首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Certification of natural isotopic abundance inorganic mercury reference material NIMS-1 for absolute isotopic composition and atomic weight
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Certification of natural isotopic abundance inorganic mercury reference material NIMS-1 for absolute isotopic composition and atomic weight

机译:天然同位素丰度无机汞参考物质NIMS-1的绝对同位素组成和原子量认证

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摘要

A candidate reference material of natural isotopic composition for inorganic mercury has been characterized by the Institute for National Measurement Standards of the National Research Council Canada. The material, designated NIMS-1 (natural inorganic mercury standard) is certified for isotope ratios, isotopic abundances and atomic weight of mercury. The certification was achieved using multi-collector ICP-MS based on a state-of-the-art regression model for calibration. The certified isotopic composition is x_(196) = 0.001 55(4), x_(198) = 0.100 38(10), x_(199) = 0.169 38(9), x_(200) = 0.231 38(6), x_(201) =0.131 70(12), x_(202) = 0.297 43(9) and x_(204) = 0.068 18(6) with the corresponding atomic weight of mercury A_r(Hg) = 200.5924(8). Values are presented in a concise notation whereby the expanded uncertainty with a coverage factor of two is given in parenthesis next to the least significant digits to which it applies. A full disclosure of all raw data pertinent to certification is presented in order to afford a fully transparent process. Care was taken to ensure high metrological quality in the evaluation of the accuracy and the uncertainty of the certified results. In this regard, it is superior to the best measurement from a single terrestrial source as currently recognized by IUPAC. Considering the known natural variations of Hg isotopic composition, we propose 200.592(3) as a revised assessment of the standard atomic weight of mercury.
机译:加拿大国家研究委员会国家测量标准研究所已对无机汞天然同位素组成的候选参考物质进行了表征。该材料被指定为NIMS-1(天然无机汞标准),通过了同位素比,同位素丰度和汞原子量的认证。使用基于最新回归模型进行校准的多收集器ICP-MS获得了认证。认证的同位素组成为x_(196)= 0.001 55(4),x_(198)= 0.100 38(10),x_(199)= 0.169 38(9),x_(200)= 0.231 38(6),x_ (201)= 0.131 70(12),x_(202)= 0.297 43(9)和x_(204)= 0.068 18(6),相应的汞原子量A_r(Hg)= 200.5924(8)。值以简洁的符号表示,在括号中紧随其所适用的最低有效数字之后的范围内给出了覆盖因子为2的扩展不确定性。为了提供完全透明的过程,将对与认证有关的所有原始数据进行完整披露。在评估认证结果的准确性和不确定性时要小心以确保高计量质量。在这方面,它优于IUPAC当前认可的来自单个地面源的最佳测量。考虑到汞同位素组成的已知自然变化,我们提出200.592(3)作为对汞标准原子量的修订评估。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2010年第3期|384-389|共6页
  • 作者单位

    Institute for National Measurement Standards, National Research Council Canada, Ottawa, ON, K1A 0R6, Canada;

    Institute for National Measurement Standards, National Research Council Canada, Ottawa, ON, K1A 0R6, Canada;

    Institute for National Measurement Standards, National Research Council Canada, Ottawa, ON, K1A 0R6, Canada;

    Institute for National Measurement Standards, National Research Council Canada, Ottawa, ON, K1A 0R6, Canada;

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