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Nafion/PEG hybrid membrane for CO2 separation: Effect of PEG on membrane micro-structure and performance

机译:用于二氧化碳分离的Nafion / PEG杂化膜:PEG对膜微结构和性能的影响

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In the present work, PEGDME with different molecular weight (Mn similar to 250 and 500 g/mol) was added into Nafion-based membranes as CO2-philic additive, aiming at improving their CO2 capture performance. The physical, chemical and morphological characteristics of the hybrid membranes were thoroughly investigated using different techniques, including TGA, XRD, SEM and FTIR. The gas transport properties were studied by means of mixed gas permeation tests at different relative humidity conditions. CO2 permeability is greatly enhanced upon the addition of the PEGDME. The addition of 40 wt% PEGDME 250 into the Nafion matrix shows a CO2 permeability of 57.4 Barrer at the dry state, which is 36 folds higher than the pristine Nafion. The presence of water vapor in the gaseous streams further enhances the CO2 permeability and CO2/N-2 selectivity, reaching a value of 446 Barrer and 37, respectively, under fully saturated conditions. However, the further increase of the PEGDME content in the Nafion matrix leads to undesirable micro phase separation (defects were observed from the morphological analysis), causing serious loss of the selectivity. Finally, in order to improve the theoretical understanding of the transport mechanism, a modified Maxwell model was successfully applied to describe the separation performances of the resulted Nafion/PEGDME hybrid membrane. The model results suggest that an interconnected CO2-philic structure is obtained upon the addition of PEGMDE and water to the ionomer matrix, forming preferential pathways for gas permeation able to enhance the membrane performance.
机译:在本作研究中,将具有不同分子量(Mn类似于250和500g / mol)的PEGDME加入基于Nafion的膜中作为CO 2-的膜,旨在改善其CO 2捕获性能。使用不同的技术彻底研究了杂交膜的物理,化学和形态学特性,包括TGA,XRD,SEM和FTIR。通过在不同相对湿度条件下通过混合气体渗透试验研究气体传输性能。在添加PEGDME时,CO 2渗透率大大提高。将40wt%PEGDME 250加入Nafion基质中,显示在干燥状态下为57.4个漏极的CO 2渗透率,比原始Nafion高36倍。气态流中的水蒸气的存在进一步增强了CO 2渗透率和CO 2 / N-2选择性,分别在完全饱和条件下分别达到446个禁止和37的值。然而,Nafion基质中PEGDME含量的进一步增加导致不希望的微相分离(从形态学分析中观察到缺陷),从而严重丧失选择性。最后,为了改善对运输机制的理论认识,成功地应用了改进的麦克斯韦模型以描述所得Nafion / PEGDME杂交膜的分离性能。该模型结果表明,在向离聚物基质中加入PEGMDE和水时获得相互连接的CO2-素材结构,形成能够增强膜性能的气体渗透的优先途径。

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