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Microporous Silica Based Membranes for Desalination

机译:微孔二氧化硅基膜用于脱盐

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This review provides a global overview of microporous silica based membranes for desalination via pervaporation with a focus on membrane synthesis and processing, transport mechanisms and current state of the art membrane performance. Most importantly, the recent development and novel concepts for improving the hydro-stability and separating performance of silica membranes for desalination are critically examined. Research into silica based membranes for desalination has focussed on three primary methods for improving the hydro-stability. These include incorporating carbon templates into the microporous silica both as surfactants and hybrid organic-inorganic structures and incorporation of metal oxide nanoparticles into the silica matrix. The literature examined identified that only metal oxide silica membranes have demonstrated high salt rejections under a variety of feed concentrations, reasonable fluxes and unaltered performance over long-term operation. As this is an embryonic field of research several target areas for researchers were discussed including further improvement of the membrane materials, but also regarding the necessity of integrating waste or solar heat sources into the final process design to ensure cost competitiveness with conventional reverse osmosis processes.
机译:这篇综述提供了用于通过全蒸发进行脱盐的基于微孔二氧化硅的膜的全球概述,重点是膜的合成和加工,传输机理和最新的膜性能。最重要的是,对用于改进脱盐的二氧化硅膜的水稳定性和分离性能的最新进展和新颖概念进行了严格审查。对用于脱盐的二氧化硅基膜的研究集中在提高水稳定性的三种主要方法上。这些包括将碳模板既作为表面活性剂又作为杂化有机-无机结构掺入微孔二氧化硅中,以及将金属氧化物纳米颗粒掺入二氧化硅基质中。所检查的文献表明,只有金属氧化物二氧化硅膜在各种进料浓度,合理的通量和长期运行下的性能不变的情况下才表现出较高的脱盐率。由于这是研究的萌芽领域,因此讨论了研究人员的几个目标领域,包括膜材料的进一步改进,以及将废料或太阳热源集成到最终工艺设计中的必要性,以确保与常规反渗透工艺的成本竞争力。

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