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Fabrication of a Novel Antifouling Polysulfone Membrane with in Situ Embedment of Mxene Nanosheets

Membrane fouling is still a critical issue for the application of ultrafiltration, which has been widely used in water treatment due to its efficiency and simplicity. In order to improve the antifouling property, a new 2D material MXene was used to fabricate composite ultrafiltration membrane with t...

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Detalles Bibliográficos
Autores principales: Shen, Zhen, Chen, Wei, Xu, Hang, Yang, Wen, Kong, Qing, Wang, Ao, Ding, Mingmei, Shang, Juan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6926845/
https://www.ncbi.nlm.nih.gov/pubmed/31766756
http://dx.doi.org/10.3390/ijerph16234659
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author Shen, Zhen
Chen, Wei
Xu, Hang
Yang, Wen
Kong, Qing
Wang, Ao
Ding, Mingmei
Shang, Juan
author_facet Shen, Zhen
Chen, Wei
Xu, Hang
Yang, Wen
Kong, Qing
Wang, Ao
Ding, Mingmei
Shang, Juan
author_sort Shen, Zhen
collection PubMed
description Membrane fouling is still a critical issue for the application of ultrafiltration, which has been widely used in water treatment due to its efficiency and simplicity. In order to improve the antifouling property, a new 2D material MXene was used to fabricate composite ultrafiltration membrane with the approach of in situ embedment during the phase inversion process in this study. Scanning electron microscopy (SEM), atomic force microscopy (AFM), thermogravimetric analysis (TGA), energy dispersive spectroscopy (EDS), Fourier transform infrared spectroscopy (FTIR), water contact angle, bovine serum albumin rejection and porosity measurements were utilized to characterize the prepared membranes. Due to the hydrophilicity of the MXene, the composite membranes obtained higher hydrophilicity, confirmed by the decreased water contact angle. All the modified membranes had a high bovine serum albumin rejection above 90% while that of the pristine polysulfone membrane was 77.48%. The flux recovery ratio and the reversible fouling ratio of the membranes were also improved along with the increasing content of the MXene. Furthermore, the highest flux recovery ratio could also reach 76.1%. These indicated the good antifouling properties of MXene composite membranes. The enhanced water permeability and protein rejection and excellent antifouling properties make MXene a promising material for antifouling membrane modification.
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spelling pubmed-69268452019-12-23 Fabrication of a Novel Antifouling Polysulfone Membrane with in Situ Embedment of Mxene Nanosheets Shen, Zhen Chen, Wei Xu, Hang Yang, Wen Kong, Qing Wang, Ao Ding, Mingmei Shang, Juan Int J Environ Res Public Health Article Membrane fouling is still a critical issue for the application of ultrafiltration, which has been widely used in water treatment due to its efficiency and simplicity. In order to improve the antifouling property, a new 2D material MXene was used to fabricate composite ultrafiltration membrane with the approach of in situ embedment during the phase inversion process in this study. Scanning electron microscopy (SEM), atomic force microscopy (AFM), thermogravimetric analysis (TGA), energy dispersive spectroscopy (EDS), Fourier transform infrared spectroscopy (FTIR), water contact angle, bovine serum albumin rejection and porosity measurements were utilized to characterize the prepared membranes. Due to the hydrophilicity of the MXene, the composite membranes obtained higher hydrophilicity, confirmed by the decreased water contact angle. All the modified membranes had a high bovine serum albumin rejection above 90% while that of the pristine polysulfone membrane was 77.48%. The flux recovery ratio and the reversible fouling ratio of the membranes were also improved along with the increasing content of the MXene. Furthermore, the highest flux recovery ratio could also reach 76.1%. These indicated the good antifouling properties of MXene composite membranes. The enhanced water permeability and protein rejection and excellent antifouling properties make MXene a promising material for antifouling membrane modification. MDPI 2019-11-22 2019-12 /pmc/articles/PMC6926845/ /pubmed/31766756 http://dx.doi.org/10.3390/ijerph16234659 Text en © 2019 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
Shen, Zhen
Chen, Wei
Xu, Hang
Yang, Wen
Kong, Qing
Wang, Ao
Ding, Mingmei
Shang, Juan
Fabrication of a Novel Antifouling Polysulfone Membrane with in Situ Embedment of Mxene Nanosheets
title Fabrication of a Novel Antifouling Polysulfone Membrane with in Situ Embedment of Mxene Nanosheets
title_full Fabrication of a Novel Antifouling Polysulfone Membrane with in Situ Embedment of Mxene Nanosheets
title_fullStr Fabrication of a Novel Antifouling Polysulfone Membrane with in Situ Embedment of Mxene Nanosheets
title_full_unstemmed Fabrication of a Novel Antifouling Polysulfone Membrane with in Situ Embedment of Mxene Nanosheets
title_short Fabrication of a Novel Antifouling Polysulfone Membrane with in Situ Embedment of Mxene Nanosheets
title_sort fabrication of a novel antifouling polysulfone membrane with in situ embedment of mxene nanosheets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6926845/
https://www.ncbi.nlm.nih.gov/pubmed/31766756
http://dx.doi.org/10.3390/ijerph16234659
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