首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Contamination of heavy metals and isotopic tracing of Pb in intertidal surface sediments of Jinjiang River Estuary, SE China
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Contamination of heavy metals and isotopic tracing of Pb in intertidal surface sediments of Jinjiang River Estuary, SE China

机译:中国晋江河口跨境地表沉积物重金属污染和同位素追踪

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摘要

Contamination of 14 heavy metals and isotopic tracing of Pb were studied in the intertidal surface sediments of Jinjiang River Estuary, southeast China. Concentrations of the heavy metals in the sediments decrease as Fe > Ti > Mn > Zn > Cu > Cr > Pb > V > Ni > Sn > Co > Sb > Cd > Hg. Except Fe, Ti and V, the other elements show higher concentrations than their background values at most sampling sites. The assessment results of geo-accumulation index and potential ecological risk index indicate that the intertidal surface sediments are polluted by some heavy metals (Cd, Hg, Cu, Mn, Zn, Sb, Sn, Pb, Cr, Ni and Co) and show very high ecological risk with the main contributors of Cd and Hg. Results of multivariate statistic analysis suggest that Fe, V, Ti and Cr are mainly influenced by natural sources; Cu, Ni, Sn and Mn are mainly influenced by mining industries and the combustion of fossil fuel; Pb and Hg are mainly influenced by coal combustion and Pb-Zn ore; Zn, Cd, Co and Sb are mainly influenced by agricultural activities. The results of Pb isotope tracing show that total Pb in the sediments is mainly from parent material (44.0%-50.0%), Pb-Zn ore (35.8%-41.7%) and vehicle exhaust (7.8%-18.2%). (C) 2017 Elsevier Ltd. All rights reserved.
机译:中国晋江河口京河河口京河河口的透明表面沉积物研究了14种重金属和同位素描绘的污染。沉积物中重金属的浓度降低为Fe> Ti> Zn> Cu> Cr> Pb> V> Ni> Sn> Co> Sb> Cd> Hg。除Fe,Ti和V外,其他元素显示比大多数采样站点的背景值更高的浓度。地球积累指数的评估结果和潜在的生态风险指标表明,跨境表面沉积物被一些重金属污染(CD,Hg,Cu,Mn,Zn,Sb,Sn,Pb,Cr,Ni和Co)和表演非常高的生态风险与CD和Hg的主要贡献者。多元统计分析结果表明,Fe,V,Ti和Cr主要受天然来源的影响; Cu,Ni,Sn和Mn主要受采用采矿业的影响和化石燃料的燃烧; PB和HG主要受煤燃烧和PB-Zn Ore的影响; Zn,CD,CO和SB主要受农业活动的影响。 Pb同位素跟踪的结果表明,沉积物中的总Pb主要来自母体材料(44.0%-50.0%),Pb-Zn Ore(35.8%-41.7%)和载体排气(7.8%-18.2%)。 (c)2017 Elsevier Ltd.保留所有权利。

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