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Critical need for plutonium and uranium isotopic standards with lower uncertainties

机译:对不确定性较低的standards和铀同位素标准品的迫切需求

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摘要

Certified reference materials (CRMs) traceable to national and international safeguards database are a critical prerequisite for ensuring that nuclear measurement systems are free of systematic biases. CRMs are used to validate measurement processes associated with nuclear analytical laboratories. Diverse areas related to nuclear safeguards are impacted by the quality of the CRM standards available to analytical laboratories. These include: nuclear forensics, radio-chronometry, national and international safeguards, stockpile stewardship, nuclear weapons infrastructure and nonproliferation, fuel fabrication, waste processing, radiation protection, and environmental monitoring. For the past three decades the nuclear community is confronted with the strange situation that improvements in measurement data quality resulting from the improved accuracy and precision achievable with modern multi-collector mass spectrometers could not be fully exploited due to large uncertainties associated with CRMs available from New Brunswick Laboratory (NBL) that are used for instrument calibration and measurement control. Similar conditions prevail for both plutonium and uranium isotopic standards and for impurity element standards in uranium matrices. Herein, the current status of U and Pu isotopic standards available from NBL is reviewed. Critical areas requiring improvement in the quality of the nuclear standards to enable the U. S. and international safeguards community to utilize the full potential of modern multi-collector mass spectrometer instruments are highlighted.
机译:可溯源到国家和国际保障数据库的经认证的参考材料(CRM)是确保核测量系统不受系统偏差的关键先决条件。 CRM用于验证与核分析实验室相关的测量过程。分析实验室可获得的CRM标准的质量会影响与核保障有关的各个领域。其中包括:核法证学,射电计时,国家和国际保障,库存管理,核武器基础设施和不扩散,燃料制造,废物处理,辐射防护和环境监测。在过去的三十年中,核社区面临着一种奇怪的情况,即由于新的CRM提供的不确定性很大,无法充分利用现代多收集器质谱仪可实现的精度和精度提高所带来的测量数据质量的提高不伦瑞克实验室(NBL),用于仪器校准和测量控制。 p和铀同位素标样以及铀基质中的杂质元素标样都适用相似的条件。在此,回顾了可从NBL获得的U和Pu同位素标准品的现状。重点强调了需要改进核标准质量的关键领域,以使美国和国际保障界能够充分利用现代多收集器质谱仪的全部潜力。

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