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Spectroscopic and first-principles calculation studies of the chemical forms of palladium ion in nitric acid solution for development of disposal of high-level radioactive nuclear wastes

机译:硝酸溶液中钯离子化学形式的光谱和第一原理计算研究,用于开发高水平放射性核废物的处理

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We have investigated the chemical forms of palladium (Pd) ion in nitric acid solution, using XAFS/UV-vis spectroscopic and first-principles methods in order to develop the disposal of high-level radioactive nuclear liquid wastes (HLLW: radioactive metal ions in 2 M nitric acid solution). The results of theoretical calculations and XAFS/UV-vis spectroscopy indicate that Pd is a divalent ion and forms a square-planar complex structure coordinated with four nitrate ions, [Pd(NOsub3/sub)sub4/sub]sup2-/sup, in nitric acid solution. This complex structure is also thermodynamically predicted to be most stable among complexes [Pd(Hsub2/subO)sub x /sub(NOsub3/sub)sub4- x /sub]sup x -2/sup ( x = 0-4). Since the overall feature of UV-vis spectra of the Pd complex was independent of nitric acid concentration in the range 1–6 M, the structure of the Pd complex remains unchanged in this range. Furthermore, we examined the influence of γ-ray radiation on the [Pd(NOsub3/sub)sub4/sub]sup2-/sup complex, using UV-vis spectroscopy, and found that UV-vis spectra seemed not to be changed even after 1.0 MGy irradiation. This implies that the Pd complex structure will be still stable in actual HLLW. These findings obtained above are useful information to develop the vitrification processes for disposal of HLLW.
机译:我们已经研究了硝酸溶液中钯(Pd)离子的化学形式,使用XAFs / UV-Vis光谱和第一原理方法,以便开发出现高水平放射性核液体废物的处理(HLLW:放射性金属离子2米硝酸溶液)。理论计算和XAFs / UV-VIS光谱的结果表明Pd是二价离子,形成与四个硝酸根离子配位的正平面络合物,[Pd(No 3 4 ] 2 - ,硝酸溶液。这种复杂结构也在热力学上预测在复合物中最稳定[Pd(H 2 o) x (no 3 4 - x ] x -2 (x = 0-4)。由于PD络合物的UV-Vis光谱的总特征与1-6μm的硝酸浓度无关,因此Pd络合物的结构在该范围内保持不变。此外,我们检查了使用UV-VI的γ射线辐射对[Pd(NO 3 ) 2 - 复合物的影响光谱学,发现即使在1.0 MGY照射后,紫外导V光谱似乎不改变。这意味着PD复杂结构在实际HLLW中仍然是稳定的。上面获得的这些发现是制定处理HLLW的玻璃化过程的有用信息。

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