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Selective capture and separation of xenon and krypton using metal organic frameworks: a review
被引:0
|作者:
Yilun Zhou
Jingyi Wang
Yujie Zhao
He Gu
Zhongshan Chen
Hui Yang
Xiangke Wang
机构:
[1] North China Electric Power University,College of Environmental Science and Engineering
来源:
Frontiers of Chemical Science and Engineering
|
2023年
/
17卷
关键词:
metal organic frameworks;
xenon;
krypton;
selective separation;
used nuclear fuel;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
Xenon and krypton are widespread useful noble gases in commercial lighting, lasers, electronics, and medical industry. At the same time, radioactive noble gases may proliferate from used nuclear fuel and diffuse in open atmospheres. Metal organic frameworks as hotspot porous materials for gases uptake and separation are considered to be potential solutions. In this review, we comprehensively summarized recent researches on metal organic frameworks for selective capture and separation of xenon and krypton. Particularly, we followed the aspects of different optimal design strategies, including optimal pore/cage size and geometry, open metal sites, ions (anions and cations), and polar functional groups for enhancing the xenon adsorption and separation performances. Meanwhile, a comparison of each strategy and the mechanisms of xenon/krypton separation were pointed out. The separation of krypton from gases mixtures by dual-bed systems was further discussed. Finally, some existing challenges and opportunities for possible real applications were proclaimed.
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页码:1895 / 1912
页数:17
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