钍
化学
吸附
萃取(化学)
铀
碳纤维
稀土元素
独居石
介孔材料
镧系元素
无机化学
核化学
放射化学
离子
稀土
催化作用
矿物学
材料科学
冶金
色谱法
物理化学
有机化学
地质学
复合材料
古生物学
复合数
锆石
作者
Zijie Wang,Alexander Brown,Kui Tan,Yves J. Chabal,Kenneth J. Balkus
摘要
Liquid fluoride thorium reactors have been considered as replacements for uranium-based nuclear reactors, having many economic and environmental advantages. The production of thorium is usually accompanied by the separation of thorium from rare earth elements since the major thorium production mineral, monazite, contains other rare earth elements. The conventional manufacturing process involves a liquid–liquid extraction with organic ligands. There is a need to develop solid state absorbents with good reusability for metal ion separation processes. Porous carbon is particularly interesting due to acid/base resistance. A new absorbent, surface-oxidized wrinkled mesoporous carbon (WMC-O), has been prepared for the selective extraction of thorium ions from rare earth ions. WMC-O shows high selectivity for thorium adsorption due to the 4+ oxidation state of thorium. The distribution coefficient (Kd) of the WMC-O for thorium from all rare earth elements is 2 orders of magnitude larger than that of surface-oxidized activated carbon (13 × 104 vs 35 × 102 at pH 2.15). WMC-O also shows a high adsorption capacity for pure rare earth ions (Kd > 3 × 105). These features make WMC-O a promising absorbent for thorium extraction and rare earth ion recovery.
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