Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol

Biodiesel is produced from a variety of renewable sources including waste cooking oil. However, its production has led to a glut of glycerol (a by-product, in the amount of 1 mol of glycerol for every three of fatty acid methyl esters). Glycerol presently has low-level and limited use in pharmaceuti...

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Main Authors: Cheng, C. K., Jolius, Gimbun, Chin, S. Y.
Format: Conference or Workshop Item
Language:English
Published: UMP 2012
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/5685/1/MPOB_2012-poster-Cheng_UMP.pdf
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author Cheng, C. K.
Jolius, Gimbun
Chin, S. Y.
author_facet Cheng, C. K.
Jolius, Gimbun
Chin, S. Y.
author_sort Cheng, C. K.
collection UMP
description Biodiesel is produced from a variety of renewable sources including waste cooking oil. However, its production has led to a glut of glycerol (a by-product, in the amount of 1 mol of glycerol for every three of fatty acid methyl esters). Glycerol presently has low-level and limited use in pharmaceuticals production. The present work deals with steam reforming of glycerol over a bimetallic Co-Ni/Al2O3 catalyst system promoted by 2.5wt% alkaline earth oxides (AEO) and lanthanide oxides (LO). The addition of metal oxide from these two groups reportedly minimizes carbon deposition with possible improvement in product selectivity and syngas production rate. Our objective was to provide a systematic correlation between physicochemical properties of the promoted catalyst and reaction metrics.
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spelling UMPir56852018-01-11T03:30:28Z http://umpir.ump.edu.my/id/eprint/5685/ Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol Cheng, C. K. Jolius, Gimbun Chin, S. Y. TP Chemical technology Biodiesel is produced from a variety of renewable sources including waste cooking oil. However, its production has led to a glut of glycerol (a by-product, in the amount of 1 mol of glycerol for every three of fatty acid methyl esters). Glycerol presently has low-level and limited use in pharmaceuticals production. The present work deals with steam reforming of glycerol over a bimetallic Co-Ni/Al2O3 catalyst system promoted by 2.5wt% alkaline earth oxides (AEO) and lanthanide oxides (LO). The addition of metal oxide from these two groups reportedly minimizes carbon deposition with possible improvement in product selectivity and syngas production rate. Our objective was to provide a systematic correlation between physicochemical properties of the promoted catalyst and reaction metrics. UMP 2012 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/5685/1/MPOB_2012-poster-Cheng_UMP.pdf Cheng, C. K. and Jolius, Gimbun and Chin, S. Y. (2012) Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol. In: 6th International Conference on Environmental Catalysis (ICEC 2012) , 12-15 September 2010 , Beijing, China. pp. 264-265..
spellingShingle TP Chemical technology
Cheng, C. K.
Jolius, Gimbun
Chin, S. Y.
Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol
title Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol
title_full Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol
title_fullStr Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol
title_full_unstemmed Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol
title_short Influence of Promoter Type on Bimetallic Co-Ni/Al 2O3 Catalyst for Steam Reforming of Glycerol
title_sort influence of promoter type on bimetallic co ni al 2o3 catalyst for steam reforming of glycerol
topic TP Chemical technology
url http://umpir.ump.edu.my/id/eprint/5685/1/MPOB_2012-poster-Cheng_UMP.pdf
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AT chinsy influenceofpromotertypeonbimetallicconial2o3catalystforsteamreformingofglycerol