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- W2997643612 abstract "Abstract Polymeric membranes have been widely considered as one of the next-generation technologies for CO 2 capture from fossil fuel-derived flue gases. This separation modality requires novel polymeric materials that possess efficient CO 2 /N 2 separation properties, as well as chemical and mechanical stability for a multiyear membrane lifetime. In this paper, recent developments in polymeric membranes tailored for post-combustion carbon capture are reviewed. The selected polymeric materials encompass ether oxygen-rich polymers, polynorbornenes, ionic liquid membranes, and facilitated transport membranes. In each of the selected materials, noteworthy research efforts for material design and membrane formation are highlighted. The performances of the selected materials are compared in the CO 2 /N 2 selectivity-CO 2 permeance plot. As the only class of materials reviewed herein that have demonstrated the fabrication of thin-film composite membranes in scale, facilitated transport membranes have shown both high selectivity and permeance at relevant conditions for post-combustion carbon capture. However, comprehensive field tests are needed to resolve the technical gap between the material development and the commercial application." @default.
- W2997643612 created "2020-01-10" @default.
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- W2997643612 date "2020-03-02" @default.
- W2997643612 modified "2023-09-25" @default.
- W2997643612 title "Recent developments on polymeric membranes for CO<sub>2</sub> capture from flue gas" @default.
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- W2997643612 doi "https://doi.org/10.1515/polyeng-2019-0298" @default.
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