Study on the Impact of Coagulation Bath Temperature on the Surface Morphology and Performance of Polyethylene Membrane Prepared by TIPS Method in Purification of Collagen Protein
Fabrication of an efficient microfiltration polymeric membrane with low fouling characteristic and high permeation flux is an essential task for developing membrane-related researches and membrane industries. Surface skin layer which decreases the membrane permeation and accelerates the membrane fou...
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Iran Polymer and Petrochemical Institute
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doaj-40eaebca82f64f2880dd6ca93c92dd7e2020-11-24T21:18:57ZfasIran Polymer and Petrochemical Instituteعلوم و تکنولوژی پلیمر1016-32552008-08832015-11-0128540739510.22063/jipst.2015.13041304Study on the Impact of Coagulation Bath Temperature on the Surface Morphology and Performance of Polyethylene Membrane Prepared by TIPS Method in Purification of Collagen ProteinAli Akbari0Reza Yegani1Ali Behboudi2Faculty of Chemical Engineering; Sahand University of Technology, P.O. Box: 51335-1996,Tabriz, IranFaculty of Chemical Engineering; Sahand University of Technology, P.O. Box: 51335-1996,Tabriz, IranFaculty of Chemical Engineering; Sahand University of Technology, P.O. Box: 51335-1996,Tabriz, IranFabrication of an efficient microfiltration polymeric membrane with low fouling characteristic and high permeation flux is an essential task for developing membrane-related researches and membrane industries. Surface skin layer which decreases the membrane permeation and accelerates the membrane fouling in purification and separation of protein solution is usually observed for all membranes fabricated via thermally induced phase separation (TIPS) method. In this work, the impact of coagulation bath temperature on the skin layer thickness and performance of fabricated membranes was investigated. Collagen protein purification tests were carried out to investigate the impact of skin layer on the performance and determine the fouling mechanisms of the membranes. Obtained results showed that when coagulation bath temperature increases, the thickness of skin layer decreases. In membranes with lower surface porosity, decline in protein permeation is mainly due to the standard blocking fouling mechanism which is a kind of the irreversible fouling phenomenon. In membranes with higher surface porosity, however, decline in protein permeation is mainly due to the intermediate blocking fouling mechanism which is a kind of reversible fouling phenomenon. Obtained results from permeation flux and spectrophotometric analyses of inlet feed and retentate streams within 800 min showed that the collagen recovery ratio for modified and unmodified membranes were 5.6 and less than 1%, respectively. It is worth to mention that for membrane with lower surface porosity the collagen filtration process was stopped within 400 min due to the membrane fouling. For membrane with higher surface porosity, however there was no halting in filtration process within 800 min.http://jips.ippi.ac.ir/article_1304_7dc16c452cd7aab68018a01191f97dd4.pdfpolyethylene membranethermally induced phase separation methodsurface dense skin layermembrane foulingcollagen protein purification |
collection |
DOAJ |
language |
fas |
format |
Article |
sources |
DOAJ |
author |
Ali Akbari Reza Yegani Ali Behboudi |
spellingShingle |
Ali Akbari Reza Yegani Ali Behboudi Study on the Impact of Coagulation Bath Temperature on the Surface Morphology and Performance of Polyethylene Membrane Prepared by TIPS Method in Purification of Collagen Protein علوم و تکنولوژی پلیمر polyethylene membrane thermally induced phase separation method surface dense skin layer membrane fouling collagen protein purification |
author_facet |
Ali Akbari Reza Yegani Ali Behboudi |
author_sort |
Ali Akbari |
title |
Study on the Impact of Coagulation Bath Temperature on the Surface Morphology and Performance of Polyethylene Membrane Prepared by TIPS Method in Purification of Collagen Protein |
title_short |
Study on the Impact of Coagulation Bath Temperature on the Surface Morphology and Performance of Polyethylene Membrane Prepared by TIPS Method in Purification of Collagen Protein |
title_full |
Study on the Impact of Coagulation Bath Temperature on the Surface Morphology and Performance of Polyethylene Membrane Prepared by TIPS Method in Purification of Collagen Protein |
title_fullStr |
Study on the Impact of Coagulation Bath Temperature on the Surface Morphology and Performance of Polyethylene Membrane Prepared by TIPS Method in Purification of Collagen Protein |
title_full_unstemmed |
Study on the Impact of Coagulation Bath Temperature on the Surface Morphology and Performance of Polyethylene Membrane Prepared by TIPS Method in Purification of Collagen Protein |
title_sort |
study on the impact of coagulation bath temperature on the surface morphology and performance of polyethylene membrane prepared by tips method in purification of collagen protein |
publisher |
Iran Polymer and Petrochemical Institute |
series |
علوم و تکنولوژی پلیمر |
issn |
1016-3255 2008-0883 |
publishDate |
2015-11-01 |
description |
Fabrication of an efficient microfiltration polymeric membrane with low fouling characteristic and high permeation flux is an essential task for developing membrane-related researches and membrane industries. Surface skin layer which decreases the membrane permeation and accelerates the membrane fouling in purification and separation of protein solution is usually observed for all membranes fabricated via thermally induced phase separation (TIPS) method. In this work, the impact of coagulation bath temperature on the skin layer thickness and performance of fabricated membranes was investigated. Collagen protein purification tests were carried out to investigate the impact of skin layer on the performance and determine the fouling mechanisms of the membranes. Obtained results showed that when coagulation bath temperature increases, the thickness of skin layer decreases. In membranes with lower surface porosity, decline in protein permeation is mainly due to the standard blocking fouling mechanism which is a kind of the irreversible fouling phenomenon. In membranes with higher surface porosity, however, decline in protein permeation is mainly due to the intermediate blocking fouling mechanism which is a kind of reversible fouling phenomenon. Obtained results from permeation flux and spectrophotometric analyses of inlet feed and retentate streams within 800 min showed that the collagen recovery ratio for modified and unmodified membranes were 5.6 and less than 1%, respectively. It is worth to mention that for membrane with lower surface porosity the collagen filtration process was stopped within 400 min due to the membrane fouling. For membrane with higher surface porosity, however there was no halting in filtration process within 800 min. |
topic |
polyethylene membrane thermally induced phase separation method surface dense skin layer membrane fouling collagen protein purification |
url |
http://jips.ippi.ac.ir/article_1304_7dc16c452cd7aab68018a01191f97dd4.pdf |
work_keys_str_mv |
AT aliakbari studyontheimpactofcoagulationbathtemperatureonthesurfacemorphologyandperformanceofpolyethylenemembranepreparedbytipsmethodinpurificationofcollagenprotein AT rezayegani studyontheimpactofcoagulationbathtemperatureonthesurfacemorphologyandperformanceofpolyethylenemembranepreparedbytipsmethodinpurificationofcollagenprotein AT alibehboudi studyontheimpactofcoagulationbathtemperatureonthesurfacemorphologyandperformanceofpolyethylenemembranepreparedbytipsmethodinpurificationofcollagenprotein |
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1716736977497227264 |