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High-Performance PEBA2533-Functional MMT Mixed Matrix Membrane Containing High-Speed Facilitated Transport Channels for CO2/N2 Separation

机译:高性能PEBA2533-功能性MMT混合基质膜,包含用于CO2 / N2分离的高速便捷运输通道

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摘要

A novel mixed matrix membrane was fabricated by establishing montmorillonite (MMT) functionalized with poly(ethylene glycol) methyl ether (PEG) and aminosilane coupling agents in a PEBA membrane. The functional MMT played multiple roles in enhancing membrane performance. First, the MMT channels could be used as high-speed facilitated transport channels, in which the movable metal cations acted as carriers of CO2 to increase the CO2 permeability. Second, due to mobility of long-chain aminos and reversible reactions between CO2 and amine groups, the functional MMT could actively catch the CO2, not passively wait for arrival of CO2, which can facilitate the CO2 transport. At last, PEG consisting of EO groups had excellent affinity for CO2 to enhance the CO2/N2 selectivity. Thus, the as-prepared functional MMMs exhibited good CO2 permeability and CO2/N2 selectivity. The functional MMM doped with 40 wt % of MMT-HD702-PEG5000 displayed optimal gas separation with a CO2 permeability of 448.45 Barrer and a CO2/N2 selectivity of 70.73, surpassing the upper bound lines of the Robeson study of 2008.
机译:通过在PEBA膜中建立经聚乙二醇(PEG)甲基醚(PEG)和氨基硅烷偶联剂官能化的蒙脱土(MMT),制造出一种新型的混合基质膜。功能性MMT在增强膜性能方面发挥了多种作用。首先,MMT通道可用作高速便利的传输通道,其中可移动的金属阳离子充当CO2的载体,以增加CO2的渗透性。其次,由于长链氨基的迁移以及CO2和胺基之间的可逆反应,功能性MMT可以主动捕获CO2,而不是被动地等待CO2的到来,这可以促进CO2的运输。最后,由EO基团组成的PEG对CO2具有优异的亲和力,从而提高了CO2 / N2的选择性。因此,所制备的功能性MMM表现出良好的CO 2渗透性和CO 2 / N 2选择性。掺杂了40 wt%MMT-HD702-PEG5000的功能性MMM表现出最佳的气体分离效果,CO2渗透率为448.45 Barrer,CO2 / N2选择性为70.73,超过了2008年Robeson研究的上限。

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