Separation of carbon dioxide using selected porous materials: a review

The use of porous adsorbents for CO2 capture and separation is presented, highlighting the important advances in their research over the past decades. These adsorbents find application commercially due to their tunable pore size and shape, their applicability over wide range of temperatures and pres...

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Main Authors: U.M., Baba, K.S.N., Kamarudin, Alias, N.
Format: Article
Published: World Academy of Research and Publication 2010
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Online Access:http://eprints.utm.my/id/eprint/25981/
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spelling my.utm.259812018-11-30T06:22:55Z http://eprints.utm.my/id/eprint/25981/ Separation of carbon dioxide using selected porous materials: a review U.M., Baba K.S.N., Kamarudin Alias, N. Q Science (General) The use of porous adsorbents for CO2 capture and separation is presented, highlighting the important advances in their research over the past decades. These adsorbents find application commercially due to their tunable pore size and shape, their applicability over wide range of temperatures and pressures. Surface modification using amines is carried out in order to improve their affinity and selectivity towards CO2. The commercial/industrial applications of these adsorbents in cyclic adsorption process (PSA, VSA, TSA) are also discussed. Adsorption technology using solid sorbents with high selectivity and affinity towards CO2 could provide alternative over conventional techniques. Some of these sorbents have been shown to effectively adsorb CO2 where the gas stream contain vapor or moisture, as such it is possible to eliminate the dehumidification step. In addition, these materials are synthesized from relatively cheap source and also occur naturally. World Academy of Research and Publication 2010-07 Article PeerReviewed U.M., Baba and K.S.N., Kamarudin and Alias, N. (2010) Separation of carbon dioxide using selected porous materials: a review. International Journal of Chemical and Environmental Engineering, 1 (1). pp. 40-46. ISSN 2078-0737
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic Q Science (General)
spellingShingle Q Science (General)
U.M., Baba
K.S.N., Kamarudin
Alias, N.
Separation of carbon dioxide using selected porous materials: a review
description The use of porous adsorbents for CO2 capture and separation is presented, highlighting the important advances in their research over the past decades. These adsorbents find application commercially due to their tunable pore size and shape, their applicability over wide range of temperatures and pressures. Surface modification using amines is carried out in order to improve their affinity and selectivity towards CO2. The commercial/industrial applications of these adsorbents in cyclic adsorption process (PSA, VSA, TSA) are also discussed. Adsorption technology using solid sorbents with high selectivity and affinity towards CO2 could provide alternative over conventional techniques. Some of these sorbents have been shown to effectively adsorb CO2 where the gas stream contain vapor or moisture, as such it is possible to eliminate the dehumidification step. In addition, these materials are synthesized from relatively cheap source and also occur naturally.
format Article
author U.M., Baba
K.S.N., Kamarudin
Alias, N.
author_facet U.M., Baba
K.S.N., Kamarudin
Alias, N.
author_sort U.M., Baba
title Separation of carbon dioxide using selected porous materials: a review
title_short Separation of carbon dioxide using selected porous materials: a review
title_full Separation of carbon dioxide using selected porous materials: a review
title_fullStr Separation of carbon dioxide using selected porous materials: a review
title_full_unstemmed Separation of carbon dioxide using selected porous materials: a review
title_sort separation of carbon dioxide using selected porous materials: a review
publisher World Academy of Research and Publication
publishDate 2010
url http://eprints.utm.my/id/eprint/25981/
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