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Fabrication of polyimide and covalent organic frameworks mixed matrix membranes by in situ polymerization for preliminary exploration of CO2/CH4 separation

机译:用原位聚合制备聚酰亚胺和共价有机骨架混合基质膜,以进行CO2 / CH4分离的初步探索

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摘要

More and more polyimide (PI) mixed matrix membranes (MMMs) have been reported for gas separation. In this study, a novel PI MMM, named as PI/SNW-1 and composed of PI and Schiff base network (SNW) type covalent organic frameworks (COFs) SNW-1, was used for gas permeation measurements of carbon dioxide (CO2) and methane (CH4). The prepared PI/SNW-1 was investigated by the Fourier transform infrared spectroscopy, the field emission scanning electron microscopy, and the thermal gravimetric analysis. The results indicated that PI/SNW-1 had maintained a high thermal stability and uniform distribution of filler. Compared with the pure PI membrane, MMMs showed an increment of 48.7% in ideal selectivity of CO2/CH4 and an enhancement of 106.4% in CO2 permeability at 5 wt% SNW-1. The enhancement of permeability and selectivity was mainly attributed to the high porosity of SNW-1, the specific sorption affinity for CO2, and the close interface interaction with the PI matrix. It can be seen that PI/SNW-1 has a great potential for actual gas separation.
机译:据报道,越来越多的聚酰亚胺(PI)混合基质膜(MMMS)用于气体分离。在该研究中,一种新的PI MMM,命名为PI / SNW-1并由PI和Schiff基础网络(SNW)类型共价有机框架(COFS)SNW-1组成,用于二氧化碳的气体渗透测量(CO2)和甲烷(CH4)。通过傅里叶变换红外光谱,现场发射扫描电子显微镜和热重分析研究了制备的PI / SNW-1。结果表明,PI / SNW-1保持高热稳定性和均匀分布的填料。与纯PI膜相比,MMMS在CO 2 / CH4的理想选择性中显示出48.7%的增量,并且在5wt%SNW-1的CO 2渗透率中提高106.4%。渗透性和选择性的增强主要归因于SNW-1的高孔隙率,CO 2的特异性吸附亲和力以及与PI基质的紧密界面相互作用。可以看出,PI / SNW-1具有实际气体分离的巨大潜力。

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