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Insights into the sonochemical synthesis and properties of salt-free intrinsic plutonium colloids

机译:无盐固有intrinsic胶体的声化学合成和性质的见解

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摘要

Fundamental knowledge on intrinsic plutonium colloids is important for the prediction of plutonium behaviour in the geosphere and in engineered systems. The first synthetic route to obtain salt-free intrinsic plutonium colloids by ultrasonic treatment of PuO2 suspensions in pure water is reported. Kinetics showed that both chemical and mechanical effects of ultrasound contribute to the mechanism of Pu colloid formation. In the first stage, fragmentation of initial PuO2 particles provides larger surface contact between cavitation bubbles and solids. Furthermore, hydrogen formed during sonochemical water splitting enables reduction of Pu(IV) to more soluble Pu(III), which then re-oxidizes yielding Pu(IV) colloid. A comparative study of nanostructured PuO2 and Pu colloids produced by sonochemical and hydrolytic methods, has been conducted using HRTEM, Pu LIII-edge XAS, and O K-edge NEXAFS/STXM. Characterization of Pu colloids revealed a correlation between the number of Pu-O and Pu-Pu contacts and the atomic surface-to-volume ratio of the PuO2 nanoparticles. NEXAFS indicated that oxygen state in hydrolytic Pu colloid is influenced by hydrolysed Pu(IV) species to a greater extent than in sonochemical PuO2 nanoparticles. In general, hydrolytic and sonochemical Pu colloids can be described as core-shell nanoparticles composed of quasi-stoichiometric PuO2 cores and hydrolyzed Pu(IV) moieties at the surface shell.
机译:关于内在p胶体的基础知识对于预测地球圈和工程系统中behavior的行为很重要。报道了通过超声处理纯水中的PuO2悬浮液获得无盐内在col胶体的第一种合成途径。动力学表明,超声的化学和机械作用均有助于Pu胶体形成的机理。在第一阶段,初始PuO2颗粒的碎裂会在空化气泡和固体之间提供更大的表面接触。此外,在声化学水分解过程中形成的氢能够将Pu(IV)还原为更易溶解的Pu(III),然后再氧化产生Pu(IV)胶体。使用HRTEM,Pu LIII-edge XAS和O K-edge NEXAFS / STXM对通过声化学和水解方法生产的纳米结构PuO2和Pu胶体进行了比较研究。 Pu胶体的表征揭示了Pu-O和Pu-Pu接触的数量与PuO2纳米粒子的原子表面体积比之间的相关性。 NEXAFS表明,与声化学PuO2纳米颗粒相比,水解的Pu(IV)物种对水解Pu胶体中氧状态的影响更大。通常,水解和声化学Pu胶体可以描述为核壳纳米粒子,由准化学计量的PuO2核和表面壳上的水解Pu(IV)部分组成。

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