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Thin-film nanocomposite membrane with vertically embedded carbon nanotube for forward osmosis

机译:薄膜纳米复合膜,具有垂直嵌入的碳纳米管,用于前进渗透

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摘要

Forward osmosis (FO) for desalination is receiving tremendous attention due to its low energy consumption and simple operation compared to reverse osmosis. Here, we propose a thin-film nanocomposite (TFN) membrane with vertically embedded carbon nanotubes (CNTs) in the active layer to maximize membrane permeability without significantly sacrificing selectivity. We first attempted a spray-assisted electromagnetic field alignment technique to vertically embed CNT in the active layer of the TFN membrane. After vertically embedding the CNT, the developed TFN membrane exhibited 20% increased water flux. When chemical etching of the active layer was further applied, increase in water flux was over 300% (40LMH). Meanwhile, the increased reverse salt flux was mild most likely due to the steric effect of CNT in the active layer. The developed TFN membrane, thus showed even higher water flux and lower reverse salt flux when compared to recently provided commercial FO membranes. This method is easy to up-scale with a one-step fabrication process, and it is cost-effective due to its simplicity and the low concentration of CNT solution used. Therefore, these findings could contribute to freshwater production using the FO process to overcome global water scarcity.
机译:由于其与反渗透相比,用于脱盐的前渗透(Fo)用于脱盐,并且由于其低能量消耗和简单的操作而受到巨大的关注。这里,我们在有源层中提出薄膜纳米复合材料(TFN)膜(TFN)膜(TFN)膜(CNT)在有源层中,以使膜渗透率最大化而不明显牺牲选择性。我们首先尝试了一种喷雾辅助电磁场对准技术在TFN膜的有源层中垂直嵌入CNT。垂直嵌入CNT后,发育的TFN膜表现出20%的水通量增加。当进一步施加活性层的化学蚀刻时,水通量的增​​加超过300%(40LMH)。同时,由于CNT在有源层中的空间效应,增加了逆盐通量的增加。与最近提供的商业FO膜相比,显影TFN膜甚至较高的水通量和较低的逆向盐通量。这种方法易于上升,具有一步制造过程,由于其使用的简单性和低浓度的CNT溶液,它具有成本效益。因此,这些发现可能有助于使用FO工艺克服全球水资源稀缺的淡水生产。

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