Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
623467 | Desalination | 2014 | 8 Pages |
Abstract
The FO membrane flux has a significant increase due to the HH-IPN-CNF support layer. The membrane flux improved with the increase of PVA nanofiber content in the HH-IPN-CNF support layer. When the ratio of PET/PVA composite nanofibers was 1/4, the FO membrane exhibited the highest water flux (47.2 LMH) and low salt leakage (9.5Â gMH). In the test, deionized (DI) water was used as feed solution (FS), and 0.5Â M NaCl solution was used as draw solution (DS) in the mode of active layer facing DS. The improvement of FO flux was attributed to the increase of wetting performance of support layer and the water-transferring function. The existence of the HH-IPN-CNF structure formed between PET and PVA nanofibers leads to the reduction of the ICP. The FO membranes with HH-IPN-CNF support layer achieved a significant increase in water flux.
Keywords
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Filtration and Separation
Authors
En L. Tian, Huan. Zhou, Yi W. Ren, Zakaria.a. mirza, Xing Z. Wang, Shao W. Xiong,