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Assessment of trace metal contamination and ecological risk in the forest ecosystem of dexing mining area in northeast Jiangxi Province, China

机译:江西东北德兴矿区森林生态系统中痕量金属污染与生态风险评估

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摘要

Samples of soil, earthworms, and tree roots from the forest ecosystem in the Dexing Pb/Zn mining area of Jiangxi Province were collected and the status of trace metal pollution analyzed to assess potential ecological risks. Chemometric and geographic information system methods were used to identify and describe the spatial distributions and the main contamination sources of trace metals. The order of potential ecological risks of trace metals in this area are as follows: cadmium (Cd) arsenic (As) copper (Cu) nickel (Ni) lead (Pb) chromium (Cr) zinc (Zn). Elemental spatial distribution maps showed the existence of zones heavily polluted by trace metals around the mining area. Earthworms and roots of three tree species were also heavily contaminated, with concentrations of trace metals in earthworms much higher than in previous studies. The potential ecological risk index and other soil quality indices indicated that soil had moderate to severe contamination and there were high ecological risks, with Cd making the greatest contribution. Multivariate statistical analyses showed that Cd, As, Cu, Pb, and Zn in soil came from a mining activity source, whereas Ni and Cr primarily originated from a natural source.
机译:收集了江西省德兴市铅锌矿区森林生态系统的土壤,earth和树根样本,并对痕量金属污染状况进行了分析,以评估潜在的生态风险。化学计量学和地理信息系统方法用于识别和描述痕量金属的空间分布和主要污染源。该区域中痕量金属的潜在生态风险顺序如下:镉(Cd)>砷(As)>铜(Cu)>镍(Ni)>铅(Pb)>铬(Cr)>锌(Zn) 。元素空间分布图显示,矿区周围存在被微量金属严重污染的区域。三种树的和根也受到严重污染,earth中的痕量金属浓度比以前的研究高得多。潜在的生态风险指数和其他土壤质量指数表明,土壤受到中度至重度污染,具有较高的生态风险,其中镉的贡献最大。多变量统计分析表明,土壤中的Cd,As,Cu,Pb和Zn来自采矿活动源,而Ni和Cr主要来自天然源。

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