Novel polysulfone ultrafiltration membranes incorporating polydopamine functionalized graphene oxide with enhanced flux and fouling resistance
| Author | Alkhouzaam, Abedalkader |
| Author | Qiblawey, Hazim |
| Available date | 2026-01-18T10:40:22Z |
| Publication Date | 2021-02-15 |
| Publication Name | Journal of Membrane Science |
| Identifier | http://dx.doi.org/10.1016/j.memsci.2020.118900 |
| Citation | Alkhouzaam, Abedalkader, and Hazim Qiblawey. "Novel polysulfone ultrafiltration membranes incorporating polydopamine functionalized graphene oxide with enhanced flux and fouling resistance." Journal of Membrane Science 620 (2021): 118900. |
| ISSN | 03767388 |
| Abstract | Novel PSF composite UF membranes incorporating low loadings of polydopamine-functionalized graphene oxide particles (rGO-PDA) were fabricated and investigated. The functionalization was confirmed using FTIR-UATR, Raman spectra, XPS, and SEM. Pristine PSF, PSF/GO, and PSF/rGO-PDA MMMs were then prepared using the phase inversion technique and analysed using FTIR, SEM, AFM, and contact angle (CA). The cross-section SEM images showed better distribution of rGO-PDA particles in the pores and polymer wall whereas the pristine GO particles aggregate and partially block the pores. Thus, the pure water flux increased with the addition of rGO-PDA without affecting the rejection properties, while the flux decreased with the embedding of pristine GO particles. The highest pure water permeability (PWP) was obtained with PSF/rGO-PDA-0.1 to be approximately twice that of the pristine PSF and PSF/GO-0.1. All membranes exhibited complete rejection of BSA and HA, and showed almost similar performance against different dyes. The FRRs of the pristine PSF after three fouling cycles (FRR3) against BSA and HA were recorded to be 57.8% and 70.7% respectively. FRR3 was enhanced by around 30% with PSF/rGO-PDA composites. The MMMs prepared in this work are expected to have great potential on ultrafiltration and similar studies on other membrane processes. |
| Sponsor | This work was made possible by an Award [GSRA4-1-0504-17043] from Qatar National Research Fund (QNRF, a member of Qatar Foundation). The contents herein are solely the responsibility of the authors. Authors would like to thank also the Central Lab Unit (CLU) at Qatar University (QU) for carrying out the FTIR-UATR, Raman spectroscopy, and SEM; Gas Processing Center (GPC, QU) for the XPS analysis and viscosity measurements; and Center of Advanced Materials (CAM, QU) for their support in AFM analysis. Open access funding is provided by Qatar National Library. |
| Language | en |
| Publisher | Elsevier |
| Subject | Ultrafiltration Dopamine Graphene oxide Fouling Characterization |
| Type | Article |
| Volume Number | 620 |
| Open Access user License | http://creativecommons.org/licenses/by/4.0/ |
| ESSN | 1873-3123 |
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