HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST
Methanol synthesis via C02 hydrogenation provides alternative route for methanol production and attractive option for C02 utilization. The objective of this work is to synthesize, characterize Cu-ZnO-based nanocatalyst on various supports and study the performance of the nanocatalyst for methanol...
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2016
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oai:utpedia.utp.edu.my:215212024-07-25T04:40:20Z http://utpedia.utp.edu.my/id/eprint/21521/ HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST TASFY, SARA FAIZ HANNA TP Chemical technology Methanol synthesis via C02 hydrogenation provides alternative route for methanol production and attractive option for C02 utilization. The objective of this work is to synthesize, characterize Cu-ZnO-based nanocatalyst on various supports and study the performance of the nanocatalyst for methanol production via C02 hydrogenation reaction. Supported Cu!ZnO-based nanocatalysts have been formulated using impregnation method. Effects of synthesis parameters such as total metal loading, Cu:Zn ratio, synthesis pH and type of support on the physicochemical properties and catalytic performance in C02 hydrogenation to methanol were investigated. The effects of the alkali promoters such as manganese (Mn), zirconium (Zr), lead (Ph), and niobium (Nb) in form of single, double, and tri-promoters on the physicochemical properties of the catalyst have been investigated. 2016-06 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/id/eprint/21521/1/2015%20-CHEMICAL%20-%20HYDROGENATION%20OF%20CARBON%20DIOXIDE%20TO%20METHANOL%20OVER%20SUPPORTED%20COPPER%20OR%20ZINK%20OXIDE-BASED%20NANOCATALYST%20-%20SARA%20FAIZ%20HANNA%20TASFY.pdf TASFY, SARA FAIZ HANNA (2016) HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST. Doctoral thesis, Universiti Teknologi PETRONAS. |
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TP Chemical technology TASFY, SARA FAIZ HANNA HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST |
description |
Methanol synthesis via C02 hydrogenation provides alternative route for methanol
production and attractive option for C02 utilization. The objective of this work is to
synthesize, characterize Cu-ZnO-based nanocatalyst on various supports and study the
performance of the nanocatalyst for methanol production via C02 hydrogenation
reaction. Supported Cu!ZnO-based nanocatalysts have been formulated using
impregnation method. Effects of synthesis parameters such as total metal loading,
Cu:Zn ratio, synthesis pH and type of support on the physicochemical properties and
catalytic performance in C02 hydrogenation to methanol were investigated. The effects
of the alkali promoters such as manganese (Mn), zirconium (Zr), lead (Ph), and niobium
(Nb) in form of single, double, and tri-promoters on the physicochemical properties of
the catalyst have been investigated. |
format |
Thesis |
author |
TASFY, SARA FAIZ HANNA |
author_facet |
TASFY, SARA FAIZ HANNA |
author_sort |
TASFY, SARA FAIZ HANNA |
title |
HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER
SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST |
title_short |
HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER
SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST |
title_full |
HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER
SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST |
title_fullStr |
HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER
SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST |
title_full_unstemmed |
HYDROGENATION OF CARBON DIOXIDE TO METHANOL OVER
SUPPORTED COPPER/ZINC OXIDE-BASED NANOCATALYST |
title_sort |
hydrogenation of carbon dioxide to methanol over
supported copper/zinc oxide-based nanocatalyst |
publishDate |
2016 |
url |
http://utpedia.utp.edu.my/id/eprint/21521/1/2015%20-CHEMICAL%20-%20HYDROGENATION%20OF%20CARBON%20DIOXIDE%20TO%20METHANOL%20OVER%20SUPPORTED%20COPPER%20OR%20ZINK%20OXIDE-BASED%20NANOCATALYST%20-%20SARA%20FAIZ%20HANNA%20TASFY.pdf http://utpedia.utp.edu.my/id/eprint/21521/ |
_version_ |
1805891038666031104 |
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13.214268 |