过氯酸盐
化学
锆
金属有机骨架
吸附
高氯酸盐
质子化
无机化学
同步加速器
铼
金属
锝
离子
核化学
有机化学
核物理学
物理
作者
Debasis Banerjee,Wenqian Xu,Zimin Nie,Lewis E. Johnson,Campbell J. Coghlan,Maria L. Sushko,Dong-Sang Kim,Michael J. Schweiger,Albert A. Kruger,Christian J. Doonan,Praveen K. Thallapally
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2016-08-05
卷期号:55 (17): 8241-8243
被引量:150
标识
DOI:10.1021/acs.inorgchem.6b01004
摘要
The efficient removal of pertechnetate (TcO4(-)) anions from liquid waste or melter off-gas solution for an alternative treatment is one of the promising options to manage (99)Tc in legacy nuclear waste. Safe immobilization of (99)Tc is of major importance because of its long half-life (t1/2 = 2.13 × 10(5) yrs) and environmental mobility. Different types of inorganic and solid-state ion-exchange materials have been shown to absorb TcO4(-) anions from water. However, both high capacity and selectivity have yet to be achieved in a single material. Herein, we show that a protonated version of an ultrastable zirconium-based metal-organic framework can adsorb perrhenate (ReO4(-)) anions, a nonradioactive surrogate for TcO4(-), from water even in the presence of other common anions. Synchrotron-based powder X-ray diffraction and molecular simulations were used to identify the position of the adsorbed ReO4(-) (surrogate for TcO4(-)) molecule within the framework.
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