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Pervaporation of benzene/cyclohexane mixtures through aromatic polyamide membranes

机译:苯/环己烷混合物通过芳族聚酰胺膜的全蒸发

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摘要

A series of novel aromatic polyamides based on the 2,2-bis[4,4-aminophenoxy]phenyl]hexafluoropropane (BAPPH) and 2,2-bis[4-(4-aminophenoxy) phenyl]propane(BAPPP) with various aromatic diacids were investigated for pervaporation sepa- ration of benzene/cyclohexane binary system. The aromatic polyamide membranes exhibited a benzene-permselectivity for all the feed compositions and the permeation rate increased with increasing benzene in the feed solution. The fluorine-containing polyamide membranes were swollen in benzene but only slightly in cyclohexane. A separation factor toward benzene, a permeation rate, and a pervaporation separation index (PSI) value through the fluorine-containing polyamide membrane (F-3) for a 50 wt./100 feed benzene concentration were 4.0, 1470 and 5903 g m~-2 h~-1, respectively. The permeation rate and the PSI value of fluorine-containing polyamide membranes based on the BAPPH were higher than that of the aromatic polyamide membranes based on the BAPPP.
机译:基于2,2-双[4,4-氨基苯氧基]苯基]六氟丙烷(BAPPH)和2,2-双[4-(4-氨基苯氧基)苯基]丙烷(BAPPP)的一系列新型芳香族聚酰胺研究了二元酸对苯/环己烷二元体系的全蒸发分离。芳族聚酰胺膜对所有进料组合物均表现出苯渗透选择性,并且渗透速率随进料溶液中苯的增加而增加。含氟聚酰胺膜在苯中溶胀,但在环己烷中仅溶胀。对于50wt./100进料苯浓度,通过含氟聚酰胺膜(F-3)的对苯的分离因子,渗透速率和渗透蒸发分离指数(PSI)值为4.0、1470和5903 gm-分别为2 h〜-1。基于BAPPH的含氟聚酰胺膜的渗透率和PSI值高于基于BAPPP的芳族聚酰胺膜的渗透率和PSI值。

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