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Development of PVDF membranes for membrane distillation via vapour induced crystallisation

机译:通过蒸汽诱导结晶进行膜蒸馏的PVDF膜的开发

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This study explores vapour induced crystallisation technique for developing polyvinylidene fluoride (PVDF) membranes for membrane distillation (MD). It works based on the observation that a sufficiently long exposure of PVDF film under humid air allows the occurrence of crystallisation of semi-crystalline PVDF. Three PVDF polymer grades with different molecular weights (MWs) were used to investigate crystallisation behaviour during vapour induced phase separation (VIPS). Later, the performances of four membranes, prepared at exposure times of 30, 60, 90 and 120 min and using PVDF-370 kDa, were evaluated in a lab scale direct contact MD (DCMD) set-up. Vapour induced crystallisation was proven to be an effective way to adjust PVDF crystallinity, being higher at longer exposure time. There exists a transition time in humidity exposure (between 60 and 120 min) at which a shift of membrane morphology occurs from highly amorphous, flat and smooth to rough and grainy morphology. This finding is persistent for the three PVDF MWs. This shift in morphology has clear consequences on the membrane properties and its MD performance. The increase in degree of crystallinity led to higher contact angle, larger pore size and reduced membrane thickness. The combination of these properties led to an overall improvement in membrane performance manifested in an increase in its flux and salt rejection. (C) 2016 Published by Elsevier Ltd.
机译:这项研究探索了气相诱导结晶技术,以开发用于膜蒸馏(MD)的聚偏二氟乙烯(PVDF)膜。它基于以下观察结果而工作:在潮湿空气中充分暴露PVDF膜会导致半结晶PVDF结晶。使用三种具有不同分子量(MWs)的PVDF聚合物等级来研究气相诱导相分离(VIPS)期间的结晶行为。随后,在实验室规模的直接接触MD(DCMD)装置中评估了在30、60、90和120分钟的曝光时间下使用PVDF-370 kDa制备的四种膜的性能。蒸汽诱导的结晶被证明是调节PVDF结晶度的有效方法,在更长的暴露时间下结晶度更高。暴露在湿气中存在一个过渡时间(60至120分钟之间),在该过渡时间膜的形态会发生变化,从高度无定形,平坦和光滑变为粗糙和颗粒状。对于三个PVDF MW,这一发现是持久的。这种形态上的变化对膜性能及其MD性能具有明显的影响。结晶度的增加导致较高的接触角,较大的孔径和减小的膜厚度。这些特性的组合导致膜性能的整体改善,表现为其通量和脱盐率的提高。 (C)2016由Elsevier Ltd.出版

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