连国玺,孙娟,李梦姣,等. 我国地浸采铀地下水修复若干问题的思考[J]. 中国矿业,2023,32(10):80-87. DOI: 10.12075/j.issn.1004-4051.20220840
    引用本文: 连国玺,孙娟,李梦姣,等. 我国地浸采铀地下水修复若干问题的思考[J]. 中国矿业,2023,32(10):80-87. DOI: 10.12075/j.issn.1004-4051.20220840
    LIAN Guoxi,SUN Juan,LI Mengjiao,et al. Thoughts about the groundwater restoration of in-situ leaching uranium mining in China[J]. China Mining Magazine,2023,32(10):80-87. DOI: 10.12075/j.issn.1004-4051.20220840
    Citation: LIAN Guoxi,SUN Juan,LI Mengjiao,et al. Thoughts about the groundwater restoration of in-situ leaching uranium mining in China[J]. China Mining Magazine,2023,32(10):80-87. DOI: 10.12075/j.issn.1004-4051.20220840

    我国地浸采铀地下水修复若干问题的思考

    Thoughts about the groundwater restoration of in-situ leaching uranium mining in China

    • 摘要: 地浸采铀是我国天然铀生产的主要工艺,生产过程中向含矿含水层中注入了一定量的化学试剂,矿床终采后的残余溶液不可避免会对地下水造成污染,存在严重环境隐患,因此,地浸终采后开展地下水修复十分必要。针对地浸采铀地下水修复存在的若干问题,总结了我国地浸采铀矿山终采区地下水源项特征,对比了酸法地浸和中性地浸地下水污染物的种类和水平,调研了国外地浸矿山地下水修复目标值,提出了我国地浸采铀地下水修复目标值的确定方法,探讨了地浸采铀地下水修复主流工艺的优缺点及应用情况,总结了国外地浸矿山地下水修复周期,讨论了地浸采铀地下水修复的时机。基于地浸采铀地下水修复涉及的问题提出了见解,指出了未来的研究方向,旨在为我国地浸地下水修复技术研究和政策制定提供参考。

       

      Abstract: In-situ leaching is the main technologies for natural uranium production in China, which some chemical reagents are injected into ore-bearing aquifers. The residual leaching solution after mining of the ore deposit will inevitably pollute the groundwater, causing environmental risks. Therefore, groundwater restoration is necessary. Considering the existing problems in groundwater restoration of in-situ leaching uranium mining, this paper systematically summarizes the groundwater features at decommissioned well field of in-situ leaching uranium mining, compares the distribution and concentrations of groundwater pollutants between acid leaching and neutral leaching, investigates the method for determining groundwater restoration target value and proposes a corresponding method for in-situ leaching mining in China. Moreover, discusses the advantages, disadvantages and application of groundwater restoration technologies of in-situ leaching mining worldwide. And elaborates the direction of groundwater restoration technology basing on the characteristics of in-situ leaching uranium mining in China. Furthermore, the periods of groundwater restoration are summarized, and the timing of groundwater restoration of in-situ leaching uranium mining is also presented. The insights on groundwater restoration issues in this paper suggests further research direction, aiming at providing reference for restoration technology research and policy developing for groundwater restoration of in-situ leaching uranium mining in China.

       

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