含有功能化 MOF 和二维材料的混合基质膜在 CO2/N2 分离和 CO2/CH4 分离方面取得的进展

Guoqiang Li , Joanna Kujawa , Katarzyna Knozowska , Aivaras Kareiva , Eric Favre , Christophe Castel , Wojciech Kujawski
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引用次数: 0

摘要

二氧化碳分离在应对温室效应引起的气候变化以及提高天然气和沼气的能源质量方面发挥着至关重要的作用。高效的二氧化碳分离技术非常必要。膜分离技术因其优势在二氧化碳分离过程中尤其具有吸引力。然而,权衡关系限制了聚合物膜在气体分离过程中的气体分离效率。因此,有必要制备用于二氧化碳分离的高性能膜,如混合基质膜(MMMs)。本综述主要关注含有各种填料(如改性 ZIF、MOF 和 GO)的 MMMs 以及新兴的基于 MOF 的复合材料、二维 MOF 和二维 MXene 的制备方法、材料性能和二氧化碳分离效率。改性填料与聚合物基体具有更高的相容性,从而提高了 MMM 的机械稳定性和二氧化碳分离效率。二维材料由于其层状结构和对气体传输途径的有效调节,可大大提高 MMMs 的二氧化碳分离效率。最后,介绍了填料和 MMMs 在气体分离过程中的未来发展方向和结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The advancements in mixed matrix membranes containing functionalized MOFs and 2D materials for CO2/N2 separation and CO2/CH4 separation

CO2 separation plays a crucial role in tackling the climate change induced by the greenhouse effects and improving the energy quality of natural gas and biogas. The efficient CO2 separation technology is highly required. Membrane separation technology is particularly attractive in CO2 separation processes owing to its advantages. However, the trade-off relationship limited the gas separation efficiency of polymeric membranes in gas separation processes. Therefore, it is necessary to prepare the high-performance membranes such as mixed matrix membranes (MMMs) for CO2 separation. This review mainly focuses on the preparation methods, the material properties and the CO2 separation efficiency of the MMMs containing various fillers such as modified ZIFs, MOFs, and GO, and the emerging MOF-based composites, 2D MOFs and 2D MXene. The modified fillers demonstrated higher compatibility with polymer matrix, resulting in enhanced mechanical stability and CO2 separation efficiency of MMMs. 2D materials could significantly enhance the CO2 separation efficiency of MMMs, owing to their layered structure and the effective regulation of gas transport ways. Finally, the future direction and conclusions of fillers and MMMs in gas separation processes are provided.

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