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Performance of a nanofiltration membrane for removal of ethanol from aqueous solutions by pervaporation

机译:纳滤膜通过全蒸发去除水溶液中乙醇的性能

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摘要

In this study,the performance of a hydrophobic nanofiltration membrane (SolSep 3360) for treating alcoholic solutions by pervaporation is investigated and compared to a conventional pervaporation membrane (PV 1070,Sulzer Chemtech and Pervatech PDMS).Both binary ethanol/water mixtures and common multicomponent mixtures (alcoholic beverages) are examined.The experiments were performed at feed ethanol concentrations up to 50 vol% and at temperatures up to 45 °C.The effects of feed ethanol content and temperature were studied in terms of:(1) fluxes and permeances of individual components,and (2) separation factor,enrichment factor and selectivity of ethanol to water.Using permeance and selectivity instead of flux and separation/enrichment factor allows the effects on performance evaluation of operating conditions,such as temperature and swelling,to be decoupled.In this way the contribution by nature of the membrane to separation performance can be clarified and quantified.In addition,previous analyses indicate that the aqueous activity coefficient and the saturated vapour pressure play an important role when evaluating the membrane performance in terms of permeance and selectivity.This is confirmed by this study.Furthermore,it was found that multicomponent alcoholic beverages behave in exact the same manner as binary ethanol/water mixtures.Using a nanofiltration membrane for pervaporation purposes is a suitable possibility,because of the higher fluxes and permeances,while remaining a good separation factor and selectivity.The difference between nanofiltration and pervaporation membranes is explained by the influence of swelling,making the membrane more dense,and the different interactions between permeating molecules and the membrane.
机译:在这项研究中,研究了疏水性纳滤膜(SolSep 3360)通过渗透蒸发处理酒精溶液的性能,并将其与常规渗透蒸发膜(PV 1070,Sulzer Chemtech和Pervatech PDMS)进行了比较。二元乙醇/水混合物和常见的多组分检查了混合物(含酒精饮料)。实验在进料乙醇浓度最高为50 vol%且温度最高为45°C的条件下进行。进料乙醇含量和温度的影响研究如下:(1)通量和磁导率(2)乙醇对水的分离因子,富集因子和选择性。使用渗透率和选择性代替通量和分离/富集因子可以对温度,溶胀等操作条件的性能评估产生影响这样就可以澄清和量化膜性质对分离性能的贡献。大量的分析表明,水活度系数和饱和蒸气压在评估膜性能的渗透性和选择性方面起着重要作用。这一研究结果证实了这一点。此外,发现多组分酒精饮料的行为完全相同。纳滤膜用于渗透汽化是一种合适的可能性,因为它具有较高的通量和渗透率,同时又保持了良好的分离系数和选择性。纳滤膜和渗透汽化膜之间的差异是由膨胀,使膜更致密,以及渗透分子与膜之间的不同相互作用。

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