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Nanoparticles in reverse osmosis membranes for desalination: A state of the art review

机译:反渗透膜中的纳米粒子用于海水淡化:艺术综述

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The development of thin-film nanocomposite (TFNC) membranes utilizing nanoparticles present remarkable opportunity in the desalination industry. This review offers a comprehensive and in-depth analysis of TFNC membranes for reverse osmosis (RO) desalination by focusing on different issues existing in the RO process. Recent researches on nanoparticle incorporated TFNC membranes for application in water purification have been critically analyzed. The widely tested nanoparticles in these researches include carbon-based (carbon nanotube, graphene-oxide), metal and metal oxides-based (silver, copper, titanium dioxide, zinc oxide, alumina and metal-organic frameworks), and other nano-sized fillers like silica, halloysite, zeolite and cellulose-nano crystals based. These nanoparticles demonstrated pronounced effect in terms of water flux, salt rejection, chlorine resistance, and anti-fouling properties of TFNC membranes relative to the typical thin-film composite (TFC) membranes. Here, we also focus on the environmental impact, commercialization, and future scope of TFNC membranes. From the current review, it is evident that the nanomaterials possess exclusive properties, which can contribute to the advancement of high-tech nanocomposite membranes with improved capabilities for desalination. Despite all the developments, there still exist significant difficulties in the large-scale production of these membranes. Hence, additional studies in this field are required to produce TFNC membrane with increased performance for commercial application.
机译:薄膜纳米复合材料(TFNC)膜利用纳米粒子的发展在海水淡化工业中具有显着的机会。本次综述提供了通过专注于RO流程中存在的不同问题,对反渗透(RO)脱盐的TFNC膜进行全面而深入分析。最近对纳米粒子掺入的TFNC膜在水净化中的研究已经受到重视分析。这些研究中的广泛测试的纳米颗粒包括基于碳(碳纳米管,石墨烯),金属和金属氧化物的基于金属(银,铜,二氧化钛,氧化锌,氧化铝和金属 - 有机框架),以及其他纳米尺寸填料如二氧化硅,霍采,沸石和纤维素 - 纳米晶体基。这些纳米颗粒在与典型的薄膜复合物(TFC)膜相对于TFNC膜的水通量,耐盐,氯抗性和抗结垢性能方面的发音效应。在这里,我们还专注于TFNC膜的环境影响,商业化和未来范围。从目前的审查中,显而易见的是,纳米材料具有独占性质,这可以有助于高科技纳米复合膜的推进,具有改进的脱盐能力。尽管存在所有的发展,但这些膜的大规模生产仍然存在显着困难。因此,该领域的额外研究是生产TFNC膜,具有增加的商业应用的性能。

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