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Comparative study of commercially available polymeric and microporous silica membranes for the dehydration of IP A/water mixtures by pervaporation/vapour permeation

机译:商业上可用聚合物和微孔二氧化硅膜通过渗透蒸发/蒸气渗透脱水IP A /水混合物脱水的比较研究

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The performance of commercially available polymeric and microporous silica membranes (both supplied by Sulzer Chemtech GmbH) was investigated with respect to the dehydration of binary mixtures of isopropyl alcohol (IPA)/water. The range of concentrations investigated (C_(H2O)≤20 wt.%) was selected according to existing industrial needs. Fluxes and selectivities were monitored as dehydration proceeded, and the performance of both membranes has been compared. In addition, the effect of temperature on these parameters was investigated. Over this range, both water and IPA fluxes generally decreased with water concentration. The effect of temperature was investigated in the 70 to 105°C range, covering the pervaporation and vapour permeation operating conditions. Increasing the operating temperature resulted, as expected, in larger water fluxes for both polymeric and silica membranes. For the range of conditions investigated, water fluxes through the SMS membrane were found to be up to three times larger than those of the polymeric PERVAP 2510 membrane. However, IPA fluxes through the SMS membrane were also observed to be higher than those through a PERVAP 2510 membrane, resulting in a substantial decrease in separation performance.
机译:研究了商业上可获得的聚合物和微孔二氧化硅膜(由Sulzer ChemTech GmbH提供)的性能,相对于异丙醇(IPA)/水的二元混合物的脱水研究。根据现有的工业需求选择研究的浓度范围(C_(H2O)≤20重量%)。监测助熔剂和选择性作为脱水进行,并进行了两种膜的性能。此外,研究了温度对这些参数的影响。在此范围内,水和IPA助熔剂通常随水浓度降低。在70至105℃的范围内研究了温度的影响,覆盖了渗透蒸发和蒸汽渗透操作条件。增加工作温度,如预期的那样,在聚合物和二氧化硅膜的较大水通量中。对于所研究的条件范围,发现通过SMS膜的水通量高出3倍,比聚合物膜2510膜的3倍。然而,还观察到通过SMS膜的IPA通量高于通过膜2510膜的通量,导致分离性能的显着降低。

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