The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas

Malaysia sour natural gas that containing high contents of carbon dioxide (CO2), hydrogen sulphide (H2S) and other which can freeze out on exchanger surface, plugging lines and reduce plant efficiency. Therefore there is need for treat sour to sweet natural gas. In this study, the investigation infl...

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Main Authors: Zamani, A. H., Ali, Rusmidah, Bakar, W. A. W. A.
Format: Article
Published: 2014
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Online Access:http://eprints.utm.my/id/eprint/62978/
http://www.sciencedirect.com/science/article/pii/S1876107013000989
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spelling my.utm.629782017-10-03T07:01:24Z http://eprints.utm.my/id/eprint/62978/ The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas Zamani, A. H. Ali, Rusmidah Bakar, W. A. W. A. Q Science Malaysia sour natural gas that containing high contents of carbon dioxide (CO2), hydrogen sulphide (H2S) and other which can freeze out on exchanger surface, plugging lines and reduce plant efficiency. Therefore there is need for treat sour to sweet natural gas. In this study, the investigation influences of Ru over manganese/copper oxides catalysts were conducted and the catalysts were prepared by wet impregnation method. The Ru/Mn/Cu (RMC) catalysts were activated at different temperatures (100–1100 °C) for 5 h and at different ratios of Ru. Ru/Mn/Cu(10:30:60)/Al2O3 (RMC10) catalyst calcined at 1000 °C was assigned as the most potential catalyst, which gave 98.5% CO2 conversion and 70% methane (CH4) formation at reaction temperature of 220 °C. Moreover, the XRD diffractograms showed that the catalyst calcined at 1000 °C and 1100 °C are highly crystalline phase, while catalysts calcined at 100 °C, 400 °C and 700 °C showed highly amorphous in structure which dominated by Al2O3 support material. The FESEM analysis revealed that fresh and used catalysts were covered with homogeneously dispersed and small size surface particles in the range of 0.2–0.3 μm. Furthermore, EDX analysis revealed that there was 24% reduction of Ru in the used catalyst compared to fresh catalyst. Nitrogen adsorption analysis showed 9% reduction of surface area over the used catalyst. 2014 Article PeerReviewed Zamani, A. H. and Ali, Rusmidah and Bakar, W. A. W. A. (2014) The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas. Journal of the Taiwan Institute of Chemical Engineers, 45 (1). pp. 143-152. ISSN 1876-1070 http://www.sciencedirect.com/science/article/pii/S1876107013000989
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
spellingShingle Q Science
Zamani, A. H.
Ali, Rusmidah
Bakar, W. A. W. A.
The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas
description Malaysia sour natural gas that containing high contents of carbon dioxide (CO2), hydrogen sulphide (H2S) and other which can freeze out on exchanger surface, plugging lines and reduce plant efficiency. Therefore there is need for treat sour to sweet natural gas. In this study, the investigation influences of Ru over manganese/copper oxides catalysts were conducted and the catalysts were prepared by wet impregnation method. The Ru/Mn/Cu (RMC) catalysts were activated at different temperatures (100–1100 °C) for 5 h and at different ratios of Ru. Ru/Mn/Cu(10:30:60)/Al2O3 (RMC10) catalyst calcined at 1000 °C was assigned as the most potential catalyst, which gave 98.5% CO2 conversion and 70% methane (CH4) formation at reaction temperature of 220 °C. Moreover, the XRD diffractograms showed that the catalyst calcined at 1000 °C and 1100 °C are highly crystalline phase, while catalysts calcined at 100 °C, 400 °C and 700 °C showed highly amorphous in structure which dominated by Al2O3 support material. The FESEM analysis revealed that fresh and used catalysts were covered with homogeneously dispersed and small size surface particles in the range of 0.2–0.3 μm. Furthermore, EDX analysis revealed that there was 24% reduction of Ru in the used catalyst compared to fresh catalyst. Nitrogen adsorption analysis showed 9% reduction of surface area over the used catalyst.
format Article
author Zamani, A. H.
Ali, Rusmidah
Bakar, W. A. W. A.
author_facet Zamani, A. H.
Ali, Rusmidah
Bakar, W. A. W. A.
author_sort Zamani, A. H.
title The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas
title_short The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas
title_full The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas
title_fullStr The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas
title_full_unstemmed The investigation of Ru/Mn/Cu-Al2O3 oxide catalysts for CO2/H-2 methanation in natural gas
title_sort investigation of ru/mn/cu-al2o3 oxide catalysts for co2/h-2 methanation in natural gas
publishDate 2014
url http://eprints.utm.my/id/eprint/62978/
http://www.sciencedirect.com/science/article/pii/S1876107013000989
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