首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Removal of soluble uranium by illite supported nanoscale zero-valent iron: electron transfer processes and incorporation mechanisms
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Removal of soluble uranium by illite supported nanoscale zero-valent iron: electron transfer processes and incorporation mechanisms

机译:通过Illite支撑纳米级零价铁的去除可溶性铀:电子转移过程和掺入机制

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摘要

In this study, natural illite is introduced to support nanoscale zero valent iron (NZVI). The chemical composition and the physical properties of illite supported nanoscale zero valent iron (I-NZVI) are systematically investigated, and I-NZVI is found to significantly reduce the agglomeration of the NZVI particles. A comparison of the U removal capacity between I-NZVI and NZVI over various reaction times is then conducted. With an initial concentration of U at 200 mu g/L, the I-NZVI removal capacity of U is as high as 3.41 mg U/g Fe, in contrast to 2.01 mg U/g Fe by NZVI at a dosage of 0.1 g/L. The initial pH of the reaction system determines the U removal capacity of I-NZVI, since it controls the speciation of U and the electron transfer processes during the reaction. Overall, based on the comprehensive understandings of the morphological change, variations in the crystalline structure, and the valence states of U and Fe, the removal mechanisms of U by I-NZVI can be concluded as the following processes: (1) the adsorption and incorporation of U(VI) onto the surface of I-NZVI, (2) the incorporation and reduction of U(V) into Fe(II), and (3) the reduction and precipitation of U(IV) with iron.
机译:在这项研究中,引入了天然的伊利石来支持纳米级零价铁(NZVI)。系统地研究了Imlite支持纳米级零价铁(I-NZVI)的化学成分和物理性质,发现I-NZVI显着降低了NZVI颗粒的附聚。然后进行在各种反应时间内对I-NZVI和NZVI之间的U去除容量进行比较。用200μmg/ l的初始浓度,U-NZVI除去容量高达3.41mg U / g FE,与0.1g / L.反应体系的初始pH确定I-NZVI的u去除容量,因为它控制了反应过程中U和电子转移过程的形态。总体而言,基于对形态变化的全面谅解,结晶结构的变化,以及U和Fe的u和Fe的效柄状态,可以得出以下方法:(1)吸附和将U(VI)掺入I-NZVI,(2)将U(V)的掺入和减少到Fe(II)中,以及(3)用铁的U(IV)的还原和沉淀。

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