Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming

In the present work, different loadings of lanthanum cobalt supported on magnesia catalysts were prepared for the methane dry reforming. XRD results showed that the peaks representing Co3O occurred at 2 = 37.0° and MgO or Co/MgO at 2 = 42.9°, 62.3°, 74.7° and 78.6°. As lanthanum loading increased,...

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Main Authors: Cheng, C. K., Chen, Loong Ong, Han, Jie Chan
Format: Conference or Workshop Item
Language:English
Published: 2014
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/7686/1/PROENG_PSE001.pdf
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author Cheng, C. K.
Chen, Loong Ong
Han, Jie Chan
author_facet Cheng, C. K.
Chen, Loong Ong
Han, Jie Chan
author_sort Cheng, C. K.
collection UMP
description In the present work, different loadings of lanthanum cobalt supported on magnesia catalysts were prepared for the methane dry reforming. XRD results showed that the peaks representing Co3O occurred at 2 = 37.0° and MgO or Co/MgO at 2 = 42.9°, 62.3°, 74.7° and 78.6°. As lanthanum loading increased, the crystallite size dropped from 24.5 to 17.9 nm. Reaction studies found that 5wt% La catalyst gave the highest formation of H24 and CO. However, the product composition was only about 1.6% (differential reactor). It was also found that the best formation rate was at CO2:CH feed ratio of 0.67.4
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spelling UMPir76862018-01-11T02:57:35Z http://umpir.ump.edu.my/id/eprint/7686/ Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming Cheng, C. K. Chen, Loong Ong Han, Jie Chan TP Chemical technology In the present work, different loadings of lanthanum cobalt supported on magnesia catalysts were prepared for the methane dry reforming. XRD results showed that the peaks representing Co3O occurred at 2 = 37.0° and MgO or Co/MgO at 2 = 42.9°, 62.3°, 74.7° and 78.6°. As lanthanum loading increased, the crystallite size dropped from 24.5 to 17.9 nm. Reaction studies found that 5wt% La catalyst gave the highest formation of H24 and CO. However, the product composition was only about 1.6% (differential reactor). It was also found that the best formation rate was at CO2:CH feed ratio of 0.67.4 2014 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/7686/1/PROENG_PSE001.pdf Cheng, C. K. and Chen, Loong Ong and Han, Jie Chan (2014) Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming. In: Proceedings of the 27th Symposium of Malaysian Chemical Engineers (SOMChE 2014) In Conjuction with 21st Regional Synposium on Chemical Engineering (RSCE 2014) , 29-30 October 2014 , Taylor's University Lakeside Campus, Subang Jaya. pp. 1-9..
spellingShingle TP Chemical technology
Cheng, C. K.
Chen, Loong Ong
Han, Jie Chan
Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming
title Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming
title_full Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming
title_fullStr Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming
title_full_unstemmed Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming
title_short Synthesis And Characterization Of La-Co/MgO Catalyst For Methane Dry Reforming
title_sort synthesis and characterization of la co mgo catalyst for methane dry reforming
topic TP Chemical technology
url http://umpir.ump.edu.my/id/eprint/7686/1/PROENG_PSE001.pdf
work_keys_str_mv AT chengck synthesisandcharacterizationoflacomgocatalystformethanedryreforming
AT chenloongong synthesisandcharacterizationoflacomgocatalystformethanedryreforming
AT hanjiechan synthesisandcharacterizationoflacomgocatalystformethanedryreforming