Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method

Bio-oil derived from fast pyrolysis of oil palm empty fruit bunch (EFB) was catalytically reformed inside a stainless steel multichannel tubular reactor using steam and air as reforming agents. The catalyst used, denoted as Fe/AC, was an iron catalyst loaded on the coconut shell-derived activated ca...

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Published in:Bioenergy Research
Main Author: Malek N.H.; Syed-Hassan S.S.A.; Zhang S.; Alias R.; Mohamad Daud A.R.
Format: Article
Language:English
Published: Springer 2022
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85109416181&doi=10.1007%2fs12155-021-10307-y&partnerID=40&md5=c72a73c26565219646e7abcb87ff8be0
id 2-s2.0-85109416181
spelling 2-s2.0-85109416181
Malek N.H.; Syed-Hassan S.S.A.; Zhang S.; Alias R.; Mohamad Daud A.R.
Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method
2022
Bioenergy Research
15
1
10.1007/s12155-021-10307-y
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85109416181&doi=10.1007%2fs12155-021-10307-y&partnerID=40&md5=c72a73c26565219646e7abcb87ff8be0
Bio-oil derived from fast pyrolysis of oil palm empty fruit bunch (EFB) was catalytically reformed inside a stainless steel multichannel tubular reactor using steam and air as reforming agents. The catalyst used, denoted as Fe/AC, was an iron catalyst loaded on the coconut shell-derived activated carbon (AC) prepared by a new approach of impregnating iron from an aqueous solution onto the AC in a stepwise manner. Results indicate that a stepwise impregnation was able to minimise the agglomeration of iron particles on AC surface, allowing high loading of iron onto the AC without severely affecting Fe dispersion and catalyst pore properties. The highly reducible, highly efficient catalyst produced in this study was able to lower the concentration of tar in producer gas to lower than 100 mg/Nm3. The best composition of the burnable product gas was obtained with iron loading of 15 wt%, reaction temperature of 800 °C, steam-to-carbon molar ratio (S/C) of 1.0 and air equivalence ratio (ER) of 0.1, with gas composition of 33.5% H2, 21.0% CO, 14.0% CH4, 18.8% CO2 and 1% C2 hydrocarbons and a cold gas efficiency of 78.5%. © 2021, The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.
Springer
19391234
English
Article

author Malek N.H.; Syed-Hassan S.S.A.; Zhang S.; Alias R.; Mohamad Daud A.R.
spellingShingle Malek N.H.; Syed-Hassan S.S.A.; Zhang S.; Alias R.; Mohamad Daud A.R.
Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method
author_facet Malek N.H.; Syed-Hassan S.S.A.; Zhang S.; Alias R.; Mohamad Daud A.R.
author_sort Malek N.H.; Syed-Hassan S.S.A.; Zhang S.; Alias R.; Mohamad Daud A.R.
title Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method
title_short Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method
title_full Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method
title_fullStr Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method
title_full_unstemmed Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method
title_sort Hydrogen- and Methane-Rich Clean Producer Gas from the Reforming of Bio-oil with Fe/AC Catalyst Prepared by a Stepwise Impregnation Method
publishDate 2022
container_title Bioenergy Research
container_volume 15
container_issue 1
doi_str_mv 10.1007/s12155-021-10307-y
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85109416181&doi=10.1007%2fs12155-021-10307-y&partnerID=40&md5=c72a73c26565219646e7abcb87ff8be0
description Bio-oil derived from fast pyrolysis of oil palm empty fruit bunch (EFB) was catalytically reformed inside a stainless steel multichannel tubular reactor using steam and air as reforming agents. The catalyst used, denoted as Fe/AC, was an iron catalyst loaded on the coconut shell-derived activated carbon (AC) prepared by a new approach of impregnating iron from an aqueous solution onto the AC in a stepwise manner. Results indicate that a stepwise impregnation was able to minimise the agglomeration of iron particles on AC surface, allowing high loading of iron onto the AC without severely affecting Fe dispersion and catalyst pore properties. The highly reducible, highly efficient catalyst produced in this study was able to lower the concentration of tar in producer gas to lower than 100 mg/Nm3. The best composition of the burnable product gas was obtained with iron loading of 15 wt%, reaction temperature of 800 °C, steam-to-carbon molar ratio (S/C) of 1.0 and air equivalence ratio (ER) of 0.1, with gas composition of 33.5% H2, 21.0% CO, 14.0% CH4, 18.8% CO2 and 1% C2 hydrocarbons and a cold gas efficiency of 78.5%. © 2021, The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.
publisher Springer
issn 19391234
language English
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