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首页> 外文期刊>Science of the total environment >Impacts of acid mine drainage on karst aquifers: Evidence from hydrogeochemistry, stable sulfur and oxygen isotopes
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Impacts of acid mine drainage on karst aquifers: Evidence from hydrogeochemistry, stable sulfur and oxygen isotopes

机译:酸性矿氨植物对喀斯特含水层的影响:来自水文地质化学,稳定的硫和氧同位素的证据

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摘要

The pollution of karst aquifers by acid mine drainage (AMD) waters is increasing. Major and minor ions (Ca~(2+), Mg~(2+), HCO_3~-, SO_4~(2-), F~, and Fe), stable sulfur and oxygen isotopes of dissolved sulfates (δ~(34)S_(SO4) and δ~(18)O_(SO4)) and oxygen isotope of water (δ~(18)O_(H2O)). were analyzed in rainwater, surface water, groundwater, and AMD water sampled from the Babu subterranean stream watershed, in Southwest China. The principal aim of this study was to explore the impact of AMD waters on the evolution of karst aquifers. Based on hydrogeochemistry and stable isotopes (δ~(18)O_(H2O). δ~(18)O_(SO4) and δ~(34)O_(SO4)): (1) the chemistry of AMD waters was primarily controlled by pyrite oxidation, karst conduit water by AMD waters and mixing with calcite and dolomite dissolution, and spring water by atmospheric precipitation and carbonate dissolution; (2) contamination of the karst conduit water was mainly attributed to the input of AMD waters, resulting in a shift of δ~(34)S_(SO4) towards more negative values (from 3.4‰ to - 13.2‰); (3) the quality of karst conduit water changed from suitable to unsuitable for irrigation and drinking, particularly due to the increase in total Fe, SO_4~(2-), and F~- concentrations, reflecting the cumulative effect of AMD waters derived from tailings dumps; this influence was enhanced during rainstorm/ drought and anthropogenic activities; and (4) the flow of contaminated groundwater through the conduit promoted the dissolution of carbonates, especially during the dry season due to the greater proportion of AMD in the groundwater. This released more CO_2 to the atmosphere. We believe that analysis of stable isotopes (δ~(18)O_(H2O). δ~(18)O_(SO4) and δ~(34)O_(SO4)), combined with hydrogeochemistry, is effective for exploring the impact of AMD on karst aquifers. Therefore, reasonable treatment methods should be taken to reduce the negative impacts of tailings dumps on karst aquifers.
机译:酸性矿山排水(AMD)水域喀斯特含水层的污染正在增加。主要和次要离子(Ca〜(2+),Mg〜(2+),HCO_3〜 - ,SO_4〜(2-),F〜和Fe),稳定硫酸和氧同位素的溶解硫酸盐(δ〜(34 )S_(SO4)和δ〜(18)O_(SO4))和水的氧同位素(Δ〜(18)O_(H2O))。在雨水,地表水,地下水和水中的水中分析,在中国西南部的巴布底部溪流流域中取样。本研究的主要目的是探讨AMD水域对喀斯特含水层演变的影响。基于水力地球化学和稳定同位素(δ〜(18)O_(H2O)。Δ〜(18)O_(SO4)和Δ〜(34)O_(SO4)):(1)AMD水的化学主要由用AMD水氧化,喀斯特导管水,与方解石和白云岩溶解混合,并通过大气沉淀和碳酸盐溶解的泉水; (2)岩溶导管水的污染主要归因于AMD水的输入,导致δ〜(34)S_(SO4)的偏移朝向更高的负值(从3.4°至-13.2‰); (3)岩溶导管水的质量从适合于不适合的灌溉和饮用,特别是由于总Fe,SO_4〜(2-)和F〜 - 浓度的增加,反映了来自的AMD水的累积效应尾矿倾卸;在暴风雨/干旱和人为活动期间,这种影响得到了增强; (4)通过导管的污染地下水的流动促进了碳酸酯的溶解,特别是在干燥季节期间由于地下水中的amd比例较大。这将更多的CO_2发布到大气中。我们认为,稳定同位素的分析(δ〜(18)O_(H2O)。Δ〜(18)O_(SO4)和δ〜(34)O_(SO4)),与水力造物相结合,是探索的影响在喀斯特含水层上的AMD。因此,应采取合理的处理方法来减少尾矿倾料对喀斯特含水层的负面影响。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|143223.1-143223.14|共14页
  • 作者单位

    Institute of Karst Geology Chinese Academy of Geological Sciences Guilin 541004 China Key Laboratory of Karst Dynamics Ministry of Natural Resources & Guangxi Guilin 541004 China;

    Institute of Karst Geology Chinese Academy of Geological Sciences Guilin 541004 China;

    Key Laboratory of Karst Dynamics Ministry of Natural Resources & Guangxi Guilin 541004 China;

    Institute of Karst Geology Chinese Academy of Geological Sciences Guilin 541004 China;

    Institute of Karst Geology Chinese Academy of Geological Sciences Guilin 541004 China;

    Institute of Karst Geology Chinese Academy of Geological Sciences Guilin 541004 China;

    Institute of Karst Geology Chinese Academy of Geological Sciences Guilin 541004 China;

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

    Karst groundwater; Karst aquifer; Acid mine drainage; Stable isotopes; Hydrogeochemistry; Southwest China;

    机译:喀斯特地下水;喀斯特含水层;酸性矿山排水;稳定同位素;水文地球化学;中国西南部;

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