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Long-term ongoing impact of arsenic contamination on the environmental compartments of a former mining-metallurgy area

机译:砷污染对原采矿冶金区环境隔间的长期持续影响

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摘要

Arsenic and mercury are potentially toxic elements of concern for soil, surficial and ground waters, and sediments. In this work various geochemical and hydrogeological tools were used to study a paradigmatic case of the combined effects of the abandonment of Hg- and As-rich waste on these environmental compartments. Continuous weathering of over 40 years has promoted As and Hg soil pollution (thousands of ppm) in the surroundings of a former Hg mining-metallurgy site and affected the water quality of a nearby river and shallow groundwater. In particular, the high availability of As both in soils and waste was identified as one of the main determinants of contaminant distribution, whereas the impact of Hg was found to be minor, which is explained by lower mobility. Furthermore, potential additional sources of pollution (coal mining, high natural backgrounds, etc) discharging into the study river were revealed less significant than the contaminants generated in the Hg-mining area. The transport and deposition of pollutants within the water cycle has also affected several kilometres downstream of the release areas and the chemistry of stream sediments. Overall, the environmental compartments studies held considerable concentrations of Hg and As, as remarkably revealed by the average contaminant load released in the river (several tons of As per year) and the accumulation of toxic elements in sediments (enrichment factors of As and Hg above 35).
机译:砷和汞是土壤,地表水和地下水以及沉积物中潜在的有毒元素。在这项工作中,各种地球化学和水文地质工具被用来研究放弃富汞和富砷废物对这些环境区隔的综合影响的典型案例。超过40年的持续风化在以前的汞矿冶炼厂周围促进了砷和汞的土壤污染(千ppm),并影响了附近河流和浅层地下水的水质。特别是,土壤和废物中砷的高利用率被认为是污染物分布的主要决定因素之一,而汞的影响很小,这可以通过较低的迁移率来解释。此外,显示出排放到研究河流中的潜在的其他污染源(煤矿开采,高自然本底等)比在汞矿开采区中产生的污染物更不重要。水循环内污染物的运输和沉积也影响了释放区下游几公里,并影响了河流沉积物的化学性质。总体而言,环境舱室研究中含有相当高的Hg和As浓度,这从河流中释放的平均污染物负荷(每年数吨As)和沉积物中有毒元素的积累(As和Hg的富集因子以上)可以明显看出。 35)。

著录项

  • 来源
    《The Science of the Total Environment》 |2018年第1期|820-830|共11页
  • 作者单位

    Dpto. de Explotacion y Prospeccion de Minas, Universidad de Oviedo, C/Independencia, 13, 33004 Oviedo, Asturias, Spain;

    INDUROT and Environmental Technology, Biotechnology and Geochemistry Group, C/Gonzalo Gutierrez Quiros s, 33600 Mieres, Asturias, Spain;

    INDUROT and Environmental Technology, Biotechnology and Geochemistry Group, C/Gonzalo Gutierrez Quiros s, 33600 Mieres, Asturias, Spain;

    Dpto. de Explotacion y Prospeccion de Minas, Universidad de Oviedo, C/Independencia, 13, 33004 Oviedo, Asturias, Spain;

    INDUROT and Environmental Technology, Biotechnology and Geochemistry Group, C/Gonzalo Gutierrez Quiros s, 33600 Mieres, Asturias, Spain;

    INDUROT and Environmental Technology, Biotechnology and Geochemistry Group, C/Gonzalo Gutierrez Quiros s, 33600 Mieres, Asturias, Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arsenic; Mercury; Water pollution; Soil; Sediment; Mining;

    机译:砷;汞;水污染;泥;沉淀;矿业;
  • 入库时间 2022-08-17 13:47:03

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