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The Intrinsic Parameters of the Polyamide Nanofilm in Thin-Film Composite Reverse Osmosis (TFC-RO) Membranes: The Impact of Monomer Concentration

The realistic resistance zone of water and salt molecules to transport across a TFC-RO membrane is the topmost polyamide nanofilm. The existence of hollow voids in the fully aromatic polyamide (PA) film gives its surface ridge-and-valley morphologies, which confuses the comprehensions of the definit...

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Detalles Bibliográficos
Autores principales: Zhang, Mengling, Hu, Xiangyang, Peng, Lei, Zhou, Shilin, Zhou, Yong, Xie, Shijie, Song, Xiaoxiao, Gao, Congjie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9032585/
https://www.ncbi.nlm.nih.gov/pubmed/35448387
http://dx.doi.org/10.3390/membranes12040417
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author Zhang, Mengling
Hu, Xiangyang
Peng, Lei
Zhou, Shilin
Zhou, Yong
Xie, Shijie
Song, Xiaoxiao
Gao, Congjie
author_facet Zhang, Mengling
Hu, Xiangyang
Peng, Lei
Zhou, Shilin
Zhou, Yong
Xie, Shijie
Song, Xiaoxiao
Gao, Congjie
author_sort Zhang, Mengling
collection PubMed
description The realistic resistance zone of water and salt molecules to transport across a TFC-RO membrane is the topmost polyamide nanofilm. The existence of hollow voids in the fully aromatic polyamide (PA) film gives its surface ridge-and-valley morphologies, which confuses the comprehensions of the definition of the PA thickness. The hollow voids, however, neither participate in salt–water separation nor hinder water penetrating. In this paper, the influence of intrinsic thickness (single wall thickness) of the PA layer on water permeability was studied by adjusting the concentration of reacting monomers. It confirms that the true permeation resistance of water molecules originates from the intrinsic thickness portion of the membrane. The experimental results show that the water permeability constant decreases from 3.15 ± 0.02 to 2.74 ± 0.10 L·m(−2)·h(−1)·bar(−1) when the intrinsic thickness of the membrane increases by 9 nm. The defects on the film surface generate when the higher concentration of MPD is matched with the relatively low concentration of TMC. In addition, the role of MPD and TMC in the micro-structure of the PA membrane was discussed, which may provide a new way for the preparation of high permeability and high selectivity composite reverse osmosis membranes.
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spelling pubmed-90325852022-04-23 The Intrinsic Parameters of the Polyamide Nanofilm in Thin-Film Composite Reverse Osmosis (TFC-RO) Membranes: The Impact of Monomer Concentration Zhang, Mengling Hu, Xiangyang Peng, Lei Zhou, Shilin Zhou, Yong Xie, Shijie Song, Xiaoxiao Gao, Congjie Membranes (Basel) Article The realistic resistance zone of water and salt molecules to transport across a TFC-RO membrane is the topmost polyamide nanofilm. The existence of hollow voids in the fully aromatic polyamide (PA) film gives its surface ridge-and-valley morphologies, which confuses the comprehensions of the definition of the PA thickness. The hollow voids, however, neither participate in salt–water separation nor hinder water penetrating. In this paper, the influence of intrinsic thickness (single wall thickness) of the PA layer on water permeability was studied by adjusting the concentration of reacting monomers. It confirms that the true permeation resistance of water molecules originates from the intrinsic thickness portion of the membrane. The experimental results show that the water permeability constant decreases from 3.15 ± 0.02 to 2.74 ± 0.10 L·m(−2)·h(−1)·bar(−1) when the intrinsic thickness of the membrane increases by 9 nm. The defects on the film surface generate when the higher concentration of MPD is matched with the relatively low concentration of TMC. In addition, the role of MPD and TMC in the micro-structure of the PA membrane was discussed, which may provide a new way for the preparation of high permeability and high selectivity composite reverse osmosis membranes. MDPI 2022-04-11 /pmc/articles/PMC9032585/ /pubmed/35448387 http://dx.doi.org/10.3390/membranes12040417 Text en © 2022 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
Zhang, Mengling
Hu, Xiangyang
Peng, Lei
Zhou, Shilin
Zhou, Yong
Xie, Shijie
Song, Xiaoxiao
Gao, Congjie
The Intrinsic Parameters of the Polyamide Nanofilm in Thin-Film Composite Reverse Osmosis (TFC-RO) Membranes: The Impact of Monomer Concentration
title The Intrinsic Parameters of the Polyamide Nanofilm in Thin-Film Composite Reverse Osmosis (TFC-RO) Membranes: The Impact of Monomer Concentration
title_full The Intrinsic Parameters of the Polyamide Nanofilm in Thin-Film Composite Reverse Osmosis (TFC-RO) Membranes: The Impact of Monomer Concentration
title_fullStr The Intrinsic Parameters of the Polyamide Nanofilm in Thin-Film Composite Reverse Osmosis (TFC-RO) Membranes: The Impact of Monomer Concentration
title_full_unstemmed The Intrinsic Parameters of the Polyamide Nanofilm in Thin-Film Composite Reverse Osmosis (TFC-RO) Membranes: The Impact of Monomer Concentration
title_short The Intrinsic Parameters of the Polyamide Nanofilm in Thin-Film Composite Reverse Osmosis (TFC-RO) Membranes: The Impact of Monomer Concentration
title_sort intrinsic parameters of the polyamide nanofilm in thin-film composite reverse osmosis (tfc-ro) membranes: the impact of monomer concentration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9032585/
https://www.ncbi.nlm.nih.gov/pubmed/35448387
http://dx.doi.org/10.3390/membranes12040417
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