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Effect of PEG additive and coagulation bath temperature on the morphology, permeability and thermal/chemical stability of asymmetric CA membranes

Author:
احسان سلجوقی
,
Mohammad Amirilargani
,
Toraj Mohammadi
,
Ehsan Saljoughi
Year
: 2010
Abstract: In this study, asymmetric cellulose acetate (CA) membranes were prepared from polymeric blend of CA–PEG/1-methyl-2-pyrrolidone (NMP) system via phase inversion induced by immersion precipitation in water coagulation bath. Effects of PEG concentration (0 wt.%, 5 wt.% and 10 wt.%) and coagulation bath temperature (CBT = 0 °C and 25 °C) on morphology, pure water permeation flux (PWF) and thermal/chemical stability of the prepared membranes were studied and discussed. Rejection of the developed CA membranes was quantified using human serum albumin (HSA) solution. Increasing PEG concentration in the cast solution film along with higher CBT results in increasing the membrane thickness, pure water flux (PWF) and HSA transmission, also these changes facilitate macrovoids formation (even with the size of more than 50 µm) in the membrane sublayer. On the other hand, increasing PEG concentration along with reduction of CBT results in increasing the thermal/chemical stability of the prepared membranes. Presence of low molecular weight PEG additive in the cast solution film increases porosity/permeability and simultaneously thermal/chemical stability of the prepared membranes. On the other hand, using cold coagulation bath despite of increasing the thermal/chemical stability of the prepared membranes results in reduction of membranes porosity/permeability
URI: http://libsearch.um.ac.ir:80/fum/handle/fum/3345537
Keyword(s): Cellulose acetate,

PEG
,


Coagulation bath temperature
,


Membrane thickness
,


Macrovoids/Glass transition temperature
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    Effect of PEG additive and coagulation bath temperature on the morphology, permeability and thermal/chemical stability of asymmetric CA membranes

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contributor authorاحسان سلجوقیen
contributor authorMohammad Amirilarganien
contributor authorToraj Mohammadien
contributor authorEhsan Saljoughifa
date accessioned2020-06-06T13:11:56Z
date available2020-06-06T13:11:56Z
date issued2010
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3345537?locale-attribute=en
description abstractIn this study, asymmetric cellulose acetate (CA) membranes were prepared from polymeric blend of CA–PEG/1-methyl-2-pyrrolidone (NMP) system via phase inversion induced by immersion precipitation in water coagulation bath. Effects of PEG concentration (0 wt.%, 5 wt.% and 10 wt.%) and coagulation bath temperature (CBT = 0 °C and 25 °C) on morphology, pure water permeation flux (PWF) and thermal/chemical stability of the prepared membranes were studied and discussed. Rejection of the developed CA membranes was quantified using human serum albumin (HSA) solution. Increasing PEG concentration in the cast solution film along with higher CBT results in increasing the membrane thickness, pure water flux (PWF) and HSA transmission, also these changes facilitate macrovoids formation (even with the size of more than 50 µm) in the membrane sublayer. On the other hand, increasing PEG concentration along with reduction of CBT results in increasing the thermal/chemical stability of the prepared membranes. Presence of low molecular weight PEG additive in the cast solution film increases porosity/permeability and simultaneously thermal/chemical stability of the prepared membranes. On the other hand, using cold coagulation bath despite of increasing the thermal/chemical stability of the prepared membranes results in reduction of membranes porosity/permeabilityen
languageEnglish
titleEffect of PEG additive and coagulation bath temperature on the morphology, permeability and thermal/chemical stability of asymmetric CA membranesen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsCellulose acetateen
subject keywords

PEG
en
subject keywords

Coagulation bath temperature
en
subject keywords

Membrane thickness
en
subject keywords

Macrovoids/Glass transition temperature
en
journal titleDesalinationen
journal titleDesalinationfa
pages72-78
journal volume262
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1033339.html
identifier articleid1033339
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