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Inorganic Ion Exchangers for Cesium Removal from Radioactive Wastewater

机译:无机离子交换器,用于放射性废水中的铯去除

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Ion exchange is a proven process for radioactive wastewater decontamination, where inorganic sorbents are ideal due to their thermal, chemical and radiation stability. This review focuses on the removal of Cs+ by inorganic exchangers, viz. zeolites, titanosilicates, hexacyanoferrates metal oxides and hydrous metal oxides, bentonite/clays and the key family of ammonium phosphomolybdates (AMPs). The design of new selective composites is also addressed focusing on those based on AMPs, hexacyanoferrates and titanosilicates/zeolites. Future inorganic Cs+ exchangers will encompass promising solids, like lanthanide silicates, sodium titanates and metal sulfides. The sensing ability derived from the photoluminescence properties of lanthanide silicates and the efficiency of layered gallium-antimony-sulfide materials in acidic and basic solutions disclose considerable potential for real applications. The ion exchange systems are discussed in terms of sorbent capacity and selectivity (with competitors), pH, temperature and solution salinity. The microscopic features of the exchangers and the associated mechanisms (e.g., pore size, counterions radii, dehydration energy of the ions, coordination environments in the solid exchanger, and site accessibility) are always used for interpreting the ion exchange behavior. On the whole, more than 250 publications were reviewed and a large compilation of data is provided in Supplemental Material.
机译:离子交换是放射性废水去污的经过验证的方法,其中无机吸附剂由于其热,化学和辐射稳定性而是理想的。本综述重点介绍,通过无机交换器,VIZ删除CS +。沸石,钛硅酸盐,六氰基甲腈金属氧化物和含水金属氧化物,膨润土/粘土和磷钼铵铵(AMPS)的关键家族。新选择性复合材料的设计也侧重于基于AMPS,六氰基甲酰胺和钛硅酸盐/沸石的那些。未来的无机CS +交换剂将包括有希望的固体,如镧系元素硅酸盐,钛酸钠和金属硫化物。源自镧系硅酸盐的光致发光性质的感测能力和酸性基础溶液中分层镓 - 硫化物 - 硫化物材料的效率公开了真实应用的相当潜力。离子交换系统是在吸附剂容量和选择性(具有竞争者),pH,温度和溶液盐度方面进行讨论的。交换器的显微特征和相关机构(例如,孔径,抗衡离子半径,离子的脱水能量,固体交换器中的配位环境以及现场可访问性)始终用于解释离子交换行为。总的来说,审查了超过250个出版物,并在补充材料中提供了大的数据汇编。

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