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Factor analysis and sequential extraction unveil geochemical processes relevant for trace metal distributions in fluvial sediments of a pyrite mining area, China

机译:因子分析和顺序提取揭示了与中国黄铁矿开采区河流沉积物中微量金属分布有关的地球化学过程

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摘要

Four fluvial sediment cores were geochemi-cally analysed for their major elements and for their trace metal contents and represent a sensitive environmental record for heavy metal contamination in a pyrite mining area, Pearl River Basin, South China. While an identifi-cation of depositional and post-depositional processes is not possible by means of the vertical profiles of the trace metal contents alone, factor analysis uncovers four main factors that control trace metal distributions in the sediment cores. After analysing the geochemical fractions of heavy metals by a sequential extraction procedure, these four factors could be explained as (i) complexation with organic matter in the sediment (As, Cu, Ni and Zn), (ii) weathering processes by iron reduction and oxidation (Pb, Mo and Cr), (iii) weathering by Mn reduction and oxidation (Tl and Co) and (iv) binding effects of sulphur in the sediment or physical transport of pyrite tailings (Zn). The environ-mental evaluation by geoaccumulation indices and enrichment factors reveals that the studied sediment cores are significantly contaminated and enriched with As, Tl, Pb and Zn. The risk assessment code additionally suggests low to medium risk of these studied heavy metals on the whole.
机译:地球化学分析了四个河流沉积物核心的主要元素和痕量金属含量,代表了中国南方珠江流域黄铁矿开采区重金属污染的敏感环境记录。虽然仅靠痕量金属含量的垂直分布是不可能确定沉积和沉积后过程的,但是因子分析揭示了控制沉积金属在沉积物芯中分布的四个主要因素。在通过顺序萃取程序分析了重金属的地球化学成分之后,这四个因素可以解释为:(i)与沉积物中的有机物(As,Cu,Ni和Zn)络合,(ii)铁还原的风化过程和氧化(Pb,Mo和Cr),(iii)通过Mn还原和氧化而风化(Tl和Co),以及(iv)硫在沉积物中的结合效应或黄铁矿尾矿(Zn)的物理迁移。通过地质累积指数和富集因子进行的环境评估表明,所研究的沉积物核被As,Tl,Pb和Zn污染和富集。风险评估代码还建议总体上将这些研究过的重金属归为中低风险。

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