Modelling and development of carbon molecular sieve membrane for gas separation
The objective of the research project was to investigate the feasibility of preparing carbon molecular sieve membranes from Kapton® polyimide film. The effects of carbonisation parameters on the gas transport properties of the carbon membranes were studied using statistical analysis. Carbonisation t...
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sg-ntu-dr.10356-64102023-03-11T17:50:54Z Modelling and development of carbon molecular sieve membrane for gas separation Su, Jincai Lua Aik Chong School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering::Alternative, renewable energy sources The objective of the research project was to investigate the feasibility of preparing carbon molecular sieve membranes from Kapton® polyimide film. The effects of carbonisation parameters on the gas transport properties of the carbon membranes were studied using statistical analysis. Carbonisation temperature had the strongest influence on gas permeation through the carbon membranes. Both the carbonisation atmosphere and the thermal soak time had limited effects on the pore size of the carbon membranes. The heating rate did not have any influence on the development of the membrane structure during the carbonisation process. DOCTOR OF PHILOSOPHY (MAE) 2008-09-17T11:14:17Z 2008-09-17T11:14:17Z 2006 2006 Thesis Su, J. C. (2006). Modelling and development of carbon molecular sieve membrane for gas separation. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/6410 10.32657/10356/6410 Nanyang Technological University application/pdf |
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DRNTU::Engineering::Mechanical engineering::Alternative, renewable energy sources Su, Jincai Modelling and development of carbon molecular sieve membrane for gas separation |
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The objective of the research project was to investigate the feasibility of preparing carbon molecular sieve membranes from Kapton® polyimide film. The effects of carbonisation parameters on the gas transport properties of the carbon membranes were studied using statistical analysis. Carbonisation temperature had the strongest influence on gas permeation through the carbon membranes. Both the carbonisation atmosphere and the thermal soak time had limited effects on the pore size of the carbon membranes. The heating rate did not have any influence on the development of the membrane structure during the carbonisation process. |
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Lua Aik Chong |
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Lua Aik Chong Su, Jincai |
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Theses and Dissertations |
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Su, Jincai |
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Su, Jincai |
title |
Modelling and development of carbon molecular sieve membrane for gas separation |
title_short |
Modelling and development of carbon molecular sieve membrane for gas separation |
title_full |
Modelling and development of carbon molecular sieve membrane for gas separation |
title_fullStr |
Modelling and development of carbon molecular sieve membrane for gas separation |
title_full_unstemmed |
Modelling and development of carbon molecular sieve membrane for gas separation |
title_sort |
modelling and development of carbon molecular sieve membrane for gas separation |
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2008 |
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https://hdl.handle.net/10356/6410 |
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1761781998775435264 |