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使基于氟化金属有机框架的膜能够同时从天然气中去除硫化氢和二氧化碳。

Enabling Fluorinated MOF-Based Membranes for Simultaneous Removal of H S and CO from Natural Gas.

作者信息

Liu Gongping, Cadiau Amandine, Liu Yang, Adil Karim, Chernikova Valeriya, Carja Ionela-Daniela, Belmabkhout Youssef, Karunakaran Madhavan, Shekhah Osama, Zhang Chen, Itta Arun K, Yi Shouliang, Eddaoudi Mohamed, Koros William J

机构信息

School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Dr. NW, Atlanta, GA, 30332, USA.

College of Chemical Engineering, Nanjing Tech University, 5 Xinmofan Road, Nanjing, 210009, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2018 Nov 5;57(45):14811-14816. doi: 10.1002/anie.201808991. Epub 2018 Oct 11.

Abstract

Membrane-based gas separations are energy efficient processes; however, major challenges remain to develop high-performance membranes enabling the replacement of conventional separation processes. Herein, a new fluorinated MOF-based mixed-matrix membrane is reported, which is formed by incorporating the MOF crystals into selected polymers via a facile mixed-matrix approach. By finely controlling the molecular transport in the channels through the MOF apertures tuned by metal pillars and at the MOF-polymer interfaces, the resulting fluorinated MOF-based membranes exhibit excellent molecular sieving properties. These materials significantly outperform state-of-the-art membranes for simultaneous removal of H S and CO from natural gas-a challenging and economically important application. The robust fluorinated MOFs (NbOFFIVE-1-Ni, AlFFIVE-1-Ni), pave a way to efficient membrane separation processes that require precise discrimination of closely sized molecules.

摘要

基于膜的气体分离是节能过程;然而,要开发能够替代传统分离过程的高性能膜仍面临重大挑战。在此,报道了一种新型的基于氟化金属有机框架(MOF)的混合基质膜,它是通过一种简便的混合基质方法将MOF晶体掺入选定的聚合物中形成的。通过精细控制通过由金属柱调节的MOF孔道以及在MOF-聚合物界面处的分子传输,所得的基于氟化MOF的膜表现出优异的分子筛分性能。对于从天然气中同时去除硫化氢和二氧化碳这一具有挑战性且经济上重要的应用,这些材料显著优于现有技术的膜。坚固的氟化MOF(NbOFFIVE-1-Ni,AlFFIVE-1-Ni)为需要精确区分尺寸相近分子的高效膜分离过程铺平了道路。

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