Meng Junquan, Li Pei, Cao Bing
College of Materials Science and Engineering , Beijing University of Chemical Technology , Beijing 100029 , China.
ACS Appl Mater Interfaces. 2019 Aug 7;11(31):28461-28468. doi: 10.1021/acsami.9b08078. Epub 2019 Jul 23.
To solve the pore-wetting problems of membrane distillation, we developed a series of three-layer composite pervaporation (PV) membranes that could be applied in direct contact mode. Specifically, a porous poly(vinylidene fluoride) (PVDF) layer was placed on top of a polytetrafluoroethylene (PTFE) microfiltration membrane using the nonsolvent-induced phase inversion method, and then a poly(vinyl alcohol) (PVA) dense layer was coated on the PVDF/PTFE substrate. The hydrophobic PTFE layer prevented the permeate side of the PVA/PVDF/PTFE membrane from being wetted with cooling water. The PVDF intermediate layer acted as a glue to the PVA and PTFE layers. Also, the PVA dense layer provided a high water flux, salt rejection, and antifouling property. As a result, a high water flux of 44.5 ± 3.0 kg/(m h) with the NaCl rejection of >99.99% were achieved for the direct-contact pervaporation (DCPV) membranes when separating a 3.5 wt % NaCl solution at 75.0 ± 0.9 °C using a cooling water stream of 20.6 ± 0.3 °C. Moreover, when the NaCl solution contained 10 mg/L Tween20 (acting as a contaminant), a stable water flux of 45.8 ± 0.6 kg/(m h) was maintained for at least 24 h, indicating excellent antifouling property. Furthermore, when the permeate side was under vacuum, the water flux increased to 83.4 ± 6.5 kg/(m h), similar to the highest reported data of all the existing PV desalination membranes. More importantly, the easy-to-scale-up fabrication method indicated great potential of DCPV membranes for commercialization.
为了解决膜蒸馏中的孔润湿问题,我们开发了一系列可用于直接接触模式的三层复合渗透蒸发(PV)膜。具体而言,采用非溶剂诱导相转化法将多孔聚偏氟乙烯(PVDF)层置于聚四氟乙烯(PTFE)微滤膜之上,然后在PVDF/PTFE基底上涂覆聚乙烯醇(PVA)致密层。疏水性的PTFE层可防止PVA/PVDF/PTFE膜的渗透侧被冷却水润湿。PVDF中间层起到了连接PVA层和PTFE层的作用。此外,PVA致密层提供了高水通量、脱盐率和抗污染性能。结果,在75.0±0.9°C下使用20.6±0.3°C的冷却水流分离3.5 wt%的NaCl溶液时,直接接触渗透蒸发(DCPV)膜实现了44.5±3.0 kg/(m² h)的高水通量和>99.99%的NaCl截留率。此外,当NaCl溶液中含有10 mg/L吐温20(作为污染物)时,稳定的水通量为45.8±0.6 kg/(m² h),至少维持24小时,表明具有优异的抗污染性能。此外,当渗透侧处于真空状态时,水通量增加到83.4±6.5 kg/(m² h),与所有现有PV脱盐膜报道的最高数据相近。更重要的是,这种易于放大的制备方法表明DCPV膜具有巨大的商业化潜力。