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Application of automated particle screening for effective analysis of individual uranium particles by thermal ionization mass spectrometry

机译:自动化粒子筛选在通过热电离质谱法有效分析单个铀粒子中的应用

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The isotope ratio analysis of individual uranium particles in environmental samples taken at nuclear facilities is important to clarify their origins for nuclear safeguards. Secondary ion mass spectrometry (SIMS) is often used for this purpose. An automated particle measurement (APM) screening software was recently developed for SIMS instruments, which enables us to obtain scanning ion images of uranium isotopes over the sample in short duration. The positions and approximate isotope ratios of each uranium particle can be determined from the images. This makes SIMS more effective because a few uranium particles with irregular isotopic compositions among thousands of uranium particles with normal isotopic compositions can be screened prior to precise isotope ratio analysis. However, the formation of molecular and/or hydride ions often leads to spectral interferences and inaccurate results in SIMS. In the present study, APM screening was applied to select uranium particles prior to precise isotope ratio analysis by thermal ionization mass spectrometry (TIMS). As a result, it was demonstrated that the APM-TIMS method eliminated molecular ion interferences in the uranium mass region in the analysis of real inspection samples, while higher and unreasonable U-234 and U-236 atomic ratios for some particles were obtained by APM-SIMS.
机译:在核设施处采集的环境样品中单个铀颗粒的同位素比分析对于弄清它们用于核保障的起源很重要。二次离子质谱(SIMS)通常用于此目的。最近为SIMS仪器开发了一种自动粒子测量(APM)筛选软件,使我们能够在短时间内获得样品上铀同位素的扫描离子图像。可以从图像确定每个铀粒子的位置和近似同位素比。这使SIMS更加有效,因为可以在精确同位素比分析之前筛选出数千个具有正常同位素组成的铀颗粒中的几个具有不规则同位素组成的铀颗粒。但是,分子离子和/或氢化物离子的形成通常会导致光谱干扰,并且SIMS中的结果不准确。在本研究中,在通过热电离质谱(TIMS)进行精确同位素比分析之前,先应用APM筛选技术选择铀颗粒。结果表明,APM-TIMS方法在实际检测样品分析中消除了铀质量区域中的分子离子干扰,而APM获得的某些粒子的U-234和U-236原子比更高且不合理-模拟人生。

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