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Effects Of Separation Processes On Minor Uranium Isotopes In Enrichment Cascades

机译:分离工艺对富集级联中微量铀同位素的影响

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摘要

In natural uranium, there are trace amounts of the "minor isotope" ~(234)U in addition to the more abundant ~(235)U and ~(238)U. Uranium irradiated in a reactor and separated from the spent reactor fuel by reprocessing will contain additional minor isotopes. In uranium enrichment, cascades of separating units are tuned to produce the desired level of the isotope ~(235)U, but the levels of other isotopes will also change. Measurement of the assays of the ~(235)U in the feed, product and withdrawal streams of each stage allow the calculation of the stage separation factor for the ~(235)U. The separation factors for the other isotopes may be calculated. In this aritcle, two methods of modeling the separation factors in a way that represents the physics of two enrichment processes, gas centrifuge and gaseous diffusion, are explored. This technique could be a valuable tool in nuclear forensics. For example, it could be important to know the origin of a sample of highly enriched uranium, found either in intercepted material or in explosive debris. Analysis that could point to the enrichment plant where the uranium was produced could immediately identify weaknesses in safeguards and physical security systems.
机译:在天然铀中,除了含量更高的〜(235)U和〜(238)U外,还有痕量的“次要同位素”〜(234)U。在反应堆中辐照并通过后处理与乏反应堆燃料分离的铀将包含其他微量同位素。在铀浓缩中,调整分离单元的级联以产生所需水平的同位素〜(235)U,但其他同位素的水平也会发生变化。测量每个阶段的进料,产物和排出物流中〜(235)U的含量,可以计算出〜(235)U的阶段分离因子。可以计算其他同位素的分离因子。在该区域中,探索了两种以代表两个富集过程(气体离心和气体扩散)的物理过程的方式对分离因子进行建模的方法。该技术可能是核法证学中的宝贵工具。例如,重要的是要知道在拦截的材料或爆炸性碎片中发现的高浓缩铀样品的来源。可以指出生产铀的浓缩厂的分析可以立即发现保障措施和人身安全系统的弱点。

著录项

  • 来源
    《Science & global security》 |2008年第2期|p.26-36|共11页
  • 作者

    Houston G. Wood;

  • 作者单位

    University of Virginia, Department of Mechanical and Aerospace Engineering, Charlottesville, VA, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 军事;
  • 关键词

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