首页> 外文期刊>Journal of Chemical Engineering of Japan >Membrane Transport Properties of Pervaporation and Vapor Permeation in Ethanol–Water System Using Polyacrylonitrile and Cellulose Acetate Membranes
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Membrane Transport Properties of Pervaporation and Vapor Permeation in Ethanol–Water System Using Polyacrylonitrile and Cellulose Acetate Membranes

机译:聚丙烯腈和醋酸纤维素膜在乙醇-水系统中渗透蒸发和蒸汽渗透的膜传输特性

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References(8) Cited-By(28) Although permeation flux in PV and that in VP at saturated vapor pressure in feed should theoretically be equal, results obtained so far are contradictory. In the present work, theoretically predicted behavior of transport properties in PV and VP were first examined, based on the permeation equations developed in the previous paper, in particular for ethanol–water system.Next, experiments in PV and VP were performed in this system to check the conclusions obtained above using PAN and CA membranes. Results with PAN membranes showed good agreement between PV and VP, but the results with CA membranes showed larger permeation flux and a lower separation factor for water in PV than in VP. From observation from outside the cell, wrinkles on membrane surfaces were seen in PV experiments, but were not observed in VP experiments. Since the amount of sorption of solution in CA membranes is large, small difference in swelling conditions during experiments between PV and VP can have a large effect on the permeation fluxes.
机译:参考文献(8)By-By(28)尽管进料中饱和蒸气压下PV的渗透通量和VP的渗透通量在理论上应相等,但迄今为止获得的结果是矛盾的。在目前的工作中,首先根据上一篇论文开发的渗透方程,特别是对于乙醇-水系统,研究了PV和VP中传输特性的理论预测行为。接下来,在该系统中进行了PV和VP实验。用PAN和CA膜检查以上得出的结论。 PAN膜的结果表明PV和VP之间具有良好的一致性,但CA膜的结果显示,PV中的水渗透通量更大,并且水的分离系数比VP低。从细胞外部观察,在PV实验中观察到膜表面上的皱纹,而在VP实验中未观察到。由于CA膜中溶液的吸附量较大,因此PV和VP之间的实验过程中溶胀条件的微小差异可能会对渗透通量产生较大影响。

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