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使用源内共振电离质谱法检测最低数量的钚同位素。

Detection of plutonium isotopes at lowest quantities using in-source resonance ionization mass spectrometry.

机构信息

Institut für Physik, Johannes Gutenberg-Universität Mainz, Mainz, Germany.

出版信息

Anal Bioanal Chem. 2012 Nov;404(8):2163-72. doi: 10.1007/s00216-012-6238-6. Epub 2012 Aug 3.

Abstract

The in-source resonance ionization mass spectrometry technique was applied for quantification of ultratrace amounts of plutonium isotopes as a proof of principle study. In addition to an overall detection limit of 10(4) to 10(5) atoms, this method enables the unambiguous identification and individual quantification of the plutonium isotopes (238)Pu and (241)Pu which are of relevance for dating of radiogenic samples. Due to the element-selective ionization process, these isotopes can be measured even under a high surplus of isobaric contaminations from (238)U or (241)Am, which considerably simplifies chemical preparation. The technique was developed, tested, and characterized on a variety of synthetic and calibration samples and is presently applied to analyze environmental samples.

摘要

内标共振电离质谱技术被应用于对超痕量钚同位素进行定量分析,以此作为原理研究的证明。除了达到 10(4)到 10(5)个原子的总检测限之外,该方法还能够明确识别和单独定量分析与放射性样品定年相关的钚同位素(238)Pu 和(241)Pu。由于元素选择性的电离过程,即使在(238)U 或(241)Am 的同位数过剩的情况下,这些同位素也可以被测量,这大大简化了化学制备过程。该技术已在各种合成和校准样品上进行了开发、测试和表征,目前正应用于分析环境样品。

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