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用于气体和液体分离的工程金属有机骨架(MOF)基膜

Engineering Metal-Organic-Framework (MOF)-Based Membranes for Gas and Liquid Separation.

作者信息

Duan Yutian, Li Lei, Shen Zhiqiang, Cheng Jian, He Kewu

机构信息

College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China.

SINOPEC Nanjing Research Institute of Chemical Industry Co., Ltd., Nanjing 210048, China.

出版信息

Membranes (Basel). 2023 Apr 29;13(5):480. doi: 10.3390/membranes13050480.

Abstract

Separation is one of the most energy-intensive processes in the chemical industry, and membrane-based separation technology contributes significantly to energy conservation and emission reduction. Additionally, metal-organic framework (MOF) materials have been widely investigated and have been found to have enormous potential in membrane separation due to their uniform pore size and high designability. Notably, pure MOF films and MOF mixed matrix membranes (MMMs) are the core of the "next generation" MOF materials. However, there are some tough issues with MOF-based membranes that affect separation performance. For pure MOF membranes, problems such as framework flexibility, defects, and grain orientation need to be addressed. Meanwhile, there still exist bottlenecks for MMMs such as MOF aggregation, plasticization and aging of the polymer matrix, poor interface compatibility, etc. Herein, corresponding methods are introduced to solve these problems, including inhibiting framework flexibility, regulating synthesis conditions, and enhancing the interaction between MOF and substrate. A series of high-quality MOF-based membranes have been obtained based on these techniques. Overall, these membranes revealed desired separation performance in both gas separation (e.g., CO, H, and olefin/paraffin) and liquid separation (e.g., water purification, organic solvent nanofiltration, and chiral separation).

摘要

分离是化学工业中能耗最高的过程之一,基于膜的分离技术对节能减排有显著贡献。此外,金属有机框架(MOF)材料已得到广泛研究,并且由于其孔径均匀和高可设计性,在膜分离中具有巨大潜力。值得注意的是,纯MOF膜和MOF混合基质膜(MMM)是“下一代”MOF材料的核心。然而,基于MOF的膜存在一些影响分离性能的棘手问题。对于纯MOF膜,需要解决诸如骨架柔性、缺陷和晶粒取向等问题。同时,MMM也仍然存在瓶颈,如MOF团聚、聚合物基体的增塑和老化、界面相容性差等。在此,介绍了相应的解决这些问题的方法,包括抑制骨架柔性、调节合成条件以及增强MOF与基底之间的相互作用。基于这些技术已获得了一系列高质量的基于MOF的膜。总体而言,这些膜在气体分离(如CO、H和烯烃/石蜡)和液体分离(如水净化、有机溶剂纳滤和手性分离)中均表现出理想的分离性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/679a/10221405/f07e1c2e6800/membranes-13-00480-g001.jpg

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