Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments

The physicochemical properties and performance of thin film composite (TFC) membranes depend on its synthesis conditions. In this study, TFC membranes were fabricated using interfacial polymerization (IP) method and the effects of heat treatment methods and post-IP rinsing (prior to heat curing step...

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Main Authors: Chong, C. Y., Lau, W. J., Yusof, N., Lai, G. S., Othman, N. H., Matsuura, T., Ismail, A. F.
Format: Article
Published: Elsevier B. V. 2018
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Online Access:http://eprints.utm.my/id/eprint/86622/
http://dx.doi.org/10.1016/j.desal.2017.11.009
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spelling my.utm.866222020-09-30T08:58:04Z http://eprints.utm.my/id/eprint/86622/ Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments Chong, C. Y. Lau, W. J. Yusof, N. Lai, G. S. Othman, N. H. Matsuura, T. Ismail, A. F. TP Chemical technology The physicochemical properties and performance of thin film composite (TFC) membranes depend on its synthesis conditions. In this study, TFC membranes were fabricated using interfacial polymerization (IP) method and the effects of heat treatment methods and post-IP rinsing (prior to heat curing step) on the membrane performances were investigated. Keeping the substrate in minimal heat exposure could prevent substrate pore annealing that potentially reduces the membrane water permeability. Evidently, the membranes with only polyamide (PA) layer being heat-treated exhibited > 250% enhancement in pure water flux (PWF) compared to the membranes where both PA and substrate layer were heat-treated. Also, the membranes rinsed with pure n-hexane tended to display higher PWF without significantly decreasing solute rejection, possibly due to the reduced membrane cross-linking following the removal of unreacted monomers and excess solvent from the membrane surface. The membrane performance became practically the same after post-IP rinsing, regardless of the solvent used in the IP reaction, suggesting that the disparity in the membrane performance is mainly caused by the difference in solvent evaporation rate during heat treatment. The variations in solvent surface tension and viscosity during the IP reaction meanwhile did not play a key role affecting PA layer chemistry and performance. Elsevier B. V. 2018-02 Article PeerReviewed Chong, C. Y. and Lau, W. J. and Yusof, N. and Lai, G. S. and Othman, N. H. and Matsuura, T. and Ismail, A. F. (2018) Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments. Desalination, 428 . pp. 218-226. ISSN 0011-9164 http://dx.doi.org/10.1016/j.desal.2017.11.009
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Chong, C. Y.
Lau, W. J.
Yusof, N.
Lai, G. S.
Othman, N. H.
Matsuura, T.
Ismail, A. F.
Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments
description The physicochemical properties and performance of thin film composite (TFC) membranes depend on its synthesis conditions. In this study, TFC membranes were fabricated using interfacial polymerization (IP) method and the effects of heat treatment methods and post-IP rinsing (prior to heat curing step) on the membrane performances were investigated. Keeping the substrate in minimal heat exposure could prevent substrate pore annealing that potentially reduces the membrane water permeability. Evidently, the membranes with only polyamide (PA) layer being heat-treated exhibited > 250% enhancement in pure water flux (PWF) compared to the membranes where both PA and substrate layer were heat-treated. Also, the membranes rinsed with pure n-hexane tended to display higher PWF without significantly decreasing solute rejection, possibly due to the reduced membrane cross-linking following the removal of unreacted monomers and excess solvent from the membrane surface. The membrane performance became practically the same after post-IP rinsing, regardless of the solvent used in the IP reaction, suggesting that the disparity in the membrane performance is mainly caused by the difference in solvent evaporation rate during heat treatment. The variations in solvent surface tension and viscosity during the IP reaction meanwhile did not play a key role affecting PA layer chemistry and performance.
format Article
author Chong, C. Y.
Lau, W. J.
Yusof, N.
Lai, G. S.
Othman, N. H.
Matsuura, T.
Ismail, A. F.
author_facet Chong, C. Y.
Lau, W. J.
Yusof, N.
Lai, G. S.
Othman, N. H.
Matsuura, T.
Ismail, A. F.
author_sort Chong, C. Y.
title Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments
title_short Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments
title_full Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments
title_fullStr Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments
title_full_unstemmed Studies on the properties of RO membranes for salt and boron removal: Influence of thermal treatment methods and rinsing treatments
title_sort studies on the properties of ro membranes for salt and boron removal: influence of thermal treatment methods and rinsing treatments
publisher Elsevier B. V.
publishDate 2018
url http://eprints.utm.my/id/eprint/86622/
http://dx.doi.org/10.1016/j.desal.2017.11.009
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score 13.18916