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Preparation of Nano-SiO(2)/Al(2)O(3)/ZnO-Blended PVDF Cation-Exchange Membranes with Improved Membrane Permselectivity and Oxidation Stability

Ion exchange membranes are used in practically every industry; however, most of them have defects such as low permeability and poor oxidation resistance. In this paper, cation-exchange membranes were prepared with poly (vinylidene fluoride) (PVDF) blended with nano-SiO(2), nano-Al(2)O(3) and nano-Zn...

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Autores principales: Zhang, Xuemin, Zhou, Jian, Zou, Xin, Wang, Zhongyu, Chu, Yunchen, Wang, Sanfan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6316986/
https://www.ncbi.nlm.nih.gov/pubmed/30518147
http://dx.doi.org/10.3390/ma11122465
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author Zhang, Xuemin
Zhou, Jian
Zou, Xin
Wang, Zhongyu
Chu, Yunchen
Wang, Sanfan
author_facet Zhang, Xuemin
Zhou, Jian
Zou, Xin
Wang, Zhongyu
Chu, Yunchen
Wang, Sanfan
author_sort Zhang, Xuemin
collection PubMed
description Ion exchange membranes are used in practically every industry; however, most of them have defects such as low permeability and poor oxidation resistance. In this paper, cation-exchange membranes were prepared with poly (vinylidene fluoride) (PVDF) blended with nano-SiO(2), nano-Al(2)O(3) and nano-ZnO. Sulfonic acid groups were injected into the membrane prepared by styrene grafting and sulfonation. The methods used for characterizing the prepared membranes were Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), and electrochemical measurements. Membrane performance, such as the ion exchange capacity (IEC), water uptake (WU), transport number, membrane permselectivity, membrane resistance, functional groups, and morphology were also evaluated. The hydrophilia, IEC, and permselectivity of cation-exchange membranes depended on the nanoparticle content of the membrane matrix. High transport property values were obtained, which increased with increasing nano-SiO(2)/Al(2)O(3)/ZnO weight fractions. Finally, the cation-exchange membranes prepared with 1.5% nano-SiO(2), 2.0% nano-Al(2)O(3) or 2.0% nano-ZnO all exhibited excellent membrane properties, including membrane permselectivity (PVDF/2% ZnO-g-PSSA membranes, 94.9%), IEC (PVDF/2% Al(2)O(3)-g-PSSA membranes, 2.735 mmol·g(−1)), and oxidation resistance (PVDF/1.5% SiO(2)-g-PSSA membranes, 2.33%). They can be used to separate applications in a variety of different areas, such as water treatment, electro-driven separation, heavy metal smelting, or other electrochemical processes.
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spelling pubmed-63169862019-01-08 Preparation of Nano-SiO(2)/Al(2)O(3)/ZnO-Blended PVDF Cation-Exchange Membranes with Improved Membrane Permselectivity and Oxidation Stability Zhang, Xuemin Zhou, Jian Zou, Xin Wang, Zhongyu Chu, Yunchen Wang, Sanfan Materials (Basel) Article Ion exchange membranes are used in practically every industry; however, most of them have defects such as low permeability and poor oxidation resistance. In this paper, cation-exchange membranes were prepared with poly (vinylidene fluoride) (PVDF) blended with nano-SiO(2), nano-Al(2)O(3) and nano-ZnO. Sulfonic acid groups were injected into the membrane prepared by styrene grafting and sulfonation. The methods used for characterizing the prepared membranes were Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), and electrochemical measurements. Membrane performance, such as the ion exchange capacity (IEC), water uptake (WU), transport number, membrane permselectivity, membrane resistance, functional groups, and morphology were also evaluated. The hydrophilia, IEC, and permselectivity of cation-exchange membranes depended on the nanoparticle content of the membrane matrix. High transport property values were obtained, which increased with increasing nano-SiO(2)/Al(2)O(3)/ZnO weight fractions. Finally, the cation-exchange membranes prepared with 1.5% nano-SiO(2), 2.0% nano-Al(2)O(3) or 2.0% nano-ZnO all exhibited excellent membrane properties, including membrane permselectivity (PVDF/2% ZnO-g-PSSA membranes, 94.9%), IEC (PVDF/2% Al(2)O(3)-g-PSSA membranes, 2.735 mmol·g(−1)), and oxidation resistance (PVDF/1.5% SiO(2)-g-PSSA membranes, 2.33%). They can be used to separate applications in a variety of different areas, such as water treatment, electro-driven separation, heavy metal smelting, or other electrochemical processes. MDPI 2018-12-04 /pmc/articles/PMC6316986/ /pubmed/30518147 http://dx.doi.org/10.3390/ma11122465 Text en © 2018 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
Zhang, Xuemin
Zhou, Jian
Zou, Xin
Wang, Zhongyu
Chu, Yunchen
Wang, Sanfan
Preparation of Nano-SiO(2)/Al(2)O(3)/ZnO-Blended PVDF Cation-Exchange Membranes with Improved Membrane Permselectivity and Oxidation Stability
title Preparation of Nano-SiO(2)/Al(2)O(3)/ZnO-Blended PVDF Cation-Exchange Membranes with Improved Membrane Permselectivity and Oxidation Stability
title_full Preparation of Nano-SiO(2)/Al(2)O(3)/ZnO-Blended PVDF Cation-Exchange Membranes with Improved Membrane Permselectivity and Oxidation Stability
title_fullStr Preparation of Nano-SiO(2)/Al(2)O(3)/ZnO-Blended PVDF Cation-Exchange Membranes with Improved Membrane Permselectivity and Oxidation Stability
title_full_unstemmed Preparation of Nano-SiO(2)/Al(2)O(3)/ZnO-Blended PVDF Cation-Exchange Membranes with Improved Membrane Permselectivity and Oxidation Stability
title_short Preparation of Nano-SiO(2)/Al(2)O(3)/ZnO-Blended PVDF Cation-Exchange Membranes with Improved Membrane Permselectivity and Oxidation Stability
title_sort preparation of nano-sio(2)/al(2)o(3)/zno-blended pvdf cation-exchange membranes with improved membrane permselectivity and oxidation stability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6316986/
https://www.ncbi.nlm.nih.gov/pubmed/30518147
http://dx.doi.org/10.3390/ma11122465
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