Separation of binary, ternary and multicomponent organic/water mixtures

Habib I. Shaban
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引用次数: 5

Abstract

In this paper, the separation characteristics of polyvinyl alcohol membranes are compared for pervaporation of binary, ternary and multicomponent organic/water mixtures. The analyses were performed as a function of composition at steady-state operating conditions. Results are compared in terms of difference in permeation rate, separation factor, time taken for dehydration and temperature drop across the membrane for the three systems. The separation ability of the membrane is expressed in terms of permeation rate and selectivity. From the results, we found that the permeation rate increased and the separation factor decreased as the water concentration in the feed increased. Furthermore, we noted that the presence of one component affects the rate of transfer of the other. These results confirm that interaction between the feed, the permeate and the polymer plays an important role in pervaporation. For binary and ternary systems, permeate composition remains relatively constant over a wide range of feed concentrations, and, for the multicomponent system, water concentration in the permeate decreases as more alcohol molecules are sorbed into the membrane.

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二元,三元和多组分有机/水混合物的分离
本文比较了聚乙烯醇膜对二元、三元和多组分有机/水混合物渗透蒸发的分离特性。分析是在稳态操作条件下作为成分的函数进行的。比较了三种体系在渗透速率、分离系数、脱水时间和膜上温度降等方面的差异。膜的分离能力用渗透速率和选择性来表示。结果表明,随着饲料中水分浓度的增加,渗透速率增加,分离系数降低。此外,我们注意到一种组分的存在会影响另一种组分的转移速率。这些结果证实了进料、渗透液和聚合物之间的相互作用在渗透汽化过程中起着重要作用。对于二元和三元体系,渗透液的组成在很大的进料浓度范围内保持相对恒定,对于多组分体系,渗透液中的水浓度随着更多的醇分子被吸收到膜中而降低。
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