首页> 外文期刊>Fusion Engineering and Design >Possibility of fusion power reactor to transmute minor actinides of spent nuclear fuel
【24h】

Possibility of fusion power reactor to transmute minor actinides of spent nuclear fuel

机译:聚变动力反应堆可以转化乏核燃料中微量act系元素的可能性

获取原文
获取原文并翻译 | 示例
       

摘要

A possibility to use fusion power reactor (FPR) is considered for burning long-life elements of spent nuclear fuel in parallel with energy production. In this study a principal design of FPR blanket was examined for transmutation of long-life minor actinides (Np, Am, Cm). A production of minor actinide isotopes is equal to 20-30 kg/1 GW_((e)) year for now operating fission reactors, and their amounts will rise with the expected growth of fission reactor power. These isotopes have long-life time and can be dangerous in big amounts in future. Plutonium isotopes are not included in an assumption that they will be used in fission reactors. The major goals of the study were to determine FPR blanket composition corresponding to fast transmutation rate of actinides and tritium self-supply simultaneously. Tritium breeding ratio (TBR) was obtained at level 1.11 for water cooling and reached up 1.56 in variant with helium-cooled assemblies with Np nitride. It was concluded that rows with actinides from processed waste fuel should be arranged near the plasma first wall. Advantages of helium above water cooling are observed in the twice-increased loading of waste fissionable materials and essential increase of achievable TBR. Burnout of Np, Am, Cm would remain at a level ~ 40-50% after 4 full power years.
机译:考虑使用聚变反应堆(FPR)的可能性,与能源生产同时燃烧乏核燃料的长寿命元素。在这项研究中,研究了FPR毯子的主要设计,以研究长寿命次要minor系元素(Np,Am,Cm)的trans变。对于目前正在运行的裂变反应堆,次要act系元素同位素的产量等于20-30 kg / 1 GW _((e))年,并且其数量将随着裂变反应堆功率的预期增长而增加。这些同位素的寿命长,将来可能会产生大量危险。 fi同位素不包括在将用于裂变反应堆中的假设中。该研究的主要目标是确定与F系元素的快速trans变速率和simultaneously自给同时进行的FPR覆盖层组成。在水冷条件下,breed的繁殖率(TBR)为1.11,在带有Np氮化物的氦气冷却组件中,reached的繁殖率达到1.56。得出的结论是,应将处理过的废燃料中带有act系元素的行排在等离子第一壁附近。与氦气相比,水冷的优势体现在可裂变废料的装载量增加了两倍,并且可实现的TBR显着增加。 Np,Am,Cm的燃尽将在4个满功率年后保持在约40-50%的水平。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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