首页> 外文期刊>Journal of Analytical Atomic Spectrometry >A novel sample loading method and protocol for monitoring sample fractionation for high precision Ca stable isotope ratio measurements using double-spike TIMS
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A novel sample loading method and protocol for monitoring sample fractionation for high precision Ca stable isotope ratio measurements using double-spike TIMS

机译:一种新颖的样品加样方法和协议,用于使用双尖峰TIMS监测样品分馏,以进行高精度Ca稳定同位素比测量

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The external reproducibility (2σ_(sd)) of Ca stable isotope ratio measurements (δ~(44/40)Ca) using double-spike thermal ionization mass spectrometry (TIMS) shows a large range from <0.1‰ to 0.5‰. We demonstrate that using a ~(43)Ca-~(48)Ca double spike, which allows simultaneous measurements of δ~(44/40)Ca and δ~(44/42)Ca), and analyses at moderate signal strengths (~(40)Ca ranging from 6 to 10 V), high precision δ~(44/40)Ca) (external reproducibility better than ±0.08‰, 2σ_(sd)) as well as δ~(44/42)Ca can be obtained if samples and standards are analyzed under similar fractionation conditions. To monitor the fractionation conditions, the usage of a parameter β is proposed, which measures the deviation of the ~(43)Ca/~(48)Ca ratio of the sample-double spike mixture from that of the pure double spike. A novel, low-cost sample loading technique using a combination of Re and Ta filaments and a Ta_2O_5 activator is presented which results in a steady signal. We report the δ~(44/40)Ca and δ~(44/42)Ca values, calculated w.r.t. NIST SRM 915a and reported as deviations in parts per mil (‰), of NIST standards SRM 915a (0.01, -0.02) and SRM 915b (0.73, 0.32), NASS 6 (seawater, 1.80, 0.89), USGS silicate rock standards BHVO-2 (0.86, 0.47) and BCR-2 (0.89, 0.48), Geological Survey of Japan carbonate standards JCp-1 (coral, 0.85, 0.45) and JCt-1 (clam shell, 0.83, 0.46) and ECRM 752-1 (limestone, alternative name BCS-CRM 393) (0.83, 0.46) from the Bureau of Analyzed Samples Ltd. UK. The Ca stable isotopic compositions of JCt-1 and ECRM 752-1 are reported for the first time.
机译:使用两次加标热电离质谱(TIMS)的Ca稳定同位素比率测量值(δ〜(44/40)Ca)的外部重现性(2σ_(sd))在<0.1‰至0.5‰之间有较大范围。我们证明了使用〜(43)Ca-〜(48)Ca双尖峰,可以同时测量δ〜(44/40)Ca和δ〜(44/42)Ca),并在中等信号强度下进行分析( 〜(40)Ca范围为6至10 V),高精度δ〜(44/40)Ca)(外部重现性优于±0.08‰,2σ_(sd))以及δ〜(44/42)Ca如果样品和标准品在相似的分馏条件下进行分析,则可得到。为了监测分馏条件,提出了使用参数β的方法,该参数用于测量样品-双尖峰混合物的〜(43)Ca /〜(48)Ca比与纯双尖峰的偏差。提出了使用Re和Ta灯丝以及Ta_2O_5活化剂的组合的新型低成本样品加载技术,可产生稳定的信号。我们报告δ〜(44/40)Ca和δ〜(44/42)Ca值,计算得出w.r.t. NIST SRM 915a,并报告为NIST标准SRM 915a(0.01,-0.02)和SRM 915b(0.73,0.32),NASS 6(海水,1.80、0.89),USGS硅酸盐岩标准BHVO的百万分之一(‰)偏差。 -2(0.86,0.47)和BCR-2(0.89,0.48),日本碳酸盐标准JCp-1(珊瑚,0.85,0.45)和JCt-1(蛤壳,0.83,0.46)和ECRM 752-1的地质调查(石灰石,替代名称BCS-CRM 393)(0.83,0.46),来自英国分析样品局。首次报道了JCt-1和ECRM 752-1的Ca稳定同位素组成。

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