Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2

The recycling technology by the catalytic conversion is one of the most promising techniques for the CO2 treatment of coal burning power plant flue gases. The conversion of CO2 to valuable product of CH4 can be used as a fuel to run the turbine for electricity generation. Through this technique, the...

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Main Authors: Toemen, Susilawati, Wan Abu Bakar, Wan Azelee, Ali, Rusmidah
Format: Article
Language:English
Published: Korean Chemical Society 2014
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Online Access:http://eprints.utm.my/id/eprint/52238/1/SusilawatiToeman2014_CopperNickelManganeseDopedCerium.pdf
http://eprints.utm.my/id/eprint/52238/
http://dx.doi.org/10.5012/bkcs.2014.35.8.2349
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.522382018-09-17T04:01:21Z http://eprints.utm.my/id/eprint/52238/ Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2 Toemen, Susilawati Wan Abu Bakar, Wan Azelee Ali, Rusmidah Q Science The recycling technology by the catalytic conversion is one of the most promising techniques for the CO2 treatment of coal burning power plant flue gases. The conversion of CO2 to valuable product of CH4 can be used as a fuel to run the turbine for electricity generation. Through this technique, the amount of coal needed for the combustion in a gas turbine can be reduced as well as CO2 emissions. Therefore, a series of catalysts based on cerium oxide doped with copper, nickel and manganese were prepared by impregnation method. From the characterization analysis, it showed that the prepared catalysts calcined at 400 °C were amorphous in structure with small particle size in the range below 100 nm. Meanwhile, the catalyst particles were aggregated and agglomerated with higher surface area of 286.70 m2g-1. By increasing the calcination temperature of catalysts to 1000 °C, the particle sizes were getting bigger (> 100 nm) and having moderate crystallinity with lower surface area (67.90 m2g-1). From the catalytic testing among all the prepared catalysts, Mn/Ce-75/Al2O3 calcined at 400 °C was assigned as the most potential catalyst which gave 49.05% and 56.79% CO2 conversion at reaction temperature of 100 °C and 200 °C, respectively Korean Chemical Society 2014 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/52238/1/SusilawatiToeman2014_CopperNickelManganeseDopedCerium.pdf Toemen, Susilawati and Wan Abu Bakar, Wan Azelee and Ali, Rusmidah (2014) Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2. Bulletin of the Korean Chemical Society, 35 (8). pp. 2349-2356. ISSN 0253-2964 http://dx.doi.org/10.5012/bkcs.2014.35.8.2349 DOI: 10.5012/bkcs.2014.35.8.2349
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/
language English
topic Q Science
spellingShingle Q Science
Toemen, Susilawati
Wan Abu Bakar, Wan Azelee
Ali, Rusmidah
Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2
description The recycling technology by the catalytic conversion is one of the most promising techniques for the CO2 treatment of coal burning power plant flue gases. The conversion of CO2 to valuable product of CH4 can be used as a fuel to run the turbine for electricity generation. Through this technique, the amount of coal needed for the combustion in a gas turbine can be reduced as well as CO2 emissions. Therefore, a series of catalysts based on cerium oxide doped with copper, nickel and manganese were prepared by impregnation method. From the characterization analysis, it showed that the prepared catalysts calcined at 400 °C were amorphous in structure with small particle size in the range below 100 nm. Meanwhile, the catalyst particles were aggregated and agglomerated with higher surface area of 286.70 m2g-1. By increasing the calcination temperature of catalysts to 1000 °C, the particle sizes were getting bigger (> 100 nm) and having moderate crystallinity with lower surface area (67.90 m2g-1). From the catalytic testing among all the prepared catalysts, Mn/Ce-75/Al2O3 calcined at 400 °C was assigned as the most potential catalyst which gave 49.05% and 56.79% CO2 conversion at reaction temperature of 100 °C and 200 °C, respectively
format Article
author Toemen, Susilawati
Wan Abu Bakar, Wan Azelee
Ali, Rusmidah
author_facet Toemen, Susilawati
Wan Abu Bakar, Wan Azelee
Ali, Rusmidah
author_sort Toemen, Susilawati
title Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2
title_short Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2
title_full Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2
title_fullStr Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2
title_full_unstemmed Copper/Nickel/Manganese doped cerium oxides based catalysts for hydrogenation of CO2
title_sort copper/nickel/manganese doped cerium oxides based catalysts for hydrogenation of co2
publisher Korean Chemical Society
publishDate 2014
url http://eprints.utm.my/id/eprint/52238/1/SusilawatiToeman2014_CopperNickelManganeseDopedCerium.pdf
http://eprints.utm.my/id/eprint/52238/
http://dx.doi.org/10.5012/bkcs.2014.35.8.2349
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