Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters

Ni/Al2O3, Ni�Co/Al2O3�MgO and Ni�Co/Al2O3�MgO/Nb�Zr nanocatalysts were prepared by the sol-gel technique with citric acid and tested in the dry reforming of methane (DRM). In this paper, the effects of Nb and Zr addition as promoters in Al2O3�MgO supported catalysts on the physicochemica...

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Main Authors: Abd Ghani, N.A., Azapour, A., Syed Muhammad, A.F., Abdullah, B.
Format: Article
Published: Elsevier Ltd 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85048875767&doi=10.1016%2fj.ijhydene.2018.05.153&partnerID=40&md5=cf38c74ba8f33f705f317dbe9e1ea946
http://eprints.utp.edu.my/22012/
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spelling my.utp.eprints.220122018-11-09T06:27:59Z Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters Abd Ghani, N.A. Azapour, A. Syed Muhammad, A.F. Abdullah, B. Ni/Al2O3, Ni�Co/Al2O3�MgO and Ni�Co/Al2O3�MgO/Nb�Zr nanocatalysts were prepared by the sol-gel technique with citric acid and tested in the dry reforming of methane (DRM). In this paper, the effects of Nb and Zr addition as promoters in Al2O3�MgO supported catalysts on the physicochemical characteristics and the reaction performance in the DRM were investigated. The Nb�Zr promoters are expected to enhance the activity and performance of the catalyst due to its high thermal stability and also improvement in the metal dispersion of the catalyst. The catalysts samples were characterized by FESEM, BET, XRD, TEM, H2-TPR and CO2-TPD techniques. FESEM results demonstrated that Ni�Co/Al2O3�MgO/Nb�Zr has more uniform and well-dispersion of metal than Ni�Co/Al2O3�MgO. The BET results unravel that the addition of Nb�Zr promoters increase the surface area of the synthesized catalyst due to the high surface area of the promoters. There is a formation of MgAl2O4 spinel-type solid solution proved by the XRD and CO2-TPD analysis due to the interaction between alumina lattice and magnesium metal which has high resistance to carbon formation. The DRM reaction is performed in the tubular furnace reactor at 1073.15 K, 1 atm and a CH4/CO2 ratio of unity. The sol-gelled Ni�Co/Al2O3�MgO/Nb�Zr was found to be the most proper choice for DRM which illustrates much higher conversion (86.96 for CH4 conversion and 87.84 for CO2 conversion) compared to the other catalysts. This is due to the strong interaction between active metals and supports, resistance to coke formation and higher stability in DRM reaction. © 2018 Hydrogen Energy Publications LLC Elsevier Ltd 2018 Article PeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85048875767&doi=10.1016%2fj.ijhydene.2018.05.153&partnerID=40&md5=cf38c74ba8f33f705f317dbe9e1ea946 Abd Ghani, N.A. and Azapour, A. and Syed Muhammad, A.F. and Abdullah, B. (2018) Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters. International Journal of Hydrogen Energy . http://eprints.utp.edu.my/22012/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Ni/Al2O3, Ni�Co/Al2O3�MgO and Ni�Co/Al2O3�MgO/Nb�Zr nanocatalysts were prepared by the sol-gel technique with citric acid and tested in the dry reforming of methane (DRM). In this paper, the effects of Nb and Zr addition as promoters in Al2O3�MgO supported catalysts on the physicochemical characteristics and the reaction performance in the DRM were investigated. The Nb�Zr promoters are expected to enhance the activity and performance of the catalyst due to its high thermal stability and also improvement in the metal dispersion of the catalyst. The catalysts samples were characterized by FESEM, BET, XRD, TEM, H2-TPR and CO2-TPD techniques. FESEM results demonstrated that Ni�Co/Al2O3�MgO/Nb�Zr has more uniform and well-dispersion of metal than Ni�Co/Al2O3�MgO. The BET results unravel that the addition of Nb�Zr promoters increase the surface area of the synthesized catalyst due to the high surface area of the promoters. There is a formation of MgAl2O4 spinel-type solid solution proved by the XRD and CO2-TPD analysis due to the interaction between alumina lattice and magnesium metal which has high resistance to carbon formation. The DRM reaction is performed in the tubular furnace reactor at 1073.15 K, 1 atm and a CH4/CO2 ratio of unity. The sol-gelled Ni�Co/Al2O3�MgO/Nb�Zr was found to be the most proper choice for DRM which illustrates much higher conversion (86.96 for CH4 conversion and 87.84 for CO2 conversion) compared to the other catalysts. This is due to the strong interaction between active metals and supports, resistance to coke formation and higher stability in DRM reaction. © 2018 Hydrogen Energy Publications LLC
format Article
author Abd Ghani, N.A.
Azapour, A.
Syed Muhammad, A.F.
Abdullah, B.
spellingShingle Abd Ghani, N.A.
Azapour, A.
Syed Muhammad, A.F.
Abdullah, B.
Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters
author_facet Abd Ghani, N.A.
Azapour, A.
Syed Muhammad, A.F.
Abdullah, B.
author_sort Abd Ghani, N.A.
title Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters
title_short Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters
title_full Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters
title_fullStr Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters
title_full_unstemmed Dry reforming of methane for hydrogen production over Ni�Co catalysts: Effect of Nb�Zr promoters
title_sort dry reforming of methane for hydrogen production over ni�co catalysts: effect of nb�zr promoters
publisher Elsevier Ltd
publishDate 2018
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85048875767&doi=10.1016%2fj.ijhydene.2018.05.153&partnerID=40&md5=cf38c74ba8f33f705f317dbe9e1ea946
http://eprints.utp.edu.my/22012/
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