首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Covalent organic framework incorporated outer-selective hollow fiber thin-film nanocomposite membranes for osmotically driven desalination
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Covalent organic framework incorporated outer-selective hollow fiber thin-film nanocomposite membranes for osmotically driven desalination

机译:共价有机框架掺入外选择性中空纤维薄膜纳米复合材料,用于渗透驱动的脱盐

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摘要

In this study, new outer-selective hollow fiber (OSHF) thin film nanocomposite (TFN) forward osmosis (FO) membranes incorporated with amine-rich Schiff-based network (SNW-1) nanoparticles (NPs), a type of covalent organic frameworks (COFs), were developed by vacuum-assisted interfacial polymerization (VAIP). The SNW-1 NPs possess hydrophilic nature and porous internal structures, which are desirable for producing highly permeable and efficient FO membranes. SNW-1 NPs were conformally packed across the outer surface of the HF substrate by vacuum pressure applied during the VAIP process leading to defect-free coatings. Furthermore, covalent bonding between secondary amine (NH2-) groups across the SNW-1 network and remanent carboxylic groups present from the monomer used for the interfacial polymerization step supported the adhesion of SNW-1 NPs to the native poly(amide) layer present across the TFN membrane surface. As a result, SNW-1 loading at 0.001 wt% exhibited the best FO performance with enhanced water flux more than 23% of the pristine one (31.5 L m(-2) h(-1)) and relatively low specific reverse solute flux (SRSF, J(s)/J(w)) at 0.18 g L-1 using 1 M NaCl and DI water in series of TFN composite membranes. The optimum loading at 0.001 wt% was much lower than those in other home-made TFN membranes (normally above 0.05 wt%) due to the minimum loss of SNW-1 in the VAIP. Also, the TFN membrane offered excellent FO operation stability tested for 72 h. Such novel approach is promising to optimize FO processes for desalination and water treatment in the future.
机译:在本研究中,新的外部选择性中空纤维(OSHF)薄膜纳米复合材料(TFN)前渗透(FO)膜,其掺入富含胺类的席夫网络(SNW-1)纳米颗粒(NPS),一种共价有机框架(COFS)由真空辅助界面聚合(VAIP)开发。 SNW-1 NPS具有亲水性和多孔内部结构,这是期望生产高渗透性和有效的FO膜。通过在导致无缺陷涂层的VAIP工艺期间施加真空压力,SNW-1 NPS在HF基板的外表面上共形成。此外,在用于界面聚合步骤的单体中存在的仲胺(NH 2·)基团与来自用于界面聚合步骤的单体的剩余羧基之间的共价键合支持SNW-1NP与存在的天然聚(酰胺)层的粘附性TFN膜表面。结果,在0.001wt%的SNW-1负载下,具有增强的水通量的最佳性能,超过原始酮的23%(31.5L m(-2)H(-1))和相对较低的特异性反向溶质通量(SRSF,J(S)/ J(W)),在0.18g L-1,使用1M NaCl和DI水系列TFN复合膜。由于VAIP中的SNW-1的最小损失,0.001wt%的最佳负载远低于其他自制的TFN膜中的其他自制TFN膜(通常高于0.05wt%)。此外,TFN膜提供优异的FO操作稳定性72小时。这种新颖的方法很有希望优化未来海水淡化和水处理的过程。

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