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Development of Analytical Procedures for Chemical Characterization of Substrates for the Production of TRISO Coated Particles as Nuclear Fuel in High Temperature Gas-Cooled Reactors

机译:基质化学表征的分析程序的研制为高温气冷反应器中核燃料生产的基材化学表征

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High temperature gas-cooled reactors have recently gained importance as a source of electricity and process heat. Nuclear fuel used in these reactors consists of TRISO (TRiple coated ISOtropic) coated particles, where spherical grains of UO 2 or UC 2 or UCO kernel are covered with four successive layers consisting of pyrolytic carbon and silicon carbide. Of great importance is the chemical purity of reagents and substances used for the production of TRISO coated fuel particles. Analytical techniques ensuring the determination of elements at trace levels are inductively coupled plasma mass spectrometry (ICP-MS) and neutron activation analysis (NAA). They were applied in this work for the chemical characterization of substrates used for TRISO fuel production. Two analytical procedures were developed: the first, where materials are analyzed using ICP-MS, and the second with the aid of NAA. Successive stages of these procedures are described with details. Results of quantitative chemical analysis of examined substances are reported as well as detection limits for the investigated elements. Moreover, the expanded uncertainties estimated for the determined elements while employing the devised analytical procedures are presented.
机译:高温气体冷却反应器最近获得了电源和工艺热源的重要性。这些反应器中使用的核燃料由Triso(三涂层各向同性)涂覆的颗粒组成,其中UO 2或UC 2或UCO内核的球形晶粒被由热解碳和碳化硅组成的四个连续层覆盖。非常重要的是用于生产Triso涂覆的燃料颗粒的试剂和物质的化学纯度。分析技术确保痕量水平的元素的测定是电感耦合等离子体质谱(ICP-MS)和中子激活分析(NAA)。它们在这项工作中适用于用于Triso燃料生产的基材的化学表征。开发了两种分析程序:首先,使用ICP-MS分析材料,第二种分析程序,以及借助NAA的第二种。这些程序的连续阶段描述了详细信息。报告了检查物质的定量化学分析结果以及调查元素的检测限。此外,介绍了在采用设计设计的分析程序的同时估计所确定的元素的扩展不确定性。

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