首页> 美国卫生研究院文献>Journal of Research of the National Institute of Standards and Technology >36Cl/Cl Accelerator-Mass-Spectrometry Standards: Verification of Their Serial-Dilution-Solution Preparations by Radioactivity Measurements
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36Cl/Cl Accelerator-Mass-Spectrometry Standards: Verification of Their Serial-Dilution-Solution Preparations by Radioactivity Measurements

机译:36Cl / Cl加速器质谱法标准:通过放射性测量验证其连续稀释溶液的制备

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摘要

A consortium of accclerator-mass-spectrometry (AMS) laboratories recently prepared a series of 36Cl/Cl isotopic ratio AMS standards by an eight-step serial gravimetric dilution scheme. Of the resulting nine solutions, only the latter six could be assayed by AMS to confirm the gravimetric dilution factors. This paper provides the results of relative radioactivity measurements on the first four solutions to verify the first three dilution factors. The fourth solution was the only dilution capable of being directly measured by both AMS and radionuclidic metrology of 36Cl, and therefore its assay by radioactivity counting was deemed of considerable importance. Assays were performed by 4πβ liquid scintillation (LS) counting of gravimetric aliquots of the solutions, with confirmatory measurements by 2πβ gas-flow proportional counting of gravimetrically-prepared solid sources. The radioactivity measurements on the fourth solution were complex and difficult because of the conflicting combination of a low activity concentration (0.036 Bq · g−1) and high salt content (146 mg NaCl per g of solution). These conditions necessitated independent studies of the 36Cl LS efficiency as a function of NaCl loading in the LS cocktails and of the feasibility of LS counting of precipitated samples, both of which are also reported here. The results of the radioactivity measurements confirmed the dilution factors for the first three solutions to absolute differences of about 1%, and that for the fourth solution to about 1% to 2%. The overall uncertainties for these verification measurements, at a relative three standard deviation uncertainty interval, were of comparable magnitude, i.e., in the range of ±1% to ±2% for the first three solutions and roughly ±3% for the fourth solution.
机译:加速器质谱实验室(AMS)实验室联盟最近通过八步连续重量分析法制备了一系列 36 Cl / Cl同位素比AMS标准品。在所得的九种溶液中,只有后六种可以通过AMS进行测定,以确认重量稀释因子。本文提供了前四个溶液的相对放射性测量结果,以验证前三个稀释因子。第四种溶液是唯一能够通过AMS和放射性核素计量学方法直接测量 36 Cl的稀释液,因此,通过放射性计数进行测定被认为具有重要意义。通过溶液的重量等分试样的4πβ-液体闪烁(LS)计数进行测定,并通过2πβ-气流比例计数法对固体制备的固体源进行确认性测量。由于低浓度(0.036 Bq·g -1 )和高盐含量(每克溶液含146 mg NaCl)的相互矛盾的组合,第四种溶液的放射性测量非常复杂且困难。这些条件需要独立研究 36 Cl LS效率与LS混合物中NaCl含量的关系,以及LS计数沉淀样品的可行性,这两个方面也都在此报道。放射性测量的结果证实了前三种溶液的稀释因子的绝对差异约为1%,而第四种溶液的稀释因子的绝对差异约为1%至2%。在相对的三个标准偏差不确定性区间内,这些验证测量的总体不确定性具有可比较的幅度,即前三个解决方案的范围在±1%到±2%之间,第四种解决方案的范围在大约±3%之间。

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