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Improving the structural parameter of the membrane sublayer for enhanced forward osmosis

Sark, J. F. and Jullok, N. and Lau, W. J. (2021) Improving the structural parameter of the membrane sublayer for enhanced forward osmosis. Membranes, 11 (6). ISSN 2077-0375

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Official URL: http://dx.doi.org/10.3390/membranes11060448

Abstract

The structural (S) parameter of a medium is used to represent the mass transport resistance of an asymmetric membrane. In this study, we aimed to fabricate a membrane sublayer using a novel composition to improve the S parameter for enhanced forward osmosis (FO). Thin film composite (TFC) membranes using polyamide (PA) as an active layer and different polysulfone:polyethersulfone (PSf:PES) supports as sublayers were prepared via the phase inversion technique, followed by interfacial polymerization. The membrane made with a PSf:PES ratio of 2:3 was observed to have the lowest contact angle (CA) with the highest overall porosity. It also had the highest water permeability (A; 3.79 ± 1.06 L m−2 h−1 bar−1) and salt permeability (B; 8.42 ± 2.34 g m−2 h−1), as well as a good NaCl rejection rate of 74%. An increase in porosity at elevated temperatures from 30 to 40◦C decreased Sint from 184 ± 4 to 159 ± 2 µm. At elevated temperatures, significant increases in the water flux from 13.81 to 42.86 L m−2 h−1 and reverse salt flux (RSF) from 12.74 to 460 g m−2 h−1 occur, reducing Seff from 152 ± 26 to 120 ± 14 µm. Sint is a temperature-dependent parameter, whereas Seff can only be reduced in a high-water-permeability membrane at elevated temperatures.

Item Type:Article
Uncontrolled Keywords:composite membrane, forward osmosis, structural parameter
Subjects:T Technology > TP Chemical technology
Divisions:Chemical and Energy Engineering
ID Code:94388
Deposited By: Narimah Nawil
Deposited On:31 Mar 2022 14:54
Last Modified:31 Mar 2022 14:54

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