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Exploring the Gas-Permeation Properties of Proton-Conducting Membranes Based on Protic Imidazolium Ionic Liquids: Application in Natural Gas Processing

机译:基于质子咪唑鎓离子液体的质子传导膜的透气性能研究:在天然气加工中的应用

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This experimental study explores the potential of supported ionic liquid membranes (SILMs) based on protic imidazolium ionic liquids (ILs) and randomly nanoporous polybenzimidazole (PBI) supports for CH 4 /N 2 separation. In particular, three classes of SILMs have been prepared by the infiltration of porous PBI membranes with different protic moieties: 1-H-3-methylimidazolium bis (trifluoromethane sulfonyl)imide; 1-H-3-vinylimidazolium bis(trifluoromethane sulfonyl)imide followed by in situ ultraviolet (UV) polymerization to poly[1-(3H-imidazolium)ethylene] bis(trifluoromethanesulfonyl)imide. The polymerization process has been monitored by Fourier transform infrared (FTIR) spectroscopy and the concentration of the protic entities in the SILMs has been evaluated by thermogravimetric analysis (TGA). Single gas permeability values of N 2 and CH 4 at 313 K, 333 K and 363 K were obtained from a series of experiments conducted in a batch gas permeance system. The results obtained were assessed in terms of the preferential cavity formation and favorable solvation of methane in the apolar domains of the protic ionic network. The most attractive behavior exhibited poly[1-(3H-imidazolium)ethylene]bis(trifluoromethanesulfonyl)imide polymeric ionic liquid (PIL) cross-linked with 1% divinylbenzene supported membranes, showing stable performance when increasing the upstream pressure. The CH 4 /N 2 permselectivity value of 2.1 with CH 4 permeability of 156 Barrer at 363 K suggests that the transport mechanism of the as-prepared SILMs is solubility-dominated.
机译:这项实验研究探索了基于质子咪唑鎓离子液体(ILs)和随机纳米多孔聚苯并咪唑(PBI)载体的支持的离子液体膜(SILM)分离CH 4 / N 2的潜力。特别地,通过渗透具有不同质子部分的多孔PBI膜已经制备了三类SILM:1-H-3-甲基咪唑鎓双(三氟甲烷磺酰基)酰亚胺; 1-H-3-乙烯基咪唑双(三氟甲烷磺酰基)酰亚胺,然后原位紫外线(UV)聚合成聚[1-(3H-咪唑鎓)乙烯]双(三氟甲磺酰基)酰亚胺。聚合过程已通过傅立叶变换红外(FTIR)光谱进行了监控,并且SILM中质子实体的浓度已通过热重分析(TGA)进行了评估。通过在间歇式气体渗透系统中进行的一系列实验,获得313 K,333 K和363 K时N 2和CH 4的单一气体渗透率值。根据在质子离子网络的非极性区域中优先形成空穴和甲烷的良好溶剂化来评估获得的结果。最吸引人的行为是与1%二乙烯基苯负载的膜交联的聚[1-(3H-咪唑鎓)乙烯]双(三氟甲磺酰基)酰亚胺聚合物离子液体(PIL),在增加上游压力时表现出稳定的性能。 CH 4 / N 2的渗透选择性值为2.1,在363 K时的CH 4渗透率为156 Barrer,这表明所制备的SILM的传输机理是溶解度主导的。

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