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Polysulfone/Brij-58 blend nanofiltration membranes: preparation, morphology and performance

Author:
احسان سلجوقی
,
سیدمحمود موسوی
,
سیدابوالحسن حسینی
,
Ehsan Saljoughi
,
Seyed Mahmoud Mousavi
,
Seyyed Abolhassan Hosseini
Year
: 2013
Abstract: In present research, novel asymmetric polysulfone (PSF)membraneswith high hydrophilicity and noticeable rejection of arsenic, as one of the major environmental problems, were prepared from PSF/Brij-58/NMP (1-methyl-2-pyrrolidone) system via immersion precipitation. Pure water was used as gelation media. The variation effect of coagulation bath temperature (CBT) and addition of Brij-58 on morphology, wettabiliy, pure water permeation flux and rejection of As (III) and As (V), as two dominant states of arsenic in the nature, were studied by scanning electron microscopy, contact

angle measuring instrument and experimental setup. The results demonstrated that both hydrophilicity and rejection properties of the preparedmembranes were significantly enhanced by small addition of Brij-58 surfactant in the casting solution along with using the lowest level of CBT. Addition of 4 wt.%of Brij-58 and using cold coagulation bath resulted in the highest rejection of As (V). Initial increase in Brij-58 concentration, from 0 wt. % to 2 wt. %, resulted in higher rejection of As (III). However, higher Brij-58 concentrations than 2 wt. % (increase from 2 wt. % to 6 wt. %) led to lower rejection of As (III). Also, it was found out that addition of Brij-58 in the casting solution along with increasing the CBT

resulted in formation ofmembraneswith high permeability and sub-layer porosity and thin top layer.
URI: http://libsearch.um.ac.ir:80/fum/handle/fum/3345569
Keyword(s): membrane,phase inversion,arsenic removal,polysulfone,hydrophilicity
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    Polysulfone/Brij-58 blend nanofiltration membranes: preparation, morphology and performance

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contributor authorاحسان سلجوقیen
contributor authorسیدمحمود موسویen
contributor authorسیدابوالحسن حسینیen
contributor authorEhsan Saljoughifa
contributor authorSeyed Mahmoud Mousavifa
contributor authorSeyyed Abolhassan Hosseinifa
date accessioned2020-06-06T13:11:59Z
date available2020-06-06T13:11:59Z
date issued2013
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3345569
description abstractIn present research, novel asymmetric polysulfone (PSF)membraneswith high hydrophilicity and noticeable rejection of arsenic, as one of the major environmental problems, were prepared from PSF/Brij-58/NMP (1-methyl-2-pyrrolidone) system via immersion precipitation. Pure water was used as gelation media. The variation effect of coagulation bath temperature (CBT) and addition of Brij-58 on morphology, wettabiliy, pure water permeation flux and rejection of As (III) and As (V), as two dominant states of arsenic in the nature, were studied by scanning electron microscopy, contact

angle measuring instrument and experimental setup. The results demonstrated that both hydrophilicity and rejection properties of the preparedmembranes were significantly enhanced by small addition of Brij-58 surfactant in the casting solution along with using the lowest level of CBT. Addition of 4 wt.%of Brij-58 and using cold coagulation bath resulted in the highest rejection of As (V). Initial increase in Brij-58 concentration, from 0 wt. % to 2 wt. %, resulted in higher rejection of As (III). However, higher Brij-58 concentrations than 2 wt. % (increase from 2 wt. % to 6 wt. %) led to lower rejection of As (III). Also, it was found out that addition of Brij-58 in the casting solution along with increasing the CBT

resulted in formation ofmembraneswith high permeability and sub-layer porosity and thin top layer.
en
languageEnglish
titlePolysulfone/Brij-58 blend nanofiltration membranes: preparation, morphology and performanceen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsmembraneen
subject keywordsphase inversionen
subject keywordsarsenic removalen
subject keywordspolysulfoneen
subject keywordshydrophilicityen
journal titlePolymers for Advanced Technologiesfa
pages383-390
journal volume24
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1033399.html
identifier articleid1033399
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