首页> 外文OA文献 >An evaluation of the feasibility of disposal of nuclear waste in very deep boreholes
【2h】

An evaluation of the feasibility of disposal of nuclear waste in very deep boreholes

机译:评估在非常深的钻孔中处置核废料的可行性

摘要

Deep boreholes, 3 to 5 km into igneous rock, such as granite, are evaluated for next- generation repository use in the disposal of spent nuclear fuel and other high level waste. The primary focus is on the stability and solubility of waste species, waste forms, and canister materials in saline, anoxic water, which is the most severe potential downhole environment given the sparse data available. Pourbaix (Eh-pH) diagrams and solubility products were calculated for 20 materials of interest. In general, extremely low dissolved concentrations were estimated. Copper was identified as the best canister material. Wall-to-far-field temperature increases were estimated to be about 20⁰ C for canisters containing two PWR assemblies, which is quite tolerable. Aspects requiring further work in the near term are detailed canister interior design to withstand crushing under a 1 km stack of same, and development of a borehole plug concept having a comparable or better impermeability and radionuclide holdup than the surrounding granite bedrock.
机译:评估了火成岩3至5公里的深孔(例如花岗岩),以用于下一代处置库中的乏核燃料和其他高放废物的处置。主要关注的是废物种类,废物形式和罐头材料在盐水,缺氧水中的稳定性和溶解性,鉴于可获得的稀疏数据,这是最严重的潜在井下环境。计算了20种目标材料的Pourbaix(Eh-pH)图和溶解度乘积。通常,估计的溶解浓度极低。铜被认为是最好的碳罐材料。对于包含两个PWR组件的罐,壁到远场的温度升高估计约为20⁰C,这是可以忍受的。在短期内需要进一步工作的方面是详细的滤罐内部设计,以承受在1 km的烟囱下的压碎,以及开发出具有与周围花岗岩基岩相当或更好的抗渗性和放射性核素滞留率的钻孔塞概念。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号