镧系元素
钒酸盐
吸附
化学
离子交换
铕
核化学
无机化学
离子
物理化学
有机化学
作者
Hai‐Yan Sun,Yang Liu,Jian Lin,Zenghui Yue,Weian Li,Jiance Jin,Qian Sun,Yuejie Ai,Mei‐Ling Feng,Xiao‐Ying Huang
标识
DOI:10.1002/anie.201912040
摘要
Abstract It is of vital importance to capture lanthanides (nuclear fission products) from waste solutions for radionuclide remediation owing to their hazards. The effective separation of lanthanides are achieved by an acid/base‐stable and radiation‐resistant vanadate, namely, [Me 2 NH 2 ]V 3 O 7 ( 1 ). It exhibits high adsorption capacities for lanthanides ( q m Eu =161.4 mg g −1 ; q m Sm =139.2 mg g −1 ). And high adsorption capacities are maintained over a pH range of 2.0–6.9 ( q m Eu =75.1 mg g −1 at low pH of 2.5). It displays high selectivity for Eu 3+ (simulant of An 3+ ) against a large excess of interfering ions. It can efficiently separate Eu 3+ and Cs + (or Sr 2+ ) with the highest separation factor SF Eu/Cs of 156 (SF Eu/Sr of 134) to date. The adsorption mechanism is revealed by calculations and XPS, EXAFS, Raman, and elemental analyses. These merits combined with facile synthesis and convenient elution makes the title vanadate a promising lanthanide scavenger for environmental remediation.
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