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Assessing the Performance of Thin-Film Nanofiltration Membranes with Embedded Montmorillonites

In this study, the basal spacing of montmorillonite (MMT) was modified through ion exchange. Two kinds of MMT were used: sodium-modified MMT (Na-MMT) and organo-modified MMT (O-MMT). These two particles were incorporated separately into the thin-film nanocomposite polyamide membrane through the inte...

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Autores principales: Ang, Micah Belle Marie Yap, Deang, Amira Beatriz Gaces, Aquino, Ruth R., Basilia, Blessie A., Huang, Shu-Hsien, Lee, Kueir-Rarn, Lai, Juin-Yih
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7281585/
https://www.ncbi.nlm.nih.gov/pubmed/32357447
http://dx.doi.org/10.3390/membranes10050079
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author Ang, Micah Belle Marie Yap
Deang, Amira Beatriz Gaces
Aquino, Ruth R.
Basilia, Blessie A.
Huang, Shu-Hsien
Lee, Kueir-Rarn
Lai, Juin-Yih
author_facet Ang, Micah Belle Marie Yap
Deang, Amira Beatriz Gaces
Aquino, Ruth R.
Basilia, Blessie A.
Huang, Shu-Hsien
Lee, Kueir-Rarn
Lai, Juin-Yih
author_sort Ang, Micah Belle Marie Yap
collection PubMed
description In this study, the basal spacing of montmorillonite (MMT) was modified through ion exchange. Two kinds of MMT were used: sodium-modified MMT (Na-MMT) and organo-modified MMT (O-MMT). These two particles were incorporated separately into the thin-film nanocomposite polyamide membrane through the interfacial polymerization of piperazine and trimesoyl chloride in n-hexane. The membrane with O-MMT (TFN(O-MMT)) has a more hydrophilic surface compared to that of membrane with Na-MMT (TFN(Na-MMT)). When various types of MMT were dispersed in the n-hexane solution with trimesoyl chloride (TMC), O-MMT was well-dispersed than Na-MMT. The poor dispersion of Na-MMT in n-hexane led to the aggregation of Na-MMT on the surface of TFN(Na-MMT). TFN(O-MMT) displayed a uniform distribution of O-MMT on the surface, because O-MMT was well-dispersed in n-hexane. In comparison with the pristine and TFN(Na-MMT) membranes, TFN(O-MMT) delivered the highest pure water flux of 53.15 ± 3.30 L∙m(−2)∙h(−1) at 6 bar, while its salt rejection for divalent ions remained at 95%–99%. Furthermore, it had stable performance in wide operating condition, and it exhibited a magnificent antifouling property. Therefore, a suitable type of MMT could lead to high separation efficiency.
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spelling pubmed-72815852020-06-17 Assessing the Performance of Thin-Film Nanofiltration Membranes with Embedded Montmorillonites Ang, Micah Belle Marie Yap Deang, Amira Beatriz Gaces Aquino, Ruth R. Basilia, Blessie A. Huang, Shu-Hsien Lee, Kueir-Rarn Lai, Juin-Yih Membranes (Basel) Article In this study, the basal spacing of montmorillonite (MMT) was modified through ion exchange. Two kinds of MMT were used: sodium-modified MMT (Na-MMT) and organo-modified MMT (O-MMT). These two particles were incorporated separately into the thin-film nanocomposite polyamide membrane through the interfacial polymerization of piperazine and trimesoyl chloride in n-hexane. The membrane with O-MMT (TFN(O-MMT)) has a more hydrophilic surface compared to that of membrane with Na-MMT (TFN(Na-MMT)). When various types of MMT were dispersed in the n-hexane solution with trimesoyl chloride (TMC), O-MMT was well-dispersed than Na-MMT. The poor dispersion of Na-MMT in n-hexane led to the aggregation of Na-MMT on the surface of TFN(Na-MMT). TFN(O-MMT) displayed a uniform distribution of O-MMT on the surface, because O-MMT was well-dispersed in n-hexane. In comparison with the pristine and TFN(Na-MMT) membranes, TFN(O-MMT) delivered the highest pure water flux of 53.15 ± 3.30 L∙m(−2)∙h(−1) at 6 bar, while its salt rejection for divalent ions remained at 95%–99%. Furthermore, it had stable performance in wide operating condition, and it exhibited a magnificent antifouling property. Therefore, a suitable type of MMT could lead to high separation efficiency. MDPI 2020-04-26 /pmc/articles/PMC7281585/ /pubmed/32357447 http://dx.doi.org/10.3390/membranes10050079 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ang, Micah Belle Marie Yap
Deang, Amira Beatriz Gaces
Aquino, Ruth R.
Basilia, Blessie A.
Huang, Shu-Hsien
Lee, Kueir-Rarn
Lai, Juin-Yih
Assessing the Performance of Thin-Film Nanofiltration Membranes with Embedded Montmorillonites
title Assessing the Performance of Thin-Film Nanofiltration Membranes with Embedded Montmorillonites
title_full Assessing the Performance of Thin-Film Nanofiltration Membranes with Embedded Montmorillonites
title_fullStr Assessing the Performance of Thin-Film Nanofiltration Membranes with Embedded Montmorillonites
title_full_unstemmed Assessing the Performance of Thin-Film Nanofiltration Membranes with Embedded Montmorillonites
title_short Assessing the Performance of Thin-Film Nanofiltration Membranes with Embedded Montmorillonites
title_sort assessing the performance of thin-film nanofiltration membranes with embedded montmorillonites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7281585/
https://www.ncbi.nlm.nih.gov/pubmed/32357447
http://dx.doi.org/10.3390/membranes10050079
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