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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Pressure and osmotically driven membrane processes: A review of the benefits and production of nano-enhanced membranes for desalination
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Pressure and osmotically driven membrane processes: A review of the benefits and production of nano-enhanced membranes for desalination

机译:压力和渗透驱动膜流程:对纳米增强膜进行脱盐的益处和生产综述

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摘要

This review focuses on current research attempts to develop nano-enhanced polymeric desalination membranes. The novel contribution made by this work as compared to many recent reviews on membrane enhancement is that a critical review is made of the effect that the morphological, optical and magnetic properties of the applied nanomaterials have on the efficiency of desalination membranes. The focus on nanomaterials in this review is on both applying new chemical compositions at various concentrations, and also on altering the nanomaterials' morphology and other properties to reach the optimal membrane efficiency for desalination applications. The synthesis route has a major role of tuning the physical and chemical properties of the nanomaterials, and hence, the membrane morphological parameters can be altered, all of which are summarised in this review. The review surveys different types of nanomaterials used for membrane fabrication, such as single elements, metal oxides and nanotubes. Furthermore, mixed oxide composites and polymer/nanomaterial combinations are also considered for membrane enhancement. A wide application range is investigated for modified membranes in pressure and osmotically driven membrane processes for desalination, including reverse osmosis, forward osmosis, osmotically assisted reverse osmosis and pressure assisted forward osmosis.
机译:本综述侧重于目前的研究试图开发纳米增强的聚合物脱盐膜。与许多关于膜增强的近期评论相比,这项工作的新贡献在于,施用纳米材料的形态学,光学和磁性对脱盐膜效率的影响进行了关键评论。该评价的重点是纳米材料上的各种浓度都施加新的化学组合物,以及上改变纳米材料形态和其它特性,以达到脱盐应用的最佳膜效率。合成途径具有调节纳米材料的物理和化学性质的主要作用,因此,可以改变膜形态参数,所有这些都在本综述中总结。审查调查用于膜制造的不同类型的纳米材料,例如单个元素,金属氧化物和纳米管。此外,还考虑混合氧化物复合材料和聚合物/纳米材料组合用于膜增强。对压力和渗透压驱动的膜工艺进行改性膜的宽型膜进行宽施用范围,包括反渗透,前渗透,渗透压疗效反渗透和压力辅助前进渗透。

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