三重四极电感耦合等离子体质谱法测量钡同位素比值的质量分辨效应:放射性铯核素同位素分析的质量偏倚系数估算

Hiroki Shibahara, Mami Yuki, Yuki Ohishi, Yasutaka Takeuchi, Z. Yoshida
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引用次数: 1

摘要

采用三重四极电感耦合等离子体质谱法(ICP-QQQ)研究了天然丰度为Ba-130 ~ Ba-138的钡同位素同位素分析中的质量分辨效应。Ba同位素的质量偏差系数用ε(Ba)表示,由实验测定和自然丰度计算的给定同位素对的原子质量差与离子计数率比值之间的线性关系的斜率确定。研究了碰撞反应电池(CRC)气体(如氦、氢、氧化亚氮或二氧化碳)的加入对ε(Ba)的影响。Heor H2-CRC气体的ε(Ba)值较大,为+0.8 ~ +1.7% /原子质量单位。另一方面,在含有N2O或CO2的CRC气体中观测到的ε(Ba)相对较小,每原子质量单位低于+0.3%。此外,还研究了ICP-QQQ的CRC与第二四极质量分离器之间的能量鉴别势(ED)对ε(Ba)的依赖关系。最后,讨论了铯放射性核素Cs、Cs和Cs、ε(Cs)在与Ba同位素相同质量范围内的分析质量偏差系数。
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Mass Discrimination Effect in Isotope Ratio Measurement of Barium by Triple-Quadrupole Inductively Coupled Plasma-Mass Spectrometry: Estimation of Mass Bias Coefficient for Isotopic Analysis of Radioactive Cesium Nuclides
The mass discrimination effect in the isotope analyses of barium isotopes with natural abundance, from Ba-130 to Ba-138, was investigated by triple-quadrupole inductively coupled plasmamass spectrometry (ICP-QQQ). The mass bias coefficients for Ba isotopes, denoted by ε(Ba), were determined from the slope of a linear relationship between the atomic mass differences and the ratios of ion count rates for a given isotope pair experimentally determined and calculated from natural abundances. The effect of the addition of a collision-reaction cell (CRC) gas such as helium, hydrogen, nitrous oxide, or carbon dioxide on ε(Ba) was examined. Large ε(Ba) values were observed in the case of Heor H2-CRC gas, and the values were from +0.8 to +1.7% per atomic mass unit. On the other hand, ε(Ba) observed with CRC gasses containing N2O or CO2 was relatively small and below +0.3% per atomic mass unit. In addition, the dependence of the energy discrimination potential (ED) applied between the CRC and the second quadrupole mass separator of ICP-QQQ on ε(Ba) was investigated. Finally, the analytical mass bias coefficient of the radioactive cesium nuclides Cs, Cs, and Cs, ε(Cs), was discussed for ε(Ba) in the same mass range as that of Ba isotopes.
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来源期刊
Transactions of the Atomic Energy Society of Japan
Transactions of the Atomic Energy Society of Japan Energy-Nuclear Energy and Engineering
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0.50
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16
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