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Improved CO2 separation performance and interfacial affinity of mixed matrix membrane by incorporating UiO-66-PEI@[bmim][Tf2N] particles

机译:通过掺入UIO-66-PEI @ [BMIM]粒子改善混合基质膜的CO 2分离性能和界面亲和力

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摘要

This study demonstrated a new method for simultaneously improving the interfacial morphology and gas separation properties of mixed matrix membrane by designing a new type of nanocomposite filler (UiO-66-PEI@[bmim]Tf2N]). Nano-sized UiO-66 particle was post-synthetically modified with branched polyethyleneimine (PEI) and then was decorated with ionic liquid. The abundant amino groups in UiO-66-PEI improve the gas separation properties of the MMM due to the affinity between PEI and CO2. The ionic liquid acts as a lubricant agent, which is coated on the crystal surface improves the interface morphology of the MMM. Compared to pristine 6FO and MOF/6FO membrane, MOF@IL/6FO membrane has higher gas separation performance. Characterization and gas separation results indicated the UiO-66-PEI@ILs particles were homogeneous dispersed in 6FDA-ODA and promoted CO2 transport by reversible reaction with amine groups. Consequently, the membrane sample containing 15 wt% loading of the UiO-66-PEI@[bmini][Tf2N] filler displayed an optimum CO2/CH4 selectivity of 59.99 for CO2 and CH4 mixture gas.
机译:该研究证明了一种通过设计一种新型纳米复合材料填料来同时提高混合基质膜的界面形态和气体分离性能的新方法。用支化聚乙烯亚胺(PEI)后纳米大小的UIO-66颗粒合成改性,然后用离子液体装饰。由于PEI和CO 2之间的亲和力,UIO-66-PEI中的丰富氨基改善了MMM的气体分离性能。离子液体用作润滑剂,润滑剂涂布在晶体表面上,提高了MMM的界面形态。与原始的6FO和MOF / 6FO膜相比,MOF @ IL / 6FO膜具有更高的气体分离性能。表征和气体分离结果表明UIO-66-PEI @ ILS颗粒在6FDA-ODA中均匀分散,并通过与胺基的可逆反应促进CO 2传输。因此,含有15wt%的UIO-66-PEI @ [BMINI] [TF2N]填料的膜样品显示出59.99的最佳CO 2 / CH 4选择性,用于CO 2和CH 4混合物气体。

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