Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor

An appropriate technology for waste utilisation, especially for a large amount of abundant pressed-shredded oil palm empty fruit bunch (OFEFB), is important for the oil palm industry. Self-sustained pyrolysis, whereby oil palm biomass was combusted by itself to provide the heat for pyrolysis without...

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Published in:Waste Management and Research
Main Author: Idris J.; Shirai Y.; Andou Y.; Mohd Ali A.A.; Othman M.R.; Ibrahim I.; Yamamoto A.; Yasuda N.; Hassan M.A.
Format: Article
Language:English
Published: SAGE Publications Ltd 2016
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84954137200&doi=10.1177%2f0734242X15616472&partnerID=40&md5=026a47183156506a27b577c12528c3a2
id 2-s2.0-84954137200
spelling 2-s2.0-84954137200
Idris J.; Shirai Y.; Andou Y.; Mohd Ali A.A.; Othman M.R.; Ibrahim I.; Yamamoto A.; Yasuda N.; Hassan M.A.
Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor
2016
Waste Management and Research
34
2
10.1177/0734242X15616472
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84954137200&doi=10.1177%2f0734242X15616472&partnerID=40&md5=026a47183156506a27b577c12528c3a2
An appropriate technology for waste utilisation, especially for a large amount of abundant pressed-shredded oil palm empty fruit bunch (OFEFB), is important for the oil palm industry. Self-sustained pyrolysis, whereby oil palm biomass was combusted by itself to provide the heat for pyrolysis without an electrical heater, is more preferable owing to its simplicity, ease of operation and low energy requirement. In this study, biochar production under self-sustained pyrolysis of oil palm biomass in the form of oil palm empty fruit bunch was tested in a 3-t large-scale pool-type reactor. During the pyrolysis process, the biomass was loaded layer by layer when the smoke appeared on the top, to minimise the entrance of oxygen. This method had significantly increased the yield of biochar. In our previous report, we have tested on a 30-kg pilot-scale capacity under self-sustained pyrolysis and found that the higher heating value (HHV) obtained was 22.6-24.7 MJ kg-'1 with a 23.5%-'25.0% yield. In this scaled-up study, a 3-t large-scale procedure produced HHV of 22.0-24.3 MJ kg-'1 with a 30%-'34% yield based on a wet-weight basis. The maximum self-sustained pyrolysis temperature for the large-scale procedure can reach between 600 °C and 700 °C. We concluded that large-scale biochar production under self-sustained pyrolysis was successfully conducted owing to the comparable biochar produced, compared with medium-scale and other studies with an electrical heating element, making it an appropriate technology for waste utilisation, particularly for the oil palm industry. © The Author(s) 2015.
SAGE Publications Ltd
0734242X
English
Article
All Open Access; Green Open Access
author Idris J.; Shirai Y.; Andou Y.; Mohd Ali A.A.; Othman M.R.; Ibrahim I.; Yamamoto A.; Yasuda N.; Hassan M.A.
spellingShingle Idris J.; Shirai Y.; Andou Y.; Mohd Ali A.A.; Othman M.R.; Ibrahim I.; Yamamoto A.; Yasuda N.; Hassan M.A.
Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor
author_facet Idris J.; Shirai Y.; Andou Y.; Mohd Ali A.A.; Othman M.R.; Ibrahim I.; Yamamoto A.; Yasuda N.; Hassan M.A.
author_sort Idris J.; Shirai Y.; Andou Y.; Mohd Ali A.A.; Othman M.R.; Ibrahim I.; Yamamoto A.; Yasuda N.; Hassan M.A.
title Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor
title_short Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor
title_full Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor
title_fullStr Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor
title_full_unstemmed Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor
title_sort Successful scaling-up of self-sustained pyrolysis of oil palm biomass under pool-type reactor
publishDate 2016
container_title Waste Management and Research
container_volume 34
container_issue 2
doi_str_mv 10.1177/0734242X15616472
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84954137200&doi=10.1177%2f0734242X15616472&partnerID=40&md5=026a47183156506a27b577c12528c3a2
description An appropriate technology for waste utilisation, especially for a large amount of abundant pressed-shredded oil palm empty fruit bunch (OFEFB), is important for the oil palm industry. Self-sustained pyrolysis, whereby oil palm biomass was combusted by itself to provide the heat for pyrolysis without an electrical heater, is more preferable owing to its simplicity, ease of operation and low energy requirement. In this study, biochar production under self-sustained pyrolysis of oil palm biomass in the form of oil palm empty fruit bunch was tested in a 3-t large-scale pool-type reactor. During the pyrolysis process, the biomass was loaded layer by layer when the smoke appeared on the top, to minimise the entrance of oxygen. This method had significantly increased the yield of biochar. In our previous report, we have tested on a 30-kg pilot-scale capacity under self-sustained pyrolysis and found that the higher heating value (HHV) obtained was 22.6-24.7 MJ kg-'1 with a 23.5%-'25.0% yield. In this scaled-up study, a 3-t large-scale procedure produced HHV of 22.0-24.3 MJ kg-'1 with a 30%-'34% yield based on a wet-weight basis. The maximum self-sustained pyrolysis temperature for the large-scale procedure can reach between 600 °C and 700 °C. We concluded that large-scale biochar production under self-sustained pyrolysis was successfully conducted owing to the comparable biochar produced, compared with medium-scale and other studies with an electrical heating element, making it an appropriate technology for waste utilisation, particularly for the oil palm industry. © The Author(s) 2015.
publisher SAGE Publications Ltd
issn 0734242X
language English
format Article
accesstype All Open Access; Green Open Access
record_format scopus
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