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Mixed Matrix Membranes based on UiO-66 MOFs in the Polymer of Intrinsic Microporosity PIM-1

机译:基于UiO-66 mOFs的固有微孔聚合物pIm-1的混合基质膜

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摘要

This work presents a study of the gas transport properties for a novel class of mixed matrix membranes (MMMs) based on the polymer of intrinsic microporosity PIM-1 loaded with UiO-66 [Zr6O4(OH)4(O2CC6H4CO2)6] based metal-organic frameworks (MOFs). Three isoreticular MOFs were dispersed in the polymer matrix, standard UiO-66, UiO-66-NH2 (functionalized with an amino group) and UiO-66-(COOH)2 (functionalized with two carboxylic groups), in order to investigate the effect of the functionalization of the linker on the gas transport. The pure gas permeabilities of He, H2, O2, N2, CH4, CO2 were studied, for the as prepared membranes and after methanol treatment, focusing attention on the potential use of these membranes for CO2/CH4 separation. The pure gas transport of the MMMs was described on the basis of the Maxwell model. The predictions of the model are discussed and compared with the experimental permeability and selectivity of the MMMs and neat PIM-1. Mixed gas permeation tests were performed on a representative sample to investigate the actual separation performance with industrially relevant gas mixtures. These confirmed the good perspectives of these MMMs in applications like CO2 removal from biogas or from flue gas
机译:这项工作基于负载有UiO-66 [Zr6O4(OH)4(O2CC6H4CO2)6]的固有微孔性PIM-1聚合物的新型混合基质膜(MMM)的气体传输性质进行了研究。有机框架(MOF)。为了研究这种效果,将三种等网状MOF分散在聚合物基质中,即标准UiO-66,UiO-66-NH2(用氨基官能化)和UiO-66-(COOH)2(用两个羧基官能化)。连接子的功能化对气体传输的影响。对于制得的膜和甲醇处理后的膜,研究了He,H2,O2,N2,CH4,CO2的纯气体渗透率,重点关注这些膜在CO2 / CH4分离中的潜在用途。基于Maxwell模型描述了MMM的纯气体传输。讨论了模型的预测,并将其与MMM和纯PIM-1的实验渗透率和选择性进行了比较。对代表性样品进行了混合气体渗透测试,以研究与工业相关的气体混合物的实际分离性能。这些证实了这些MMM在诸如从沼气或烟气中去除CO2的应用中的良好前景。

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