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中国西南地区三峡库区的金属湿沉降。

Metal wet deposition in the Three Gorges Reservoir (TGR) region of Southwest China.

机构信息

Chongqing Institue of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing, 400714, China.

University of Chinese Academy of Sciences, Beijing, 101408, China.

出版信息

Environ Sci Pollut Res Int. 2018 Nov;25(32):32053-32065. doi: 10.1007/s11356-018-3075-y. Epub 2018 Sep 14.

Abstract

Metal wet deposition has become an environmental concern because of its threats to soil or water quality and human health. This study was to collect rainfall waters in 2016 from seven sites, representing urban, town, rural, and wetland, within the Three Gorges Reservoir (TGR) region of Southwest China, determine the metal concentration and flux (Zn, Mn, Cu, As, Cd, Pb), and identify their possible sources. Results indicated that Zn was the most abundant metal with a concentration of 16.92 μg L in fall and 19.91 μg L in winter and flux of 4.71 mg m in fall, while Cd was the least with a monthly mean concentration of 0.02-0.37 μg L. Among the seven sites, urban (FL) had the highest values of both concentrations of metals (Zn, Cu, Pb) and fluxes of metals (Mn, As), which significantly differed from the other sites. Component and redundancy analysis suggested that fossil fuel and biomass combustion be a potential metal source. Enrichment factors, box model, and potential ecological risk index showed that the TGR water quality could face a high risk due to wet metal deposition, especially Cd. Data could provide a valuable aid in mitigating metal pollution, developing the best watershed management practices, as well as safeguarding water quality and human health in the TGR region or other reservoir regions.

摘要

金属湿沉降因其对土壤或水质以及人类健康的威胁而成为一个环境关注点。本研究于 2016 年在三峡库区(TGR)的七个地点(包括城市、城镇、农村和湿地)收集了降雨,测定了金属浓度和通量(Zn、Mn、Cu、As、Cd、Pb),并确定了它们的可能来源。结果表明,Zn 是最丰富的金属,秋季浓度为 16.92μg/L,冬季浓度为 19.91μg/L,秋季通量为 4.71mg/m,而 Cd 是最少的金属,月平均浓度为 0.02-0.37μg/L。在这七个地点中,城市(FL)的金属浓度(Zn、Cu、Pb)和金属通量(Mn、As)最高,与其他地点显著不同。组成和冗余分析表明,化石燃料和生物质燃烧是潜在的金属来源。富集因子、箱式模型和潜在生态风险指数表明,由于湿沉降金属的影响,TGR 水质可能面临高风险,尤其是 Cd。这些数据可以为减轻金属污染、制定最佳流域管理实践以及保护 TGR 地区或其他水库地区的水质和人类健康提供有价值的帮助。

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