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Pervaporative separation of ethanol/water azeotrope using a novel chitosan-impregnated bacterial cellulose membrane and chitosan-poly(vinyl alcohol) blends

机译:使用新型壳聚糖浸渍细菌纤维素膜和壳聚糖-聚乙烯醇共混物全蒸发分离乙醇/水共沸物

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The pervaporative (PV) performance with respect to the separation of ethanol/water (EtOH/H2O) azeotrope was assessed for a bacterial cellulose membrane (BCM) impregnated with chitosan (CTSN), designated as CTSN-BCM. The PV potential of CTSN-BCM was compared with that of parent polymers and also with the blends of CTSN with poly(vinyl alcohol) (PVA). The blends and CTSN-BCM were characterized using spectroscopic and thermoanalytical techniques, and also tested for their mechanical strength and sorption of EtOH/H2O mixtures. While PVA and the blends tend to dissolve at higher concentration of water, CTSN-BCM was found to be intact over the entire composition range. When evaluated against pervaporation of 95:5 w/w EtOH/H2O azeotrope at 24 +/- 1 degrees C; CTSN-PVA (1:1) blend showed comparatively higher selectivity (22.0) but a poorer flux ( 1.7 kg mu m m(-2) h(-1)). The flux was significantly higher (42.8 kg mu m m(-2) h(-1)) in CTSN-BCM and selectivity (similar to 10) was at par with PVA. The temperature dependence of selectivity and flux through CTSN-BCM was also investigated. Substantially high pervaporative separation index (PSI) of the order of 350 kg mu m m(-2) c h(-1) and low energy of activation of 10kJ/mol is indicative of the potential of CTSN-BCM in the pervaporative separation of EtOH/H2O azeotrope. (c) 2004 Published by Elsevier B.V.
机译:对于浸渍有壳聚糖(CTSN)的细菌纤维素膜(BCM)(称为CTSN-BCM),评估了相对于乙醇/水(EtOH / H2O)共沸物分离的全蒸发(PV)性能。将CTSN-BCM的PV势与母体聚合物以及CTSN与聚乙烯醇(PVA)的共混物进行了比较。共混物和CTSN-BCM使用光谱学和热分析技术进行了表征,并测试了它们的机械强度和对EtOH / H2O混合物的吸附。尽管PVA和共混物倾向于在较高浓度的水中溶解,但CTSN-BCM在整个组成范围内均保持完整。当在24 +/- 1摄氏度下针对95:5 w / w EtOH / H2O共沸物的全蒸发进行评估时; CTSN-PVA(1:1)共混物显示出相对较高的选择性(22.0),但通量较差(1.7 kg mu m m(-2)h(-1))。在CTSN-BCM中,通量明显更高(42.8 kg m m m(-2)h(-1)),选择性(接近10)与PVA相当。还研究了通过CTSN-BCM的选择性和通量的温度依赖性。大约350 kg mu mm(-2)ch(-1)的高全蒸发分离指数(PSI)和10kJ / mol的低活化能表明CTSN-BCM在EtOH /全蒸发分离中的潜力H2O共沸物。 (c)2004年由Elsevier B.V.

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