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Proliferation-resistant fuel options for thermal and fast reactors avoiding neptunium production

机译:用于热反应堆和快堆的防扩散燃料选择,避免了production的产生

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摘要

Sustainable nuclear energy production requires reuse of spent nuclear fuel while avoiding its misuse. In the paper we assume that plutonium with sufficiently high content of the Pu-238 isotope (about 6% or more) and americium from spent nuclear fuel are proliferation-resistant. On the other hand, neptunium should be considered as material that is fissionable in a fast neutron spectrum and could be misused.rnWe also assume that plutonium denatured by Pu-238 can be produced in nuclear reactors of, e.g. nuclear weapon states and used for fuel fabrication there or in multilateral reprocessing and re-fabrication centers as suggested by IAEA. Then the fabricated fuel can be utilized in nuclear reactors everywhere provided that the reactors may operate safely and the fuel remains proliferation-resistant after utilization. Options to meet these criteria are investigated in the paper for two reactor types: pressurized water reactors (PWRs) and fast reactors (FRs).rnIn PWRs, the investigated fresh fuel compositions include denatured plutonium and depleted uranium mixed with a small amount of U-233, thorium and, optionally, with americium, presence of U-233 making the coolant void effect negative. In FRs, use of americium makes plutonium denatured, both for the burner (without fertile blanket) and breeder options. It is shown that the proposed design and fuel options are proliferation-resistant, the generation of neptunium being very low. Safety parameters are acceptable. Advanced aqueous or pyrochemical reprocessing for plutonium/thorium/uranium fuel and related fuel re-fabrication technology applying remote handling may become necessary to realize the considered fuel cycles.
机译:可持续的核能生产要求对乏核燃料进行再利用,同时避免其被滥用。在本文中,我们假设具有足够高含量的Pu-238同位素(约6%或更高)的p和来自乏核燃料的a具有抗扩散性。另一方面,n应被认为是在中子快速谱中易裂变并可能被滥用的材料。我们还假设被Pu-238变性的p可以在例如核反应堆中产生。核武器国家,并按照国际原子能机构的建议在当地或多边后处理与再制造中心中用于燃料制造。然后,只要反应堆可以安全运行并且燃料在使用后仍具有抗扩散性,便可以在任何地方的核反应堆中利用人造燃料。本文针对两种反应堆类型(压水堆(PWR)和快堆(FR))研究了满足这些标准的选项。在压水堆中,所研究的新鲜燃料成分包括变性p和贫铀以及少量U- 233,or和(可选)with,存在U-233,使冷却剂空隙效应为负。在阻燃剂中,use的使用会使p变质,无论是用于燃烧器(没有肥沃的毯子)还是用于种鸡。结果表明,拟议的设计和燃料选择具有抗扩散性,of的生成量非常低。安全参数是可以接受的。对realize / th /铀燃料进行先进的含水或热化学后处理以及采用远程处理的相关燃料再制造技术可能对于实现已考虑的燃料循环是必要的。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2010年第3期|500-510|共11页
  • 作者

    A. Rineiski; G. Kessler;

  • 作者单位

    Forschungszentrum Karlsruhe, Institute for Nuclear and Energy Technologies, P.O. Box 3640, D- 76021 Karlsruhe, Germany;

    Forschungszentrum Karlsruhe, Institute of Neutron Physics and Reactor Technology, P.O. Box 3640, D-76021 Karlsruhe, Germany;

  • 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 00:44:52

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