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Interim storage of power reactor spent nuclear fuel (SNF) and its potential application to SNF separations and closed fuel cycle

机译:动力堆乏核燃料(SNF)的临时存储及其在SNF分离和封闭燃料循环中的潜在应用

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摘要

Interim, centralized, engineered (dry cask) storage facilities for USA light water power reactor spent nuclear fuel (SNF) should be implemented to complement and to offer much needed flexibility while the Nuclear Regulatory Commission is funded to complete its evaluation of the Yucca Mountain License and to subject it to public hearings. The interim sites should use the credo reproduced in Table 1 [Bunn, M., 2001. Interim Storage of Spent Nuclear Fuel. Harvard University and University of Tokyo] and involve both the industry and government. The sites will help settle the 50 pending lawsuits against the government and the $11 billion of potential additional liabilities for SNF delay damages if Yucca Mountain does not being operation in 2020 [DOE, 2008a. Report to Congress on the Demonstration of the Interim Storage of Spent Nuclear Fuel from Decommissioned Nuclear Power Stations (December)).rnUnder the developing consensus to proceed with closed fuel cycles, it will be necessary to develop SNF separation facilities with stringent requirements upon separation processes and upon generation of only highly resistant waste forms. The location of such facilities at the interim storage sites would offer great benefits to those sites and assure their long term viability by returning them to their original status.rnThe switch from once-through to closed fuel cycle will require extensive time and development work as illustrated in "The Path to Sustainable Nuclear Energy" [DOE, 2005. The Path to Sustainable Nuclear Energy. Basic and Applied Research Opportunities for Advanced Fuel Cycles. DOE (September)]. A carefully crafted long term program, funded for at least 5 years, managed by a strong joint government-industry team, and subjected to regular independent reviews should be considered to assure the program stability and success.rnThe new uncertainty about Yucca Mountain role raises two key issues: (a) what to do with the weapons and other high level government wastes committed to be moved to Yucca Mountain by specified dates? And (b) can the $13.6 billion invested at Yucca Mountain be salvaged if the NRC approves the license submittal and the opposition relents after contentious hearings? Or will it take contingent actions, or, a switch to a partial closed fuel cycle with its reduced risks and earlier timing of their peak risk value? Only time will tell if any of these alternates will be acceptable but, they all reinforce the need for interim storage for commercial SNF.rnIf the decision is to go to a new repository one wonders whether the time has not come to change the safety evaluation process for geological repositories by characterizing two to three sites and subjecting them to an arbitrary release of the fission products in the HLW to be stored and considering the forms of some of the HLW to reduce their peak risks. It would allow the proper choice to be made among the selected sites and to have a basis for convincing the local committee to accept the repository location. It may even decide whether the CONFU fuel assembly [MIT, 2006. Implications of alternative strategies for transition to sustainable fuel cycles. Nucl. Sci. Eng., 154 (September)] for pressurized water reactors can be accommodated in a once-through fuel cycle as suggested by Levy [Levy, S., 2008. Yucca backup plan. Nucl. Eng. Int., 24-28]. A similar configuration is possible in boiling water reactors.
机译:应实施针对美国轻水动力堆乏核燃料(SNF)的临时,集中化​​,工程化(干桶)存储设施,以补充并提供急需的灵活性,同时由核监管委员会资助完成对尤卡山许可证的评估并进行公开听证。临时场所应使用表1中复制的信条[Bunn,M.,2001.乏核燃料的临时存储。哈佛大学和东京大学],行业和政府都参与其中。如果尤卡山(Yucca Mountain)2020年不运营,这些地点将有助于解决50项针对政府的未决诉讼,以及110亿美元的SNF延误损害赔偿潜在潜在额外责任[DOE,2008a。向国会提交的关于退役核电站用过的核燃料临时储存示范的报告(12月)。在发展中的共识下,以封闭的燃料循环进行,有必要发展对分离过程有严格要求的SNF分离设施并且仅产生高抵抗力的废物形式。将此类设施放置在临时存储地点将为这些地点带来极大的好处,并通过将其恢复到原始状态来确保其长期生存能力。rn从一次性转换为封闭燃料循环将需要大量时间和开发工作,如图所示在“通往可持续核能之路” [DOE,2005年。通往可持续核能之路。先进燃油循环的基础和应用研究机会。 DOE(9月)]。为确保计划的稳定性和成功性,应考虑精心设计的长期计划,该计划至少要资助5年,由强大的政府和行业联合团队管理,并接受定期的独立审核。rn关于丝兰山角色的新不确定性增加了两个方面关键问题:(a)与承诺在指定日期之前转移到丝兰山的武器和其他高级政府废物有何关系? (b)如果NRC批准了执照的提交,并且反对者在有争议的听证会后缓和了,在尤卡山投资的136亿美元是否可以挽回?还是会采取应​​急措施,或者切换到部分封闭的燃油循环,以降低风险并尽早达到峰值风险值?只有时间能证明这些替代品中的任何一种是否可以接受,但是它们都增加了对商业SNF的临时存储的需求。如果决定要转到新的存储库,人们会怀疑是否还没有到改变安全评估流程的时机通过对两到三个地点进行特征分析,然后任意释放高放废物中要储存的裂变产物,并考虑某些高放废物的形式以降低其最大风险,来保护地质仓库。这样可以在选定的站点之间做出适当的选择,并为说服地方委员会接受存储库位置提供依据。它甚至可以决定是否配置CONFU燃料组件[MIT,2006。向可持续燃料循环过渡的替代策略的含义。核仁科学如Levy [Levy,S.,2008.丝兰备用计划]所述,可以在一次通过的燃料循环中容纳用于压水堆的154(9月154日)。核仁。 Int。,24-28]。在沸水反应堆中类似的构造也是可能的。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2009年第10期|2209-2211|共3页
  • 作者

    Salomon Levy;

  • 作者单位

    3425 South Bascom Avenue, Suite 225, Campbell, CA 95008, United States;

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

  • 入库时间 2022-08-18 00:45:17

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