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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Achieving rapid analysis of Li isotopes in high-matrix and low-Li samples with MC-ICP-MS: new developments in sample preparation and mass bias behavior of Li in ICPMSf
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Achieving rapid analysis of Li isotopes in high-matrix and low-Li samples with MC-ICP-MS: new developments in sample preparation and mass bias behavior of Li in ICPMSf

机译:使用MC-ICP-MS实现高基质和低Li样品中Li同位素的快速分析:ICPMSf中样品制备和Li的质量偏差行为的新进展

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The efficiency of accurate determination of the lithium (Li) isotopic ratio by MC-ICP-MS is limited by current chemical purification procedures and instrument settings. The elution curve drifts significantly for matrices with a high matrix (e.g., Ca), and must therefore be checked frequently. The mass bias behavior of Li in inductively coupled plasma mass spectrometry (ICPMS) is unclear, which restricts the analysis of Li isotope compositions at low signal intensities. A novel method to purify Li and analyze the Li isotopic ratio is robust for a large variety of samples, where the efficient capacity of the resin is improved. The time required for purification and the volume of acid are significantly decreased, and cation-exchange resins can be easily and rapidly cleaned for re-use. Shift of the Li elution peaks is diminished. The mass bias behavior of Li isotopes in the ICP is revealed through high-resolution imaging of Li intensity and isotopic ratio, and the most stable zone is identified. The method has been validated by analysis of standard geological reference materials over 1.5 years. We report the Li isotope composition of a dolomite standard GSR-12 (delta Li-7 = 13.55 +/- 0.37 parts per thousand, 2 sigma). The long-term external precision of this method is better than +/- 0.47 parts per thousand (2 sigma) for delta Li-7, and is suitable for analysis of geological samples. The new method is faster, but also precise and accurate.
机译:通过MC-ICP-MS准确测定锂(Li)同位素比的效率受到当前化学纯化程序和仪器设置的限制。对于具有高基质(例如Ca)的基质,洗脱曲线会发生明显漂移,因此必须经常检查。 Li在电感耦合等离子体质谱法(ICPMS)中的质量偏置行为尚不清楚,这限制了在低信​​号强度下对Li同位素组成的分析。纯化Li并分析Li同位素比的新方法对于各种样品都非常可靠,从而提高了树脂的有效容量。纯化所需的时间和酸的量显着减少,阳离子交换树脂可以轻松,快速地清洗以便再次使用。 Li洗脱峰的移动被减小。通过高分辨率的Li强度和同位素比成像,揭示了ICP中Li同位素的质量偏差行为,并确定了最稳定的区域。该方法已通过对标准地质参考材料进行1.5年的分析验证。我们报告了白云岩标准GSR-12的锂同位素组成(δLi-7 = 13.55 +/- 0.37千分之一,2 sigma)。这种方法的长期外部精度优于Delta Li-7的+/- 0.47千分之(2 sigma),适用于地质样品分析。新方法更快,但又精确又准确。

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  • 来源
    《Journal of Analytical Atomic Spectrometry 》 |2019年第7期| 1503-1513| 共11页
  • 作者单位

    Chinese Acad Geol Sci, Inst Geol, MNR Key Lab Deep Earth Dynam, MNR Key Lab Isotope Geol, Beijing, Peoples R China;

    Nanjing Univ, Dept Earth Sci, State Key Lab Mineral Deposits Res, Nanjing, Jiangsu, Peoples R China;

    Chinese Acad Geol Sci, Inst Geol, MNR Key Lab Deep Earth Dynam, MNR Key Lab Isotope Geol, Beijing, Peoples R China;

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