Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation
It is the first time ethylene glycol dry reforming (EGDR) reaction was carried out for syngas production on 10%Ni/Al2O3 catalyst in a tubular fixed-bed reactor at atmospheric condition. Wet-impregnation method was employed for the synthesis of 10%Ni/Al2O3 catalyst. The results of X-ray diffraction m...
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ump-211932019-10-03T08:04:01Z http://umpir.ump.edu.my/id/eprint/21193/ Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation Bahari, M. B. Jun, Lau N. Nor Shafiqah, Mohd Nasir Fayaz, Fahim Vo, Dai-Viet N. TP Chemical technology It is the first time ethylene glycol dry reforming (EGDR) reaction was carried out for syngas production on 10%Ni/Al2O3 catalyst in a tubular fixed-bed reactor at atmospheric condition. Wet-impregnation method was employed for the synthesis of 10%Ni/Al2O3 catalyst. The results of X-ray diffraction measurement revealed the presence of γ-Al2O3, NiO, NiAl2O4, Ni0 and graphitic carbon phases on the surface of spent 10%Ni/Al2O3 catalyst. H2 temperature-programmed reduction indicates that NiO and NiAl2O4 phases were totally reduced to metallic nickel phase at reduction temperature above 970 K. EGDR activity appeared to be steady with time-on-stream beyond 5-7 h. Catalytic activity was considerably improved with increasing feed ratio of CO2:C2H6O2 from 1:1 to 2.5:1. IOP Publishing 2018 Conference or Workshop Item PeerReviewed pdf en cc_by_4 http://umpir.ump.edu.my/id/eprint/21193/1/Ethylene%20glycol%20dry%20reforming%20on%20NiAl2O3.pdf Bahari, M. B. and Jun, Lau N. and Nor Shafiqah, Mohd Nasir and Fayaz, Fahim and Vo, Dai-Viet N. (2018) Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation. In: IOP Conference Series: Materials Science and Engineering, 3rd International Conference on Energy Materials and Applications, 9-11 May 2018 , University of Salamanca, Salamanca. pp. 1-6., 446 (012013). ISSN 1757-8981 (Print), 1757-899X (Online) https://doi.org/10.1088/1757-899X/446/1/012013 |
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TP Chemical technology |
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TP Chemical technology Bahari, M. B. Jun, Lau N. Nor Shafiqah, Mohd Nasir Fayaz, Fahim Vo, Dai-Viet N. Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation |
description |
It is the first time ethylene glycol dry reforming (EGDR) reaction was carried out for syngas production on 10%Ni/Al2O3 catalyst in a tubular fixed-bed reactor at atmospheric condition. Wet-impregnation method was employed for the synthesis of 10%Ni/Al2O3 catalyst. The results of X-ray diffraction measurement revealed the presence of γ-Al2O3, NiO, NiAl2O4, Ni0 and graphitic carbon phases on the surface of spent 10%Ni/Al2O3 catalyst. H2 temperature-programmed reduction indicates that NiO and NiAl2O4 phases were totally reduced to metallic nickel phase at reduction temperature above 970 K. EGDR activity appeared to be steady with time-on-stream beyond 5-7 h. Catalytic activity was considerably improved with increasing feed ratio of CO2:C2H6O2 from 1:1 to 2.5:1. |
format |
Conference or Workshop Item |
author |
Bahari, M. B. Jun, Lau N. Nor Shafiqah, Mohd Nasir Fayaz, Fahim Vo, Dai-Viet N. |
author_facet |
Bahari, M. B. Jun, Lau N. Nor Shafiqah, Mohd Nasir Fayaz, Fahim Vo, Dai-Viet N. |
author_sort |
Bahari, M. B. |
title |
Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation |
title_short |
Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation |
title_full |
Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation |
title_fullStr |
Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation |
title_full_unstemmed |
Ethylene glycol dry reforming on Ni/Al2O3 catalyst for syngas generation |
title_sort |
ethylene glycol dry reforming on ni/al2o3 catalyst for syngas generation |
publisher |
IOP Publishing |
publishDate |
2018 |
url |
http://umpir.ump.edu.my/id/eprint/21193/ http://umpir.ump.edu.my/id/eprint/21193/ http://umpir.ump.edu.my/id/eprint/21193/1/Ethylene%20glycol%20dry%20reforming%20on%20NiAl2O3.pdf |
first_indexed |
2023-09-18T22:31:00Z |
last_indexed |
2023-09-18T22:31:00Z |
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1777416284969893888 |