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Blended chitosan and polyvinyl alcohol membranes for the pervaporation dehydration of isopropanol

机译:壳聚糖和聚乙烯醇共混膜用于异丙醇的全蒸发脱水

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Homogeneous membranes were prepared by casting the solution of blended chitosan and polyvinyl alcohol (PVA) on a glass plate. The percent weight of chitosan in the membrane was varied from 0 to 100%. The membrane thickness was in the range of 15-30 mu m. The membranes were heat treated at 150 degrees C for an hour. After that the membranes were crosslinked by glutaraldehyde and sulfuric acid in acetone aqueous solution. The membranes were tested at 30-60 degrees C for dehydration performance of 50-95% isopropanol aqueous solutions. At around 90% of isopropanol in the feed mixture, permeate flux increased whereas the percent of water in permeate tended to decrease when the feed temperature increased for all membranes, except that the water content in permeate from the membrane containing 75 wt.% chitosan remained constant. The swelling degree in water and the total flux increased with increasing chitosan content in membranes. The effect of temperature on permeate flux followed the Arrhenius relationship. The permeate flux decreased when isopropanol in the feed increased for all membranes. However, water content in permeate and isopropanol concentration in the feed formed complex relationship for different chitosan content membranes. Sorption did not appear to have significant effects on separation. The membrane containing chitosan 75% performed the best. For a feed solution containing 90% isopropanol at 60 degrees C, the permeate flux was 644 g/m(2) h with water content of nearly 100% in the permeate. At 55% isopropanol in the feed at 60 degrees C, the permeate flux was 3812 g/m 2 h. In the range of 55-95% of isopropanol in the feed, the water content in permeate was more than 99.5%. This membrane showed very excellent performance with good mechanical strength. It is promising to develop this membrane for industrial uses. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过将混合的壳聚糖和聚乙烯醇(PVA)的溶液浇铸在玻璃板上来制备均质膜。膜中壳聚糖的重量百分比在0至100%之间变化。膜厚度在15-30μm的范围内。将膜在150℃下热处理1小时。之后,在丙酮水溶液中用戊二醛和硫酸使膜交联。在30-60℃下测试膜的50-95%异丙醇水溶液的脱水性能。进料混合物中异丙醇的含量约为90%时,渗透率增加,而当所有膜的进料温度均升高时,渗透液中的水含量趋于降低,只是保留了含有75 wt。%壳聚糖的膜中的渗透液中的水含量不变。水中的溶胀度和总通量随着膜中壳聚糖含量的增加而增加。温度对渗透通量的影响遵循Arrhenius关系。当进料中所有膜的异丙醇增加时,渗透通量降低。然而,对于不同的壳聚糖含量的膜,渗透物中的水含量和进料中的异丙醇浓度形成复杂的关系。吸附似乎对分离没有显着影响。含壳聚糖75%的膜表现最好。对于在60摄氏度下含90%异丙醇的进料溶液,渗透通量为644 g / m(2)h,渗透物中的水含量接近100%。在60℃下进料中异丙醇含量为55%时,渗透通量为3812 g / m 2 h。在进料中异丙醇的55-95%的范围内,渗透物中的水含量大于99.5%。该膜表现出非常优异的性能以及良好的机械强度。开发用于工业用途的这种膜是有希望的。 (c)2006 Elsevier B.V.保留所有权利。

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