contrasting definitions of these metrics. Environmental risk uncertainty derived from spatial variation was further estimated by Monte Carlo simulation and ranked as: Zn Cd Cr Pb Cu. This comprehensive environmental risk assessment provides important information to guide remediation strategies for management of metal contamination at the watershed scale. (C) 2018 Elsevier Ltd. All rights reserved.
机译:水生环境中的金属污染是人类健康和水生生态系统严重关注的全球问题。这项研究使用了多个风险评估指标,以评估中国东部快速发展的温瑞汤河流域的城乡界面上河流表面沉积物的金属(铜,锌,铅,镉,铬和铬)环境风险。根据潜在的生态风险指数(RI),基于共识的沉积物质量准则(SQG)和风险评估代码(RAC)确定了38个地点的风险评估。土地利用群分析表明,沉积物受到了严重污染,特别是对于镉而言,其浓度约为背景水平的100倍,并且在生物可利用部分中所占比例很高。根据RI,E-r(cd)被确定为具有极高的潜在风险,从而导致第4类(工业)的最高生态风险。同样,由于工业用地的比例很高,因此在SQG评估中,类别4(工业)内的风险也排名最高。与有效范围介质(ERM)值相比,高浓度的锌被确定为高风险。这三个指数之间的金属环境风险预测差异主要归因于这些指标的不同定义。通过蒙特卡洛模拟进一步估算了由空间变化引起的环境风险不确定性,其排序为:Zn> Cd> Cr> Pb> Cu。这项全面的环境风险评估提供了重要信息,可指导在流域范围内管理金属污染的补救策略。 (C)2018 Elsevier Ltd.保留所有权利。

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