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Oxidation and Hydration of U3O8 Materials Following Controlled Exposure to Temperature and Humidity

机译:控制暴露于温度和湿度下的U3O8材料的氧化和水合

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Chemical signatures correlated with uranium oxide processing are of interest to forensic science for inferring sample provenance. Identification of temporal changes in chemical structures of process uranium materials as a function of controlled temperatures and relative humidities may provide additional information regarding sample history. In this study, a high-purity alpha-U3O8 sample and three other uranium oxide samples synthesized from reaction routes used in nuclear conversion processes were stored under controlled conditions over 23.5 years, and powder X-ray diffraction analysis and X-ray absorption spectroscopy were employed to characterize chemical speciation. Signatures measured from the alpha-U3O8 sample indicated that the material oxidized and hydrated after storage under high humidity conditions over time. Impurities, such as uranyl fluoride or schoepites, were initially detectable in the other uranium oxide samples. After storage under controlled conditions, the analyses of the samples revealed oxidation over time, although the signature of the uranyl fluoride impurity diminished. The presence of schoepite phases in older uranium oxide material is likely indicative of storage under high humidity and should be taken into account for assessing sample history. The absence of a signature from a chemical impurity, such as uranyl fluoride hydrate, in an older material may not preclude its presence at the initial time of production. LA-UR-15-21495.
机译:与铀氧化物加工相关的化学特征对于推断样品出处的法医学很感兴趣。识别过程铀材料化学结构随时间变化的温度随受控温度和相对湿度的变化,可能会提供有关样品历史的其他信息。在这项研究中,从核转化过程中使用的反应路线合成的高纯度α-U3O8样品和其他三份铀氧化物样品在23.5年的受控条件下存储,粉末X射线衍射分析和X射线吸收光谱分析用于表征化学形态。从α-U3O8样品测得的签名表明,该材料在高湿度条件下储存一段时间后会氧化和水合。最初在其他铀氧化物样品中可以检测到杂质,例如铀酰氟或闪锌矿。在受控条件下储存后,样品的分析显示了随时间的氧化,尽管铀酰氟杂质的特征减弱了。较老的氧化铀材料中存在闪锌矿相,很可能表明在高湿度下的储存,在评估样品历史时应将其考虑在内。在较旧的材料中,如果没有化学杂质(如铀酰氟水合物)的签名,则可能无法排除其在生产初期的存在。 LA-UR-15-21495。

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