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Preliminary Performance Assessment for Deep Borehole Disposal of High-Level Radioactive Waste

机译:高放废物深孔处置的初步性能评估

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Deep boreholes have been proposed for many decades as an option for permanent disposal of high-level radioactive waste and spent nuclear fuel. Disposal concepts are straightforward, and generally call for drilling boreholes to a depth of four to five kilometers (or more) into crystalline basement rocks. Waste is placed in the lower portion of the hole, and the upper several kilometers of the hole are sealed to provide effective isolation from the biosphere. The potential for excellent long-term performance has been recognized in many previous studies. This paper reports updated results of what is believed to be the first quantitative analysis of releases from a hypothetical disposal borehole repository using the same performance assessment methodology applied to mined geologic repositories for high-level radioactive waste. Analyses begin with a preliminary consideration of a comprehensive list of potentially relevant features, events, and processes (FEPs) and the identification of those FEPs that appear to be most likely to affect long-term performance in deep boreholes. The release pathway selected for preliminary performance assessment modeling is thermally-driven flow and radionuclide transport upwards from the emplacement zone through the borehole seals or the surrounding annulus of disturbed rock. Estimated radionuclide releases from deep borehole disposal of spent nuclear fuel, and the annual radiation doses to hypothetical future humans associated with those releases, are extremely small, indicating that deep boreholes may be a viable alternative to mined repositories for disposal of both high-level radioactive waste and spent nuclear fuel.
机译:数十年来,人们一直建议使用深孔作为永久性处置高放射性废物和乏核燃料的一种选择。处置的概念很简单,通常需要在晶体基底岩石中钻四到五公里(或更深)的深度的钻孔。废物被放置在孔的下部,孔的上部几公里被密封以提供与生物圈的有效隔离。先前的许多研究已经认识到了出色的长期性能的潜力。本文报告了更新的结果,该结果被认为是使用与用于高放射性废物采矿地质处置库的性能评估方法相同的性能评估方法对假设处置钻孔处置库的排放量进行的首次定量分析。分析首先要初步考虑潜在相关特征,事件和过程(FEP)的综合清单,并确定那些最有可能影响深孔长期性能的FEP。选择用于初步性能评估建模的释放途径是热驱动流动和放射性核素从进位区向上穿过井眼密封或扰动岩石的周围环空向上传输。深井孔处理过的核燃料的估计放射性核素释放量以及与这些释放量相关的假想未来人类的年度辐射剂量非常小,这表明深井孔可能是矿藏处置高放放射性物质的可行替代品废和废核燃料。

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