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Chemical forms of molybdenum ion in nitric acid solution studied using liquid-phase X-ray absorption fine structure, Ultraviolet-Visible absorption spectroscopy and first-principles calculations

机译:用液相X射线吸收细结构研究硝酸溶液中钼离子的化学形式,紫外 - 可见吸收光谱和第一原理计算

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We have investigated chemical forms of molybdenum ion in nitric acid solution, using liquid-phase X-ray absorption fine structure, ultraviolet-visible absorption spectroscopy and first-principles calculations, from a viewpoint of disposal of high-level radioactive nuclear liquid wastes. The experimental and theoretical results indicated that Mo is a hexavalent ion and forms a hexa-coordination binuclear-structured complex in the 2 M nitic acid solution. The predominant chemical species of Mo complexes in the 2 M nitric acid solution (which is used for HLLW) are assigned to be [Mo2O5(H2O)(6)](2+) and [Mo2O4(OH)(H2O)(6)](3+). These species may play a crucial role of forming so-called yellow-phase in vitrified objects.
机译:我们在硝酸溶液中研究了钼离子的化学形式,从液相X射线吸收细结构,从处置高水平放射性核液体废物的观点来看,紫外线可见吸收光谱和第一原理计算。 实验和理论结果表明,Mo是六价离子,在2M甲酸溶液中形成六核协调双核结构络合物。 2米硝酸溶液(用于HLLW)的Mo复合物的主要化学物质被分配为[Mo2O5(H 2 O)(6)](2+)和[Mo2O 4(OH)(H 2 O)(6) ](3+)。 这些物种可能在玻璃化物体中形成所谓的黄相的关键作用。

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