Wan Ikhsan, Syarifah Nazirah and Yusof, Norhaniza and Mat Nawi, Normi Izati and Bilad, Muhammad Roil and Shamsuddin, Norazanita and Aziz, Farhana and Ismail, Ahmad Fauzi (2021) Halloysite nanotube-ferrihydrite incorporated polyethersulfone mixed matrix membrane: Effect of nanocomposite loading on the antifouling performance. Polymers, 13 (3). pp. 1-15. ISSN 2073-4360
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Official URL: http://dx.doi.org/10.3390/polym13030441
Abstract
Membrane filtration is an attractive process in water and wastewater treatment, but largely restricted by membrane fouling. In this study, the membrane fouling issue is addressed by devel-oping polyethersulfone (PES)-based mixed matrix membranes (MMMs) with the incorporation of hydrophilic nanoparticles as an additive. Ultrafiltration MMMs were successfully fabricated by incorporating different loadings of halloysite nanotube-ferrihydrates (HNT-HFO) into a polyethersul-fone (PES) matrix and their performance was evaluated for the separation of bovine serum albumin (BSA) solution and oil/water emulsion. The results show that wettability is endowed to the membrane by introducing the additive aided by the presence of abundant-OH groups from the HFO. The loading of additive also leads to more heterogeneous surface morphology and higher pure water fluxes (516.33–640.82 L/m2h) more than twice that of the pristine membrane as reference (34.69 L/m2h) without affecting the rejection. The MMMs also provide much enhanced antifouling properties. The filtration results indicate that the flux recovery ratio of the modified membrane reached 100% by washing with only distilled water and a total flux recovery ratio of >98% ± 0.0471 for HNT-HFO-loaded membranes in comparison with 59% ± 0.0169 for pristine PES membrane.
Item Type: | Article |
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Uncontrolled Keywords: | Hydrous ferric oxide, Loading effect |
Subjects: | T Technology > TP Chemical technology |
Divisions: | Chemical and Energy Engineering |
ID Code: | 95117 |
Deposited By: | Widya Wahid |
Deposited On: | 29 Apr 2022 22:24 |
Last Modified: | 29 Apr 2022 22:24 |
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