The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes

A simple resistance modeling methodology is presented for gas transport through asymmetric polymeric membranes. The methodology allows fine structural properties such as active layer thickness and surface porosity, to be determined from experimental gas permeation data. This paper, which could be re...

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Main Authors: Ismail, A. F., Shilton, S. J.
Format: Article
Language:en
Published: Penerbit UTM Press 2000
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Online Access:http://eprints.utm.my/914/1/AhmadFauziIsmail2000_ThePracticalUseOfResistance_.pdf
http://eprints.utm.my/914/
http://www.penerbit.utm.my/cgi-bin/jurnal/jurnal.cgi?id=siri_kejuruteraan
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author Ismail, A. F.
Shilton, S. J.
author_facet Ismail, A. F.
Shilton, S. J.
author_sort Ismail, A. F.
building UTM Library
collection Institutional Repository
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
continent Asia
country Malaysia
description A simple resistance modeling methodology is presented for gas transport through asymmetric polymeric membranes. The methodology allows fine structural properties such as active layer thickness and surface porosity, to be determined from experimental gas permeation data. This paper, which could be regarded as a practical guide, shows that resistance modeling, if accompanied by realistic working assumptions, need not be difficult and can provide a valuable insight into the relationships between the membrane fabrication conditions and performance of gas separation membranes.
format Article
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institution Universiti Teknologi Malaysia
language en
publishDate 2000
publisher Penerbit UTM Press
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spelling my.utm.eprints-9142017-11-01T04:17:52Z http://eprints.utm.my/914/ The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes Ismail, A. F. Shilton, S. J. TP Chemical technology A simple resistance modeling methodology is presented for gas transport through asymmetric polymeric membranes. The methodology allows fine structural properties such as active layer thickness and surface porosity, to be determined from experimental gas permeation data. This paper, which could be regarded as a practical guide, shows that resistance modeling, if accompanied by realistic working assumptions, need not be difficult and can provide a valuable insight into the relationships between the membrane fabrication conditions and performance of gas separation membranes. Penerbit UTM Press 2000-06 Article PeerReviewed application/pdf en http://eprints.utm.my/914/1/AhmadFauziIsmail2000_ThePracticalUseOfResistance_.pdf Ismail, A. F. and Shilton, S. J. (2000) The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes. Jurnal Teknologi F (32F). pp. 93-101. ISSN 0127-9696 http://www.penerbit.utm.my/cgi-bin/jurnal/jurnal.cgi?id=siri_kejuruteraan
spellingShingle TP Chemical technology
Ismail, A. F.
Shilton, S. J.
The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes
title The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes
title_full The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes
title_fullStr The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes
title_full_unstemmed The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes
title_short The Practical Use Of Resistance Modeling To Interpret The Gas Separation Properties Of Hollow Fiber Membranes
title_sort practical use of resistance modeling to interpret the gas separation properties of hollow fiber membranes
topic TP Chemical technology
url http://eprints.utm.my/914/1/AhmadFauziIsmail2000_ThePracticalUseOfResistance_.pdf
http://eprints.utm.my/914/
http://www.penerbit.utm.my/cgi-bin/jurnal/jurnal.cgi?id=siri_kejuruteraan
url_provider http://eprints.utm.my/