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Speciation of Uranium in Fernald Soils by Molecular Spectroscopic Methods: Characterization of Untreated Soils

机译:分子光谱法中Fernald土壤中铀的形态:未处理土壤的表征

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摘要

A combination of X-ray absorption, optical luminescence, and Raman vibrational spectroscopies along with ancillary techniques such as energy dispersive scanning electron microscopy and powder X-ray diffraction have been used to determine the chemical form of uranium in contaminated soils from the United States Department of Energy’s (DOE) former uranium production facility located at Fernald, OH (30 km NW of Cincinnati). The analyses described here have been carried out on soil samples prior to the application of various decontamination technologies under development within the DOE’s Uranium in Soils Integrated Demonstration Project. X-ray absorption studies have shown that ~75-95% of the uranium in bulk samples from the site are in the hexavalent oxidation state. Because of the variety of source terms having several initial oxidation states, this consistency in oxidation state indicates that weathering has had an important role in determining the chemical form of the uranium in the soil. The application of complementary spectroscopic techniques has enabled us to identify specific chemical forms of much of this uranium, namely, autunite-like and schoepite-like phases. Additional uranium minerals were also noted, and their photodecomposition and spatial correlation with source term suggest that they may be uranium species complexed by photochemically degradable organic ligands.
机译:X射线吸收,光致发光,和拉曼振动光谱的与辅助技术,例如能量分散型扫描电子显微镜和X-射线粉末衍射沿的组合已被用于确定在从美国部污染土壤铀的化学形式的能源部(DOE)原铀产量位于弗纳尔德,OH(辛辛那提30公里NW)设施。这些分析说明这里之前已经不同去污技术的应用正在开发的美国能源部的土壤综合示范项目铀矿范围内开展对土壤样本。 X射线吸收的研究显示,从网站散装样品中的铀的〜75-95%的六价氧化态。由于该品种具有多个初始氧化态源术语的,在氧化态这种一致性表明,风化已确定在土壤中铀的化学形式的重要作用。互补的光谱技术的应用,使我们能够确定的多本铀特定的化学形式,即钙铀云母状和schoepite样阶段。另外的铀矿物中还指出,他们的光解,并与源项空间相关性表明它们可能是通过光化学降解有机配体复合物的铀物质。

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