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Performance of Mixed Matrix Membranes Containing Porous Two-Dimensional (2D) and Three-Dimensional (3D) Fillers for CO2 Separation: A Review

机译:包含多孔二维(2D)和三维(3D)填料的混合基质膜的CO2分离性能:综述

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摘要

Application of conventional polymeric membranes in CO2 separation processes are limited by the existing trade-off between permeability and selectivity represented by the renowned upper bound. Addition of porous nanofillers in polymeric membranes is a promising approach to transcend the upper bound, owing to their superior separation capabilities. Porous nanofillers entice increased attention over nonporous counterparts due to their inherent CO2 uptake capacities and secondary transport pathways when added to polymer matrices. Infinite possibilities of tuning the porous architecture of these nanofillers also facilitate simultaneous enhancement of permeability, selectivity and stability features of the membrane conveniently heading in the direction towards industrial realization. This review focuses on presenting a complete synopsis of inherent capacities of several porous nanofillers, like metal organic frameworks (MOFs), Zeolites, and porous organic frameworks (POFs) and the effects on their addition to polymeric membranes. Gas permeation performances of select hybrids with these three-dimensional (3D) fillers and porous nanosheets have been summarized and discussed with respect to each type. Consequently, the benefits and shortcomings of each class of materials have been outlined and future research directions concerning the hybrids with 3D fillers have been suggested.
机译:常规聚合物膜在CO2分离过程中的应用受到已知的上限所代表的渗透性和选择性之间的折衷的限制。由于其出色的分离能力,在聚合物膜中添加多孔纳米填料是超越上限的一种有前途的方法。多孔纳米填料因其固有的二氧化碳吸收能力和添加到聚合物基体中的次级传输途径而吸引了对无孔纳米填料的更多关注。调节这些纳米填料的多孔结构的无限可能还有助于同时提高膜的渗透性,选择性和稳定性,方便地朝着工业实现的方向发展。这篇综述着重于介绍几种多孔纳米填料的固有能力的完整概要,例如金属有机骨架(MOF),沸石和多孔有机骨架(POF)以及它们对聚合物膜添加的影响。已针对每种类型总结并讨论了具有这些三维(3D)填料和多孔纳米片的精选杂化物的气体渗透性能。因此,概述了每种材料的优点和缺点,并提出了有关具有3D填料的杂化材料的未来研究方向。

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