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Assessment of the alteration and acid-generating potential of deep boreholes for geological disposal

机译:评估深井地质处置的蚀变和产酸潜力

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摘要

An integrated study, including mineralogy, geochemistry, lead isotopic composition, acid-base accounting, and factor analysis, was conducted on the rock core samples from two deep boreholes (AH1 and BH3) to assess the alteration and acid-generating potential of two representative lithologies of Korea (granite and geniss) for geological disposal. The alteration condition represents water circulation features in crystalline basement rocks, which is one of the key points to be assessed in repository sites. In addition, this study proposes that the acid-producing potential and acid-consuming minerals in the host rock are important for the long-term safety of a radioactive waste repository, given that sulfide oxidation may occur in artificial fractures created during construction. Fe3+ ions can then react with other sulfide minerals in reducing conditions and release H+ and SO42-, which can deteriorate cement-based grouting materials used for carven walls as well as the host rock. The results of the study show that the composition of Pb isotopes is a good indicator of the alteration of rock core samples compared to the chemical index of alteration and loss on ignition. The acid potential ratio and net acid production potential indicate that most of the core samples in both boreholes have a high alkali-generating potential. Factor analysis shows that the neutralizing capacity in AH1 is highly correlated with the alteration, while the neutralizing capacity in BH3 is correlated with secondary minerals. The alteration appears to be related to secondary minerals and the acid-producing capacity, while the changes in major elements are not related to the Pb isotopes in BH3 due to leaching along fractures.
机译:对来自两个深孔(AH1和BH3)的岩心样品进行了包括矿物学,地球化学,铅同位素组成,酸碱核算和因子分析在内的综合研究,以评估两个代表层的蚀变和产酸潜力韩国岩性(花岗岩和Geniss)进行地质处置。蚀变条件代表了结晶基底岩石中的水循环特征,这是在储藏场所评估的关键点之一。此外,这项研究还提出,考虑到硫化物的氧化可能发生在施工过程中产生的人工裂缝中,基质岩石中的产酸潜力和消耗酸的矿物对于放射性废物处置库的长期安全性至关重要。然后,Fe3 +离子可以在还原条件下与其他硫化物矿物发生反应,并释放出H +和SO42-,这可能会使用于雕刻墙和主体岩石的水泥基灌浆材料变质。研究结果表明,与化学变化和着火损失的化学指标相比,Pb同位素的组成是岩心样品变化的良好指示。酸势比和净产酸潜力表明,两个钻孔中的大多数岩心样品均具有较高的生碱潜力。因子分析表明,AH1中的中和能力与蚀变高度相关,而BH3中的中和能力与次生矿物相关。这种变化似乎与次生矿物和产酸能力有关,而主要元素的变化与沿裂缝的浸出与BH3中的Pb同位素无关。

著录项

  • 来源
    《Environmental earth sciences》 |2016年第7期|572.1-572.22|共22页
  • 作者单位

    Korea Inst Geosci & Mineral Resources, Div Geol Environm, 30 Kajung Dong, Taejon 305350, South Korea;

    Korea Inst Geosci & Mineral Resources, Div Geol Environm, 30 Kajung Dong, Taejon 305350, South Korea;

    Kongju Natl Univ, Dept Geoenvironm Sci, Kong Ju 314701, South Korea;

    Korea Inst Geosci & Mineral Resources, Div Geol Environm, 30 Kajung Dong, Taejon 305350, South Korea;

    Korea Inst Geosci & Mineral Resources, Div Geol Environm, 30 Kajung Dong, Taejon 305350, South Korea;

    Korea Inst Geosci & Mineral Resources, Div Geol Environm, 30 Kajung Dong, Taejon 305350, South Korea;

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

    Alteration; Crystalline bedrock; Pb isotope; Acid-generating potential; Factor analysis;

    机译:蚀变;晶体基岩;铅同位素;产酸势;因子分析;

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