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Functionalized Graphene Oxide Modified Polyethersulfone Membranes for Low-Pressure Anionic Dye/Salt Fractionation

In this study, polyelectrolyte assembled functionalized graphene oxide (PE-GO) membranes were fabricated through a one-step charge facilitated deposition method for high performance dye/salt separation. According to the intercalation of polydopamine (PDA) and (ionic liquid) IL functional moieties in...

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Autores principales: Liu, Lifen, Xie, Xin, Zambare, Rahul S., Selvaraj, Antony Prince James, Sowrirajalu, Bhuvana NIL, Song, Xiaoxiao, Tang, Chuyang Y., Gao, Congjie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6403891/
https://www.ncbi.nlm.nih.gov/pubmed/30960720
http://dx.doi.org/10.3390/polym10070795
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author Liu, Lifen
Xie, Xin
Zambare, Rahul S.
Selvaraj, Antony Prince James
Sowrirajalu, Bhuvana NIL
Song, Xiaoxiao
Tang, Chuyang Y.
Gao, Congjie
author_facet Liu, Lifen
Xie, Xin
Zambare, Rahul S.
Selvaraj, Antony Prince James
Sowrirajalu, Bhuvana NIL
Song, Xiaoxiao
Tang, Chuyang Y.
Gao, Congjie
author_sort Liu, Lifen
collection PubMed
description In this study, polyelectrolyte assembled functionalized graphene oxide (PE-GO) membranes were fabricated through a one-step charge facilitated deposition method for high performance dye/salt separation. According to the intercalation of polydopamine (PDA) and (ionic liquid) IL functional moieties into the GO membranes, the pore size of the resulted PE-pGO and PE-iGO membrane increased from 2.69 nm to 4.13 nm and 6.54 nm, respectively. Correspondingly, a pure water flux of 13.8 ± 2.2, 36.7 ± 3.4, and 52.1 ± 6.7 L m(−1) h(−1) bar(−1) was achieved for PE-GO, PE-pGO and PE-iGO membrane, respectively. PE-iGO membrane with the largest pore size could be operated with significant water permeability (28.3 to 38.3 L m(−1) h(−1) bar(−1)) at a low operating pressure range of 0.5–2 bar (dye concentration = 100 ppm, salt concentration = 5 g/L). More importantly, functionalities introduced to the GO nanosheets are found to impact the dye adsorption to the membrane surface. The IL intercalation promotes the elution of dye molecules from the IL moieties at elevated pH, therefore enhancing the efficiency of alkaline washing of the membrane. By contrast, the intercalation of PDA weakens such efficiency due to its strong adhesion force to the dye molecules even at the alkaline condition.
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spelling pubmed-64038912019-04-02 Functionalized Graphene Oxide Modified Polyethersulfone Membranes for Low-Pressure Anionic Dye/Salt Fractionation Liu, Lifen Xie, Xin Zambare, Rahul S. Selvaraj, Antony Prince James Sowrirajalu, Bhuvana NIL Song, Xiaoxiao Tang, Chuyang Y. Gao, Congjie Polymers (Basel) Article In this study, polyelectrolyte assembled functionalized graphene oxide (PE-GO) membranes were fabricated through a one-step charge facilitated deposition method for high performance dye/salt separation. According to the intercalation of polydopamine (PDA) and (ionic liquid) IL functional moieties into the GO membranes, the pore size of the resulted PE-pGO and PE-iGO membrane increased from 2.69 nm to 4.13 nm and 6.54 nm, respectively. Correspondingly, a pure water flux of 13.8 ± 2.2, 36.7 ± 3.4, and 52.1 ± 6.7 L m(−1) h(−1) bar(−1) was achieved for PE-GO, PE-pGO and PE-iGO membrane, respectively. PE-iGO membrane with the largest pore size could be operated with significant water permeability (28.3 to 38.3 L m(−1) h(−1) bar(−1)) at a low operating pressure range of 0.5–2 bar (dye concentration = 100 ppm, salt concentration = 5 g/L). More importantly, functionalities introduced to the GO nanosheets are found to impact the dye adsorption to the membrane surface. The IL intercalation promotes the elution of dye molecules from the IL moieties at elevated pH, therefore enhancing the efficiency of alkaline washing of the membrane. By contrast, the intercalation of PDA weakens such efficiency due to its strong adhesion force to the dye molecules even at the alkaline condition. MDPI 2018-07-19 /pmc/articles/PMC6403891/ /pubmed/30960720 http://dx.doi.org/10.3390/polym10070795 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
Liu, Lifen
Xie, Xin
Zambare, Rahul S.
Selvaraj, Antony Prince James
Sowrirajalu, Bhuvana NIL
Song, Xiaoxiao
Tang, Chuyang Y.
Gao, Congjie
Functionalized Graphene Oxide Modified Polyethersulfone Membranes for Low-Pressure Anionic Dye/Salt Fractionation
title Functionalized Graphene Oxide Modified Polyethersulfone Membranes for Low-Pressure Anionic Dye/Salt Fractionation
title_full Functionalized Graphene Oxide Modified Polyethersulfone Membranes for Low-Pressure Anionic Dye/Salt Fractionation
title_fullStr Functionalized Graphene Oxide Modified Polyethersulfone Membranes for Low-Pressure Anionic Dye/Salt Fractionation
title_full_unstemmed Functionalized Graphene Oxide Modified Polyethersulfone Membranes for Low-Pressure Anionic Dye/Salt Fractionation
title_short Functionalized Graphene Oxide Modified Polyethersulfone Membranes for Low-Pressure Anionic Dye/Salt Fractionation
title_sort functionalized graphene oxide modified polyethersulfone membranes for low-pressure anionic dye/salt fractionation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6403891/
https://www.ncbi.nlm.nih.gov/pubmed/30960720
http://dx.doi.org/10.3390/polym10070795
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