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Siting Deep Boreholes for Disposal of Radioactive Waste: Consequences for Tight Coupling between Natural and Engineered Systems

机译:坐在深孔中处置放射性废物:自然系统与工程系统之间紧密耦合的后果

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摘要

Since the Yucca Mountain project in the U.S. was defunded in 2010, the notion of disposing of spent nuclear fuel (SNF) in deep boreholes has been reinvigorated, most recently by private companies proposing to utilize lateral drilling technology to excavate boreholes for SNF disposal in sedimentary rock. It is claimed that this approach will alleviate site characterization efforts and expand the availability of potential disposal sites. However, long-term safety will hinge upon the prevalence of geochemically reducing, highly saline, and slow-flowing fluids around the waste emplacement zone, and to quantify these parameters in fluids sampled from depths >1 km will present a challenge. Regional data indicate only a narrow geographical extent of such conditions in the conterminous United States. Furthermore, models of radionuclide transport from disposal boreholes must take into account processes that may accelerate degradation of the canisters, plug, and SNF itself, such as radiolysis and attack by constituents of hydrothermal brines, coupled with hydrogeoiogic features that promote advective groundwater flow. This review summarizes some geologic considerations, most notably those related to geochemistry, that challenge the long-term safety case for deep borehole disposal of SNF.
机译:自2010年美国的丝兰山项目获得资金以来,在深井孔中处置乏核燃料(SNF)的概念得到了重新激发,最近,私营公司提议利用侧向钻探技术挖掘井孔以将SNF处置在沉积物中岩。据称,这种方法将减轻站点表征工作,并扩大潜在处置站点的可用性。但是,长期安全性将取决于废物安置区周围地球化学还原,高盐分和缓慢流动的流体的普遍性,而量化从> 1 km深度采样的流体中的这些参数将是一个挑战。区域数据表明,在美国本土,此类疾病的地理范围很小。此外,放射性核素从处置井中运出的模型必须考虑到可能加速滤罐,塞子和SNF本身降解的过程,例如辐射分解和热液盐水成分的侵蚀,再加上促进平流地下水流动的水文地质特征。这篇综述总结了一些地质方面的考虑,特别是与地球化学有关的考虑,这些挑战对SNF深井处置的长期安全性提出了挑战。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第2期|629-646|共18页
  • 作者

  • 作者单位

    George Washington University Washington D.C. The Swedish Nuclear Fuel and Waste Management Company Stockholm Sweden and Stanford University Stanford California;

    U.S. Nuclear Regulatory Commission Bethesda Maryl;

    George Washington University Washington D.C.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 05:17:59

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