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A Sampling Method for Semi-Quantitative and Quantitative Electron Microprobe Analysis of Glass Surfaces

机译:一种采样方法,用于玻璃表面的半定量和定量电子微探剂分析

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The determination of the long-term stability and corrosion of vitrified nuclear waste is an important aspect of research for the U.S. Department of Energy (DOE). It is necessary to understand the rate and mechanisms of Nuclear Waste Glass (NWG) corrosion to determine whether or not the glassy matrix will be able to retain radionuclides for the required repository performance time period. Glass corrosion and the rate of glass corrosions is determined by both chemical and microscopy. Electron Microprobe Analysis (EPMA) is a common and powerful method utilized in the examination of the chemographic difference between corroded and uncorroded NGWs. In this work, two forms of quantitative and semi-quantitative EPMA methods are defined by optimizing the instruments counting statistics against a standard glass and NIST minerals that have compositions similar to the glasses under examination. Data collected on both the planar and cross-sectioned surfaces of an unaltered simulated NWG by Standard based Wavelength Dispersive Spectroscopy (WDS) was found to be comparable to the theoretical composition of the glass. Conventional standardless Energy Dispersive Spectroscopy (EDS) data collected on the same surfaces was not comparable. However, standard-based EDS analysis is shown to be able to discriminate between unaltered and corroded glass surfaces.
机译:玻璃化核废料的长期稳定性和腐蚀的测定是美国能源部(DOE)研究的重要方面。有必要了解核废料玻璃(NWG)腐蚀的速率和机制,以确定玻璃基质是否能够在所需的储存库性能时间段内保留放射性核素。玻璃腐蚀和玻璃腐蚀速率由化学和显微镜术决定。电子微探测分析(EPMA)是在检查腐蚀和未旋律的NGWs之间的化学差异的常见和强大的方法。在这项工作中,通过优化对标准玻璃和NIST矿物质的仪器来定义两种形式的定量和半定量EPMA方法,所述标准玻璃和NIST矿物质具有与在检查中的眼镜类似的玻璃相似的标准玻璃和NIST矿物质。通过标准基于标准的波长分散体光谱(WDS)的非膨胀模拟NWG的平面和横截面上收集的数据被发现与玻璃的理论成分相当。在同一表面上收集的常规无标尺能量分散光谱(EDS)数据不可比较。然而,示出了基于标准的EDS分析能够区分不置换和腐蚀的玻璃表面。

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