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Preparation and Desalination of Semi-Aromatic Polyamide Reverse Osmosis Membranes (ROMs)

Reverse osmosis membrane (ROM) technology has a series of advantages, such as a simple process, no secondary pollution, high efficiency, energy saving, environmental protection, and good separation and purification effects. High-performance semi-aromatic polyamide reverse osmosis membranes (ROMs) we...

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Autores principales: Zhu, Haiyang, Yuan, Bingbing, Li, Yuchuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10096747/
https://www.ncbi.nlm.nih.gov/pubmed/37050299
http://dx.doi.org/10.3390/polym15071683
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author Zhu, Haiyang
Yuan, Bingbing
Li, Yuchuan
author_facet Zhu, Haiyang
Yuan, Bingbing
Li, Yuchuan
author_sort Zhu, Haiyang
collection PubMed
description Reverse osmosis membrane (ROM) technology has a series of advantages, such as a simple process, no secondary pollution, high efficiency, energy saving, environmental protection, and good separation and purification effects. High-performance semi-aromatic polyamide reverse osmosis membranes (ROMs) were prepared by interfacial polymerization (IP) of novel cyclopentanecarbonyl chloride (CPTC) and m-phenylenediamine (MPD) monomers. The surface morphology, hydrophilicity and charge of the ROMs were characterized by field-emission scanning electron microscopy (SEM), a contact angle tester and a solid-surface zeta potential analyzer. The effects of CPTC concentration, MPD concentration, oil-phase solvent type, IP reaction time and additive concentration on the performance of semi-aromatic polyamide ROMs were studied. SEM morphology characterization showed that the surface of the prepared polyamide ROMs presented a multinodal structure. The performance test showed that when the concentration of MPD in the aqueous phase was 2.5 wt.%, the concentration of sodium dodecylbenzene sulfonate (SDBS) was 0.2%, the residence time in the aqueous phase was 2 min, the concentration of CPTC/cyclohexane in the oil phase was 0.13 wt.%, the IP reaction was 20 s, the NaCl rejection rate of the semi-aromatic polyamide ROM was 98.28% and the flux was 65.38 L/m(2)·h, showing good desalination performance. Compared with an NF 90 commercial membrane, it has a good anti-BSA pollution ability.
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spelling pubmed-100967472023-04-13 Preparation and Desalination of Semi-Aromatic Polyamide Reverse Osmosis Membranes (ROMs) Zhu, Haiyang Yuan, Bingbing Li, Yuchuan Polymers (Basel) Article Reverse osmosis membrane (ROM) technology has a series of advantages, such as a simple process, no secondary pollution, high efficiency, energy saving, environmental protection, and good separation and purification effects. High-performance semi-aromatic polyamide reverse osmosis membranes (ROMs) were prepared by interfacial polymerization (IP) of novel cyclopentanecarbonyl chloride (CPTC) and m-phenylenediamine (MPD) monomers. The surface morphology, hydrophilicity and charge of the ROMs were characterized by field-emission scanning electron microscopy (SEM), a contact angle tester and a solid-surface zeta potential analyzer. The effects of CPTC concentration, MPD concentration, oil-phase solvent type, IP reaction time and additive concentration on the performance of semi-aromatic polyamide ROMs were studied. SEM morphology characterization showed that the surface of the prepared polyamide ROMs presented a multinodal structure. The performance test showed that when the concentration of MPD in the aqueous phase was 2.5 wt.%, the concentration of sodium dodecylbenzene sulfonate (SDBS) was 0.2%, the residence time in the aqueous phase was 2 min, the concentration of CPTC/cyclohexane in the oil phase was 0.13 wt.%, the IP reaction was 20 s, the NaCl rejection rate of the semi-aromatic polyamide ROM was 98.28% and the flux was 65.38 L/m(2)·h, showing good desalination performance. Compared with an NF 90 commercial membrane, it has a good anti-BSA pollution ability. MDPI 2023-03-28 /pmc/articles/PMC10096747/ /pubmed/37050299 http://dx.doi.org/10.3390/polym15071683 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhu, Haiyang
Yuan, Bingbing
Li, Yuchuan
Preparation and Desalination of Semi-Aromatic Polyamide Reverse Osmosis Membranes (ROMs)
title Preparation and Desalination of Semi-Aromatic Polyamide Reverse Osmosis Membranes (ROMs)
title_full Preparation and Desalination of Semi-Aromatic Polyamide Reverse Osmosis Membranes (ROMs)
title_fullStr Preparation and Desalination of Semi-Aromatic Polyamide Reverse Osmosis Membranes (ROMs)
title_full_unstemmed Preparation and Desalination of Semi-Aromatic Polyamide Reverse Osmosis Membranes (ROMs)
title_short Preparation and Desalination of Semi-Aromatic Polyamide Reverse Osmosis Membranes (ROMs)
title_sort preparation and desalination of semi-aromatic polyamide reverse osmosis membranes (roms)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10096747/
https://www.ncbi.nlm.nih.gov/pubmed/37050299
http://dx.doi.org/10.3390/polym15071683
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