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Selective facilitated fixed-site carrier transport of methanol through sulfonated copolyimide pervaporation membranes for the separation of methanol/toluene mixtures

机译:通过磺化共聚酰亚胺渗透膜来分离甲醇/甲苯混合物的选择性促进的固定位点载体转运

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摘要

Dense and asymmetric membranes were obtained from novel sulfonated copolyimide synthesized by polycondensation of 3,3',4,4'-(1,3-diphenoxybenzene) tetracarboxylic dianhydride, 4,4'-bis-dipheny1-2,2'-disulfonic acid and 4,4'-oxydianiline. The polymer was characterized by the use of NMR spectroscopy, differential scanning calorimetry, Fourier transformed infra-red spectroscopy and thermal gravimetric analysis. The morphology of the asymmetric membrane was studied with scanning electron microscopy. Pervaporation separation performance of membranes was studied for H2O/EtOH and MeOH/toluene systems at different compositions and temperatures. Transport of polar components inside the polymer matrix is discussed. The realization of the selective fixed-site carrier transport mechanism for methanol allows reaching high fluxes and separation efficiency values for mixtures with exceeding methanol content. Developed membranes showed great pervaporation performance in the case of MeOH/toluene mixtures separation by reaching a maximal separation factor value of 158 (91 wt% toluene, 20 degrees C, for the dense membrane with total flux of 0.007 kg.m(-2).h(-1)) and maximal overall flux of 1.944 kg.m(-2).h(-1) (36 wt% toluene, 50 degrees C, for the asymmetric membrane with separation factor of 12).
机译:从通过3,3',4,4' - (1,3-二苯苯苯苯苯苯苯)四羧酸二酐,4,4'-BI-Dipheny1-2,2'-二磺酸合成的新型磺化共聚物获得了致密的和不对称膜。和4,4,4'-oxydianiline。该聚合物的特征在于使用NMR光谱,差示扫描量热法,傅里叶变换的红外光谱和热重分析。用扫描电子显微镜研究了非对称膜的形态。在不同组成和温度下对H 2 O / EtOH和MeOH /甲苯系统研究了膜的渗透分离性能。讨论了聚合物基质内部的极性成分。用于甲醇的选择性固定位点载体传输机制的实现允许达到高通量和分离效率值,用于超过甲醇含量的混合物。发育膜在MeOH /甲苯混合物的情况下,通过达到最大分离因子值(91wt%甲苯,20℃,为致密膜,总通量为0.007kg.m(-2) .h(-1))和最大总通量为1.944 kg.m(-2).h(-1)(36wt%甲苯,50℃,用于分离因子为12的不对称膜)。

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