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Transmutation of All German Transuranium under Nuclear Phase Out Conditions – Is This Feasible from Neutronic Point of View?

机译:核淘汰条件下所有德国Trans的变–从中子学的角度来看这可行吗?

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摘要

The German government has decided for the nuclear phase out, but a decision on a strategy for the management of the highly radioactive waste is not defined yet. Partitioning and Transmutation (P&T) could be considered as a technological option for the management of highly radioactive waste, therefore a wide study has been conducted. In the study group objectives for P&T and the boundary conditions of the phase out have been discussed. The fulfillment of the given objectives is analyzed from neutronics point of view using simulations of a molten salt reactor with fast neutron spectrum. It is shown that the efficient transmutation of all existing transuranium isotopes would be possible from neutronic point of view in a time frame of about 60 years. For this task three reactors of a mostly new technology would have to be developed and a twofold life cycle consisting of a transmuter operation and a deep burn phase would be required. A basic insight for the optimization of the time duration of the deep burn phase is given. Further on, a detailed balance of different isotopic inventories is given to allow a deeper understanding of the processes during transmutation in the molten salt fast reactor. The effect of modeling and simulation is investigated based on three different modeling strategies and two different code versions.
机译:德国政府已决定逐步淘汰核武器,但尚未确定有关高放射性废物管理战略的决定。分区和Trans变(P&T)可以被视为管理高放射性废物的技术选择,因此已进行了广泛的研究。在研究小组中,讨论了P&T的目标和逐步淘汰的边界条件。从中子学的角度,使用具有快速中子能谱的熔融盐反应堆的仿真,分析了给定目标的实现。结果表明,从中子学的角度来看,在大约60年的时间范围内,所有现有的跨铀同位素的有效trans变都是可能的。为此,必须开发三个采用新技术的反应堆,并且需要一个由变相器运行和深度燃烧阶段组成的双重生命周期。给出了优化深度燃烧阶段持续时间的基本见解。进一步地,给出了不同同位素清单的详细平衡,以使人们能够更深入地了解熔盐快堆中trans变过程。基于三种不同的建模策略和两种不同的代码版本,研究了建模和仿真的效果。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Bruno Merk; Dzianis Litskevich;

  • 作者单位
  • 年(卷),期 2010(10),12
  • 年度 2010
  • 页码 e0145652
  • 总页数 24
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 12:35:30

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