Preparation of Nonstoichiometric Silica with Multi-Active Groups and Effect of Its Doping on Polysulfone Membrane Capabilities

Nonstoichiometric silica with multi-active groups particles (NS-MAG particles) were first synthesized, and then added to the porous matrix of PSF to prepare a NS-MAG/PSF composite membranethrough a phase inversion process. The optimum preparation conditions of NS-MAG particles were researched and de...

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Main Authors: Zhang, Y., Liu, F., Zhang, S., Liu, Shaomin
Format: Journal Article
Published: Marcel Dekker Inc 2012
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/41156
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author Zhang, Y.
Liu, F.
Zhang, S.
Zhang, Y.
Liu, Shaomin
author_facet Zhang, Y.
Liu, F.
Zhang, S.
Zhang, Y.
Liu, Shaomin
author_sort Zhang, Y.
building Curtin Institutional Repository
collection Online Access
description Nonstoichiometric silica with multi-active groups particles (NS-MAG particles) were first synthesized, and then added to the porous matrix of PSF to prepare a NS-MAG/PSF composite membranethrough a phase inversion process. The optimum preparation conditions of NS-MAG particles were researched and determined. Then the permeation fluxes of NS-MAG/PSF membranes with different doping amount of NS-MAG particles were tested. NS-MAG/PSF membrane, SiO2/PSF membrane, and PSF membrane were prepared respectively. These membranes were characterized by testing the tensile strength and the permeation flux. The results show that doping NS-MAG particles can better enhance the tensile strength and permeation flux of PSF membrane.
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institution Curtin University Malaysia
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publishDate 2012
publisher Marcel Dekker Inc
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spelling curtin-20.500.11937-411562017-09-13T14:10:54Z Preparation of Nonstoichiometric Silica with Multi-Active Groups and Effect of Its Doping on Polysulfone Membrane Capabilities Zhang, Y. Liu, F. Zhang, S. Zhang, Y. Liu, Shaomin wastewater containing oil nonstoichiometric silica hydrophilic property composite membrane polysulphone Nonstoichiometric silica with multi-active groups particles (NS-MAG particles) were first synthesized, and then added to the porous matrix of PSF to prepare a NS-MAG/PSF composite membranethrough a phase inversion process. The optimum preparation conditions of NS-MAG particles were researched and determined. Then the permeation fluxes of NS-MAG/PSF membranes with different doping amount of NS-MAG particles were tested. NS-MAG/PSF membrane, SiO2/PSF membrane, and PSF membrane were prepared respectively. These membranes were characterized by testing the tensile strength and the permeation flux. The results show that doping NS-MAG particles can better enhance the tensile strength and permeation flux of PSF membrane. 2012 Journal Article http://hdl.handle.net/20.500.11937/41156 10.1080/01496395.2012.672514 Marcel Dekker Inc restricted
spellingShingle wastewater containing oil
nonstoichiometric silica
hydrophilic property
composite membrane
polysulphone
Zhang, Y.
Liu, F.
Zhang, S.
Zhang, Y.
Liu, Shaomin
Preparation of Nonstoichiometric Silica with Multi-Active Groups and Effect of Its Doping on Polysulfone Membrane Capabilities
title Preparation of Nonstoichiometric Silica with Multi-Active Groups and Effect of Its Doping on Polysulfone Membrane Capabilities
title_full Preparation of Nonstoichiometric Silica with Multi-Active Groups and Effect of Its Doping on Polysulfone Membrane Capabilities
title_fullStr Preparation of Nonstoichiometric Silica with Multi-Active Groups and Effect of Its Doping on Polysulfone Membrane Capabilities
title_full_unstemmed Preparation of Nonstoichiometric Silica with Multi-Active Groups and Effect of Its Doping on Polysulfone Membrane Capabilities
title_short Preparation of Nonstoichiometric Silica with Multi-Active Groups and Effect of Its Doping on Polysulfone Membrane Capabilities
title_sort preparation of nonstoichiometric silica with multi-active groups and effect of its doping on polysulfone membrane capabilities
topic wastewater containing oil
nonstoichiometric silica
hydrophilic property
composite membrane
polysulphone
url http://hdl.handle.net/20.500.11937/41156