首页> 外文期刊>ACS Omega >Isotopic and Compositional Variations in Single Nuclear Fuel Pellet Particles Analyzed by Nanoscale Secondary Ion Mass Spectrometry
【24h】

Isotopic and Compositional Variations in Single Nuclear Fuel Pellet Particles Analyzed by Nanoscale Secondary Ion Mass Spectrometry

机译:纳米级二次离子质谱分析的单核燃料颗粒颗粒的同位素和组成变化

获取原文
           

摘要

The Collaborative Materials Exercise (CMX) is organized by the Nuclear Forensics International Technical Working Group, with the aim of advancing the analytical capabilities of the participating organizations and providing feedback on the best approaches to a nuclear forensic investigation. Here, model nuclear fuel materials from the 5th CMX iteration were analyzed using a NanoSIMS 50L (CAMECA) in order to examine inhomogeneities in the 235U/238U ratio and trace element abundance within individual, micrometer scale particles. Two fuel pellets were manufactured for the exercise and labelled CMX-5A and CMX-5B. These pellets were created using different processing techniques, but both had a target enrichment value of 235U/238U = 0.01. Particles from these pellets were isolated for isotopic and trace element analysis. Fifteen CMX-5A particles and 20 CMX-5B particles were analyzed, with both sample types displaying inhomogeneities in the U isotopic composition at a sub-micrometer scale within individual particles. Typical particle diameters were ~1.5 to 41 μm for CMX-5A and ~1 to 61 μm for CMX-5B. The CMX-5A particles were shown to be more isotopically homogeneous, with a mean 235U/238U atom ratio of 0.0130 ± 0.0066. The CMX-5B particles showed a predominantly depleted mean 235U/238U atom ratio of 0.0063 ± 0.0094, which is significantly different to the target enrichment value of the pellet and highlights the potential variation of 235U/238U in U fuel pellets at the micrometer scale. This study details the successful application of the NanoSIMS 50L in a mock nuclear forensic investigation by optimizing high-resolution imaging for uranium isotopics.
机译:协作材料演习(CMX)由核法证国际技术工作组组织,目的是提高参与组织的分析能力,并就核法证学调查的最佳方法提供反馈。在这里,使用NanoSIMS 50L(CAMECA)分析了第5次CMX迭代的模型核燃料材料,以检查235U / 238U比的不均匀性以及单个微米级颗粒中的微量元素丰度。制造了两个燃料芯块用于练习,并标记为CMX-5A和CMX-5B。这些沉淀物是使用不同的加工技术制成的,但目标浓缩值均为235U / 238U = 0.01。从这些沉淀中分离出颗粒,用于同位素和痕量元素分析。分析了15个CMX-5A颗粒和20个CMX-5B颗粒,两种样品类型均以亚微米级显示单个颗粒内U同位素组成的不均匀性。 CMX-5A的典型粒径约为1.5至41μm,CMX-5B的典型粒径约为1至61μm。 CMX-5A颗粒在同位素上更均匀,平均235U / 238U原子比为0.0130±0.0066。 CMX-5B颗粒的平均235U / 238U原子比主要为0.0063±0.0094,这与颗粒的目标富集值显着不同,并突出了微米级U燃料颗粒中235U / 238U的潜在变化。这项研究通过优化铀同位素的高分辨率成像,详细介绍了NanoSIMS 50L在模拟核法证研究中的成功应用。

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