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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Metals and metalloids distribution, source identification, and ecological risks in riverbed sediments of the Jinsha River, China
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Metals and metalloids distribution, source identification, and ecological risks in riverbed sediments of the Jinsha River, China

机译:中国金沙河河床沉积物的金属和金属分布,源识别和生态风险

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摘要

Metals and metalloids contamination has become a significant global environmental issue. The Jinsha River Basin (JRB) in China, an important water resource for the Yangtze River, has become increasingly subject to anthropogenic disturbances. We analyzed ten metal(loid) concentrations (Hg, As, Cu, Zn, Ni, Cr, Cd, Pb, Fe, and Al) in riverbed sediments, following a multivariate analysis approach, which includes source apportionment and ecological risk assessment. The metal(loid) spatial distribution revealed significantly high concentrations of Cr in the upper reaches, Ni in the midstream, Cu and Fe in the lower reaches, and Cd in the entire river. The positive matrix factorization and correlation analysis indicated that Hg, Cd, Pb, and Zn originated mainly from atmospheric deposition and agricultural discharge, and Cu and Fe originated primarily from mining and industrial wastes. The main source of Cr, Ni, As, and Al was natural disturbances, such as rock weathering, hydraulic souring, and geological processes. The ecological risk assessment indicated that the entire JRB posed a low to moderate ecological risk, and the mobility and biotoxicity of metal(loid)s showed an increasing trend along the river. Notably, Cd had the highest mobility and ecological risk. Overall, the risk to the locals and aquatic organisms of the JRB due to metal(loid) pollution was significant, with contamination from mining and agriculture being of particular concern.
机译:金属和金属污染已成为一个重大的全球环境问题。金沙河流域(JRB)在中国,是长江的重要水资源,越来越多地受到人为干扰。在多变量分析方法之后,我们分析了河​​床沉积物中的十种金属(LoID)浓度(Hg,As,Cu,Zn,Ni,Cr,Cd,Pb,Fe,Cr,Cd,Pb,Fe),包括源分摊和生态风险评估。金属(沸腾)空间分布显示上游的显着高浓度的Cr,下游中的中游,Cu和Fe中的Ni,以及整个河流中的CD。阳性基质分解和相关分析表明,Hg,Cd,Pb和Zn主要来自大气沉积和农业排放,Cu和Fe主要来自采矿和工业废物。 Cr,Ni,As和Al的主要来源是天然障碍,如岩石风化,液压腐蚀和地质过程。生态风险评估表明,整个JRB为低于中等的生态风险,金属的流动性和生物毒性显示出沿河的增加趋势。值得注意的是,CD具有最高的流动性和生态风险。总体而言,由于金属(潜能)污染的JRB当地人和水生生物的风险是显着的,采矿和农业的污染是特别关注的。

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