首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Chitosan/graphene oxide mixed matrix membrane with enhanced water permeability for high-salinity water desalination by pervaporation
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Chitosan/graphene oxide mixed matrix membrane with enhanced water permeability for high-salinity water desalination by pervaporation

机译:壳聚糖/石墨烯氧化物混合基质膜具有增强的渗透性水渗透性,通过渗透流离失用

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摘要

Pervaporation is a promising technology for water desalination. In this work, graphene oxide (GO) was incorporated into chitosan (CS) to fabricate mixed matrix membranes (MMMs) to explore the enhancement of water permeability for high-salinity water desalination and to understand the transport mechanism in the MMMs. The effect of GO content on the morphology, wettability and desalination performance of the membranes as well as the thermodynamic and kinetic behavior of water and salt permeation in the membranes were investigated. The MMMs have rougher and more hydrophilic surface, dense structure and improved mechanical stability owing to the good chemical compatibility of GO with CS matrix. The apparent activation energy results indicate the advantage of the MMMs in desalinating high-salinity water. The enhanced permeate flux of 30.0 kg/ m(2).h was obtained in desalinating 5 wt% aqueous NaCl solution at 81 degrees C with 1 wt% GO content and 99.99% of salt rejection was achieved. The solubility and diffusivity of H2O and NaCl in the MMMs demonstrate a trade-off effect on the water permeability and water/salt selectivity with increasing of GO content. The NaCl diffusion coefficient in the membranes was lower than that of H2O by two orders of magnitude, contributing to the high selectivity of the membrane.
机译:普遍是一种用于水海水淡化的有希望的技术。在这项工作中,将石墨烯(GO)掺入壳聚糖(CS)中以制造混合基质膜(MMM)以探讨高盐度水脱盐的水渗透性的增强,并理解MMMS中的运输机制。研究了对膜的形态,润湿性和脱盐性能的效果以及膜中水和盐渗透的热力学和动力学行为。由于与CS基质的良好的化学相容性,MMM具有更令人讨厌和更亲水的表面,致密的结构和改善的机械稳定性。表观激活能量结果表明了MMMS在脱盐高盐水中的优势。在81℃下脱盐5wt%NaCl水溶液中获得了30.0kg / m(2).h的增强渗透剂。在1wt%的情况下,达到99.99%的盐排斥。 H2O和NaCl在MMMS中的溶解度和扩散性证明了对水渗透性和水/盐选择性随着GO含量的增加而衡量效果。膜中的NaCl扩散系数低于H2O的两个数量级,有助于膜的高选择性。

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