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99 TcO 4 ? remediation by a cationic polymeric network

机译:99 TcO 4吗?阳离子聚合网络的修复

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Direct removal of 99TcO4? from the highly acidic solution of used nuclear fuel is highly beneficial for the recovery of uranium and plutonium and more importantly aids in the elimination of 99Tc discharge into the environment. However, this task represents a huge challenge given the combined extreme conditions of super acidity, high ionic strength, and strong radiation field. Here we overcome this challenge using a cationic polymeric network with significant TcO4? uptake capabilities in four aspects: the fastest sorption kinetics, the highest sorption capacity, the most promising uptake performance from highly acidic solutions, and excellent radiation-resistance and hydrolytic stability among all anion sorbent materials reported. In addition, this material is fully recyclable for multiple sorption/desorption trials, making it extremely attractive for waste partitioning and emergency remediation. The excellent TcO4? uptake capability is elucidated by X-ray absorption spectroscopy, solid-state NMR measurement, and density functional theory analysis on anion coordination and bonding.
机译:直接去除99TcO4?废旧核燃料的高酸性溶液中的有机物对铀和p的回收非常有益,更重要的是有助于消除向环境中排放的99Tc。但是,考虑到超酸度,高离子强度和强辐射场的综合极端条件,这项任务代表了巨大的挑战。在这里,我们使用具有明显TcO4的阳离子聚合物网络克服了这一挑战。在四个方面的吸收能力:在所有报道的阴离子吸附剂材料中,最快的吸附动力学,最高的吸附能力,最强的酸性溶液吸收性能以及出色的抗辐射性和水解稳定性。此外,这种材料可完全回收利用,用于多次吸附/解吸试验,因此对废物分配和紧急修复极为有吸引力。出色的TcO4?通过X射线吸收光谱法,固态NMR测量以及对阴离子配位和键合的密度泛函理论分析来阐明其吸收能力。

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