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Molybdenum Mass Fractions and Isotopic Compositions of International Geological Reference Materials

机译:国际地质参考资料中的钼质量分数和同位素组成

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摘要

The double-spike method with multi-collector inductively coupled plasma-mass spectrometry was used to measure the Mo mass fractions and isotopic compositions of a set of geological reference materials including the mineral molybdenite, seawater, coral, as well as igneous and sedimentary rocks. The long-term reproducibility of the Mo isotopic measurements, based on two-year analyses of NIST SRM 3134 reference solutions and seawater samples, was <= 0.07 parts per thousand (two standard deviations, 2s, n = 167) for delta Mo-98/95. Accuracy was evaluated by analyses of Atlantic seawater, which yielded a mean delta Mo-98/95 of 2.03 +/- 0.06 parts per thousand (2s, n = 30, relative to NIST SRM 3134 = 0 parts per thousand) and mass fraction of 0.0104 +/- 0.0006 mu g g(-1) (2s, n = 30), which is indistinguishable from seawater samples taken world-wide and measured in other laboratories. The comprehensive data set presented in this study serves as a reference for quality assurance and interlaboratory comparison of high-precision Mo mass fractions and isotopic compositions.
机译:采用多收集器电感耦合等离子体质谱法的双尖峰法测量了一组地质参考材料(包括辉钼矿,海水,珊瑚以及火成岩和沉积岩)中的Mo质量分数和同位素组成。根据对NIST SRM 3134参考溶液和海水样品进行的为期两年的分析,Mo同位素测量值的长期可重复性是对于Mo-98三角洲<= 0.07千分之一(两个标准偏差,2s,n = 167)。 / 95。通过对大西洋海水的分析评估了准确性,得出的平均海水Mo-98 / 95的平均增量为2.03 +/- 0.06千分之二(2s,n = 30,相对于NIST SRM 3134 = 0千分之几),质量分数为0.0104 +/- 0.0006 mu gg(-1)(2s,n = 30),与在世界范围内采集并在其他实验室中测量的海水样品没有区别。本研究中提供的综合数据集可为高精度Mo质量分数和同位素组成的质量保证和实验室间比较提供参考。

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