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首页> 外文期刊>Journal of Colloid and Interface Science >Examination of the effect of alpha radiolysis on plutonium(V) sorption to quartz using multiple plutonium isotopes
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Examination of the effect of alpha radiolysis on plutonium(V) sorption to quartz using multiple plutonium isotopes

机译:使用多种p同位素检查α辐射分解对p(V)吸附到石英的影响

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The objective of this research was to determine if radiolysis at the mineral surface was a plausible mechanism for surface-mediated reduction of plutonium. Batch sorption experiments were used to monitor the amount of plutonium sorbed to high-purity quartz as a function of time, pH, and total alpha radioactivity. Three systems were prepared using both ~(238)Pu and ~(242)Pu in order to increase the total alpha radioactivity of the mineral suspensions while maintaining a constant plutonium concentration. The fraction of sorbed plutonium increased with increasing time and pH regardless of the total alpha radioactivity of the system. Increasing the total alpha radioactivity of the solution had a negligible effect on the sorption rate. This indicated that surface-mediated reduction of Pu(V) in these systems was not due to radiolysis. Additionally, literature values for the Pu(V) disproportionation rate constant did not describe the experimental results. Therefore, Pu(V) disproportionation was also not a main driver for surface-mediated reduction of plutonium. Batch desorption experiments and X-ray absorption near edge structure spectroscopy were used to show that Pu(IV) was the dominant oxidation state of sorbed plutonium. Thus, it appears that the observed surface-mediated reduction of Pu(V) in the presence of high-purity quartz was based on the thermodynamic favorability of a Pu(IV) surface complex.
机译:这项研究的目的是确定矿物表面的辐射分解是否是表面介导的reduction还原的合理机制。分批吸附实验用于监测作为时间,pH和总α放射性的函数吸附到高纯度石英上的p的量。使用〜(238)Pu和〜(242)Pu制备了三个系统,以提高矿物悬浮液的总α放射性,同时保持a的浓度恒定。 time的分数随时间和pH值的增加而增加,而与系统的总α放射性无关。增加溶液的总α放射性对吸附速率的影响可忽略不计。这表明在这些系统中Pu(V)的表面介导还原不是由于放射分解。此外,Pu(V)歧化速率常数的文献值没有描述实验结果。因此,Pu(V)歧化也不是表面介导还原reduction的主要驱动力。批处理脱附实验和近边缘结构X射线吸收光谱表明,Pu(IV)是的主要氧化态。因此,似乎在高纯度石英存在下观察到的表面介导的Pu(V)还原是基于Pu(IV)表面络合物的热力学适应性。

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