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Pervaporation of water-alcohol mixtures and acetic acid-water mixtures

机译:水-醇混合物和乙酸-水混合物的全蒸发

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摘要

In this study, pervaporation experiments were performed with methanol-water mixtures, ethanol-water mixtures, IPA (isopropyl alcohol)-water mixtures, and acetic acid-water mixtures, over the complete concentration range allowed by the membrane (Pervap 2201, Sulzer). The results of the three water-alcohol mixtures are compared to investigate the influence of molecular weight and polarity on the permeation behavior. The results show that ethanol and IPA have a similar permeation behavior, whereas methanol shows a different behavior. This can be explained by the relatively high polarity of methanol, which makes methanol sorption competitive with water sorption. The IPA-water mixtures are compared with the acetic acid-water mixtures. IPA and acetic acid have approximately the same molecular weight, but contain a different functional group. The acetic acid-water mixtures have a higher total flux than the IPA-water mixtures. Moreover, the partial acetic acid flux is higher than the partial IPA flux. Acetic acid contains a carbonyl group, which has a high capacity of forming hydrogen bonds with the alcohol groups of the PVA (polyvinyl alcohol) top layer. Moreover, it is a large molecule, causing high swelling resulting in a high permeation flux and a low separation factor. The behavior of the acetic acid-water mixtures shows more resemblance to the methanol-water mixtures than to the IPA-water mixtures. This suggests that the polarity and functional group of the different feed components is more important than the molecular size. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在这项研究中,在膜允许的完整浓度范围内(Pervap 2201,Sulzer)对甲醇-水混合物,乙醇-水混合物,IPA(异丙醇)-水混合物和乙酸-水混合物进行了全蒸发实验。 。比较了三种水-醇混合物的结果,以研究分子量和极性对渗透行为的影响。结果表明,乙醇和IPA具有相似的渗透行为,而甲醇具有不同的渗透行为。这可以用甲醇的相对较高的极性来解释,这使甲醇的吸附与水的吸附竞争。将IPA-水混合物与乙酸-水混合物进行比较。 IPA和乙酸具有大约相同的分子量,但包含不同的官能团。乙酸-水混合物比IPA-水混合物具有更高的总通量。此外,部分乙酸通量高于部分IPA通量。乙酸包含羰基,该羰基具有与PVA(聚乙烯醇)顶层的醇基形成氢键的能力。而且,它是大分子,引起高溶胀,导致高渗透通量和低分离因子。乙酸-水混合物的行为与甲醇-水混合物相比,与IPA-水混合物表现出更大的相似性。这表明不同进料组分的极性和官能团比分子大小更重要。 (C)2004 Elsevier Ltd.保留所有权利。

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