Hydrogen generation by photocatalytic reforming of potential biofuels: Polyols, cyclic alcohols, and saccharides

© 2018 Elsevier B.V. We have studied hydrogen gas production using photocatalysis from C2-C5 carbon chain polyols, cyclic alcohols and mono and di-saccharides using palladium nanoparticles supported on a TiO2catalyst. For many of the polyols the hydrogen evolution rate is found to be dictated by the...

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Main Authors: Julia Kennedy, Hasliza Bahruji, Michael Bowker, Philip R. Davies, Emir Bouleghlimat, Sudarat Issarapanacheewin
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/58402
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-584022018-09-05T04:39:23Z Hydrogen generation by photocatalytic reforming of potential biofuels: Polyols, cyclic alcohols, and saccharides Julia Kennedy Hasliza Bahruji Michael Bowker Philip R. Davies Emir Bouleghlimat Sudarat Issarapanacheewin Chemical Engineering Chemistry Physics and Astronomy © 2018 Elsevier B.V. We have studied hydrogen gas production using photocatalysis from C2-C5 carbon chain polyols, cyclic alcohols and mono and di-saccharides using palladium nanoparticles supported on a TiO2catalyst. For many of the polyols the hydrogen evolution rate is found to be dictated by the number of hydroxyl groups and available α-hydrogens in the structure. However the rule only applies to polyols and cyclic alcohols, while the sugar activity is limited by the bulky structure of those molecules. There was also evidence of ring opening in photocatalytic reforming of cyclic alcohols that involved dehydrogenation and decarbonylation of α C–C bond. 2018-09-05T04:23:39Z 2018-09-05T04:23:39Z 2018-04-01 Journal 10106030 2-s2.0-85041641597 10.1016/j.jphotochem.2018.01.031 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85041641597&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/58402
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Chemical Engineering
Chemistry
Physics and Astronomy
spellingShingle Chemical Engineering
Chemistry
Physics and Astronomy
Julia Kennedy
Hasliza Bahruji
Michael Bowker
Philip R. Davies
Emir Bouleghlimat
Sudarat Issarapanacheewin
Hydrogen generation by photocatalytic reforming of potential biofuels: Polyols, cyclic alcohols, and saccharides
description © 2018 Elsevier B.V. We have studied hydrogen gas production using photocatalysis from C2-C5 carbon chain polyols, cyclic alcohols and mono and di-saccharides using palladium nanoparticles supported on a TiO2catalyst. For many of the polyols the hydrogen evolution rate is found to be dictated by the number of hydroxyl groups and available α-hydrogens in the structure. However the rule only applies to polyols and cyclic alcohols, while the sugar activity is limited by the bulky structure of those molecules. There was also evidence of ring opening in photocatalytic reforming of cyclic alcohols that involved dehydrogenation and decarbonylation of α C–C bond.
format Journal
author Julia Kennedy
Hasliza Bahruji
Michael Bowker
Philip R. Davies
Emir Bouleghlimat
Sudarat Issarapanacheewin
author_facet Julia Kennedy
Hasliza Bahruji
Michael Bowker
Philip R. Davies
Emir Bouleghlimat
Sudarat Issarapanacheewin
author_sort Julia Kennedy
title Hydrogen generation by photocatalytic reforming of potential biofuels: Polyols, cyclic alcohols, and saccharides
title_short Hydrogen generation by photocatalytic reforming of potential biofuels: Polyols, cyclic alcohols, and saccharides
title_full Hydrogen generation by photocatalytic reforming of potential biofuels: Polyols, cyclic alcohols, and saccharides
title_fullStr Hydrogen generation by photocatalytic reforming of potential biofuels: Polyols, cyclic alcohols, and saccharides
title_full_unstemmed Hydrogen generation by photocatalytic reforming of potential biofuels: Polyols, cyclic alcohols, and saccharides
title_sort hydrogen generation by photocatalytic reforming of potential biofuels: polyols, cyclic alcohols, and saccharides
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85041641597&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/58402
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