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利用裂变径迹识别铀颗粒,并通过热电离质谱法对单个颗粒进行微取样分析。

Identifying uranium particles using fission tracks and microsampling individual particles for analysis using thermal ionization mass spectrometry.

作者信息

Esaka Fumitaka, Suzuki Daisuke, Magara Masaaki

机构信息

Research Group for Analytical Chemistry, Japan Atomic Energy Agency , 2-4 Shirakata-Shirane, Tokai, Naka, Ibaraki 319-1195, Japan.

出版信息

Anal Chem. 2015 Mar 3;87(5):3107-13. doi: 10.1021/acs.analchem.5b00236. Epub 2015 Feb 20.

Abstract

The analysis of isotope ratios in individual particles found in the environment is important to clarify the origins of the particles. In particular, the analysis of uranium particles in environmental samples from nuclear facilities is useful for detecting undeclared nuclear activities related to the production of nuclear weapons. Thermal ionization mass spectrometry (TIMS) combined with a fission track technique is an efficient method for determining the isotope ratios of individual uranium particles, but has a drawback called "particle-mixing". When some uranium particles are measured as a single particle and an average isotope ratio for the particles is obtained, it is called "particle mixing". This may lead to erroneous conclusions in terms of the particle sources that are identified. In the present study, microsampling using a scanning electron microscope was added to the fission track-TIMS procedure. The analysis of a mixture of SRM 950a and CRM U100 reference materials containing uranium particles indicated that particle mixing was almost completely avoided using the proposed technique. The performance of the proposed method was sufficient for obtaining reliable data for the sources of individual particles to be identified reliably.

摘要

对环境中单个颗粒的同位素比值进行分析,对于厘清颗粒的来源很重要。特别是,对核设施环境样品中的铀颗粒进行分析,有助于检测与核武器生产相关的未申报核活动。热电离质谱法(TIMS)与裂变径迹技术相结合,是测定单个铀颗粒同位素比值的有效方法,但存在一个名为“颗粒混合”的缺点。当一些铀颗粒作为单个颗粒进行测量并获得颗粒的平均同位素比值时,这就称为“颗粒混合”。这可能会在确定颗粒来源方面导致错误结论。在本研究中,在裂变径迹 - TIMS 程序中增加了使用扫描电子显微镜的微量取样。对含有铀颗粒的 SRM 950a 和 CRM U100 参考物质混合物的分析表明,使用所提出的技术几乎完全避免了颗粒混合。所提出方法的性能足以获得可靠数据,以便可靠地识别单个颗粒的来源。

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