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首页> 外文期刊>Journal of Membrane Science >Dehydration of isopropanol and its comparison with dehydration of butanol isomers from thermodynamic and molecular aspects
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Dehydration of isopropanol and its comparison with dehydration of butanol isomers from thermodynamic and molecular aspects

机译:从热力学和分子学角度对异丙醇脱水及其与丁醇异构体脱水的比较

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摘要

By examining the dehydration of aqueous isopropanol (IPA) systems using two Sulzer commercially available polyvinyl alcohol (PVA)/polyacrylonitrile (PAN) membranes which were prepared from different cross-linking agents, we have (1) investigated the membrane performance from the standpoints of flux versus permeance and separation factor versus selectivity plots and (2) determined the effects of membrane properties such as degrees of cross-linking and hydrophilicity on water and IPA flux and permeance and their separation factor and membrane selectivity. PERVAP 2201 has higher degrees of cross-linking and chain packing than PERVAP 2510, while PERVAP 2510 has stronger hydrophilicity than PERVAP 2201. For PERVAP 2510, water permeance increases sharply with feed water concentration, but shows little dependence on temperature. For PERVAP 2201, water permeance shows flat relationship with feed water concentration, but increases with increasing temperature. Both IPA flux and permeance increase with increasing feed water concentration and their relationship with feed water content can be mathematically explained. It is noticed that the separation factor versus feed water content plots may mislead the analysis of water influence on membrane performance and exaggerate the plasticization phenomenon. Coupled transport has been observed between IPA and water. However, the degree of coupled transport is dependent on the membrane properties, such as the degree of cross-linking, affinity to water and structure responses on temperature rise. Compared with the dehydration of butanol systems, we found that the degree of coupled transport follows the order of 1-butanol > 2-butanol > IPA > tert-butanol. After examining many physicochemical properties of penetrants and membrane materials, it is concluded that the molecular linearity (or the aspect ratio) of penetrant molecules and their solubility parameters (as well as polarity parameter) determine the magnitude of coupled transport, while the effects of other physicochemical properties seem to be not so important if coupled transports become dominant in the dehydration process. (c) 2004 Elsevier B.V. All rights reserved.
机译:通过使用两种由不同交联剂制备的Sulzer市售聚乙烯醇(PVA)/聚丙烯腈(PAN)膜检查异丙醇(IPA)水溶液的脱水,我们(1)从以下角度研究了膜的性能:通量对渗透率和分离因子对选择性的关系图,(2)确定了膜性能的影响,例如交联度和亲水性对水和IPA通量和渗透率的影响,以及它们的分离因子和膜选择性。与PERVAP 2510相比,PERVAP 2201具有更高的交联度和链堆积度,而与PERVAP 2201相比,PERVAP 2510具有更强的亲水性。对于PERVAP 2510,水的渗透性随进水浓度的增加而急剧增加,但对温度的依赖性很小。对于PERVAP 2201,水渗透率与给水浓度呈平坦关系,但随温度升高而增加。 IPA通量和渗透率都随着进料水浓度的增加而增加,并且它们与进料水含量的关系可以用数学方法解释。注意到分离系数与进料水含量的关系图可能会误导分析水对膜性能的影响,并夸大了增塑现象。在IPA和水之间已经观察到耦合运输。但是,偶联运输的程度取决于膜的性质,例如交联的程度,对水的亲和力以及温度升高时的结构响应。与丁醇系统的脱水相比,我们发现偶合运输的程度遵循1-丁醇> 2-丁醇> IPA>叔丁醇的顺序。在检查了渗透剂和膜材料的许多物理化学性质后,得出结论,渗透剂分子的分子线性(或长径比)及其溶解度参数(以及极性参数)决定了耦合传输的幅度,而其他如果在脱水过程中耦合运输占主导地位,那么理化性质似乎并不那么重要。 (c)2004 Elsevier B.V.保留所有权利。

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