A Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide Catalyst

A preliminary study of the production of methyl formate (MF) from CO 2 hydrogenation in liquid methanol was carried out over a Cu/ZnO/Al2O3 based catalyst which was synthesized by a precipitation technique following a well established route. The effects of amine concentration, hydrogen pressure, tem...

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Main Authors: Yu, K, Tsang, S
Formato: Journal article
Idioma:English
Publicado em: 2011
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author Yu, K
Tsang, S
author_facet Yu, K
Tsang, S
author_sort Yu, K
collection OXFORD
description A preliminary study of the production of methyl formate (MF) from CO 2 hydrogenation in liquid methanol was carried out over a Cu/ZnO/Al2O3 based catalyst which was synthesized by a precipitation technique following a well established route. The effects of amine concentration, hydrogen pressure, temperature, CO and water addition on the activity and selectivity of MF were investigated. It is of interest to note that the addition of 1% trimethylamine can dramatically increase the initial turnover frequency with the MF being the major product. It is evident that the formation of CO2-amine adduct promotes the catalytic hydrogenation of CO2 on the surface of the catalyst. © 2010 Springer Science+Business Media, LLC.
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spelling oxford-uuid:3b6bdac3-1b28-43e1-b4a6-4c15a1faaa2d2022-03-26T14:07:31ZA Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide CatalystJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:3b6bdac3-1b28-43e1-b4a6-4c15a1faaa2dEnglishSymplectic Elements at Oxford2011Yu, KTsang, SA preliminary study of the production of methyl formate (MF) from CO 2 hydrogenation in liquid methanol was carried out over a Cu/ZnO/Al2O3 based catalyst which was synthesized by a precipitation technique following a well established route. The effects of amine concentration, hydrogen pressure, temperature, CO and water addition on the activity and selectivity of MF were investigated. It is of interest to note that the addition of 1% trimethylamine can dramatically increase the initial turnover frequency with the MF being the major product. It is evident that the formation of CO2-amine adduct promotes the catalytic hydrogenation of CO2 on the surface of the catalyst. © 2010 Springer Science+Business Media, LLC.
spellingShingle Yu, K
Tsang, S
A Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide Catalyst
title A Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide Catalyst
title_full A Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide Catalyst
title_fullStr A Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide Catalyst
title_full_unstemmed A Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide Catalyst
title_short A Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide Catalyst
title_sort study of methyl formate production from carbon dioxide hydrogenation in methanol over a copper zinc oxide catalyst
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