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Preparation and characterization of thin film nanocomposite membrane for pervaporative dehydration of aqueous alcohol solutions

机译:酒精水溶液全蒸发脱水的薄膜纳米复合膜的制备与表征

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摘要

Thin film nanocomposite (TFN) polyamide membranes were synthesized via the interfacial polymerization between m-phenylenediamine (MPD) and trimesoyl chloride (TMC) with nano NaX zeolite on the surface of the modified polyacrylonitrile (mPAN) membrane as support layer. The fabricated TFN membrane was used in the pervaporative separation of 90 wt.% aqueous solutions of ethanol and isobutanol at 25 °C. In addition, surface properties and surface morphology as well as hydrophilicity of the TFN membranes were examined by AFM, FE-SEM, ATR-FTIR and contact angle (CA) analysis, respectively. The results showed that the addition of nano NaX zeolite to the polyamide layer led to the improvement of the surface roughness and increase in the surface hydrophilicity which raised the water flux in the TFN membrane. Also, the pervaporation performance of the TFN membranes was strongly affected by the nano NaX zeolite concentration. In all the samples, the flux and separation factor of the TFN membrane became more than twice that of the TFC polyamide membrane. The permeation flux and separation factor of the aqueous ethanol solution enhanced by increasing the concentration of nano NaX zeolite, while the flux of isobutanol solution had a maximum at the zeolite concentration of 0.5 wt.%.
机译:通过以改性聚丙烯腈(mPAN)膜表面为支撑层的纳米NaX沸石,通过间苯二胺(MPD)和均苯三甲酰氯(TMC)之间的界面聚合,合成了薄膜纳米复合材料(TFN)聚酰胺膜。所制造的TFN膜用于在25℃下全蒸发分离90重量%的乙醇和异丁醇的水溶液。另外,分别通过AFM,FE-SEM,ATR-FTIR和接触角(CA)分析检查了TFN膜的表面性质和表面形态以及亲水性。结果表明,将纳米NaX沸石添加到聚酰胺层中导致表面粗糙度的改善和表面亲水性的增加,这提高了TFN膜中的水通量。同样,纳米NaX沸石的浓度强烈影响TFN膜的全蒸发性能。在所有样品中,TFN膜的通量和分离系数都超过了TFC聚酰胺膜的通量和分离系数的两倍。通过增加纳米NaX沸石的浓度提高了乙醇水溶液的渗透通量和分离因子,而异丁醇溶液的通量在沸石浓度为0.5wt。%时具有最大值。

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