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Inorganic Nanomaterials in Polymeric Ultrafiltration Membranes for Water Treatment

机译:聚合物超滤膜中用于水处理的无机纳米材料

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摘要

Due to the rapid expansion of nanotechnology and the increasing range of nanomaterials under production and development, a significant amount of research interest has been dedicated to the innovative exploitations of various inorganic nanomaterials in environmental applications. The incorporation of inorganic nanomaterials as fillers within a polymeric matrix has expanded opportunities to produce a multifunctional nanocomposite membrane that is capable of performing tasks beyond separation alone. The architectures and performances of these nanocomposite membranes have triumphed over polymeric membranes to overcome the underlying conspicuous drawbacks. This review aims to shed more light on the roles of inorganic nanomaterials in advancing the characteristics and separation performance of polymeric ultrafiltration membranes. Inorganic nanofillers such as metal oxides, metals and carbon-based materials are incorporated into polymeric membranes to render the desired properties for ultrafiltration separations. Novel strategies using a wide range of these inorganic nanomaterials have been well explored and established for the manufacturing of membrane with significantly enhanced properties that are highly desired to heighten the separation performances. With the renaissance of this emerging innovative technology, many possible solutions and valuable options can be offered to serve as the primary driver in excelling ultrafiltration membrane technology.
机译:由于纳米技术的迅速发展和正在生产和开发中的纳米材料范围的不断扩大,大量的研究兴趣已经投入到在环境应用中各种无机纳米材料的创新开发。将无机纳米材料作为填料并入聚合物基质中,扩大了生产多功能纳米复合膜的机会,该膜能够执行除单独分离以外的任务。这些纳米复合膜的结构和性能已经超过聚合物膜,以克服潜在的明显缺点。这篇综述旨在更深入地探讨无机纳米材料在提高聚合物超滤膜的特性和分离性能方面的作用。将无机纳米填料(例如金属氧化物,金属和碳基材料)掺入聚合物膜中,以提供超滤分离所需的特性。对于使用具有显着增强的性能的膜的制造,已经广泛探索并建立了使用这些无机纳米材料的广泛范围的新颖策略,这对于提高分离性能是非常需要的。随着这种新兴创新技术的复兴,可以提供许多可能的解决方案和有价值的选择,以作为卓越的超滤膜技术的主要驱动力。

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