Characteristic of oil palm empty fruit bunch after ethanolorganosolv pretreatment catalyzed by acid
The increasing growth of palm oil industry results in an increase in the accumulation of waste generated from the industry, such as oil palm empty fruit bunches (OPEFB). OPEFB is a good source of renewable raw materials if a pretreatment process can overcome the recalcitrance of OPEFB and allows...
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id-ugm-repo.2788482023-11-01T07:04:21Z https://repository.ugm.ac.id/278848/ Characteristic of oil palm empty fruit bunch after ethanolorganosolv pretreatment catalyzed by acid Mondylaksita, K. Budhijanto, W. Taherzadeh, M.J. Millati, R. Agricultural Engineering The increasing growth of palm oil industry results in an increase in the accumulation of waste generated from the industry, such as oil palm empty fruit bunches (OPEFB). OPEFB is a good source of renewable raw materials if a pretreatment process can overcome the recalcitrance of OPEFB and allows the fractionation of all carbohydrates and lignin. In this work, the effectiveness of organosolv pretreatment to deconstruct OPEFB and to recover high purity of lignin and glucan was studied. The pretreatment experiments were carried out at 210 °C for 90 minutes with a solid to liquid ratio of 1/10. Ethanol 50% (v/v) was used as solvent. The effect of H2SO4 0.07% (w/w) as catalyst was also studied. The results showed that organosolv pretreatment with the addition of acid increased the purity of glucan and lignin by 36 and 5%, respectively. A total of 65% lignin was recovered, which was 3.6 times higher than lignin from pretreatment without acid catalyst. After organosolv pretreatment with an acid catalyst, the crystallinity index (CRI) decreased by 54%, while the decrease in CRI was only 14.4% after pretreatment without an acid catalyst. The water retention value of the pretreated OPEFB with acid catalyst increased by 8%. It can be concluded that organosolv pretreatment using ethanol as a solvent with the addition of acid catalyst succeeded in fractionating OPEFB with high purity and reducing recalcitrant OPEFB. IOP Publishing 2022 Article PeerReviewed application/pdf en https://repository.ugm.ac.id/278848/1/Characteristic%20of%20oil%20palm%20empty%20fruit%20bunch%20after%20ethanol-organosolv%20pretreatment%20catalyzed%20by%20acid.pdf Mondylaksita, K. and Budhijanto, W. and Taherzadeh, M.J. and Millati, R. (2022) Characteristic of oil palm empty fruit bunch after ethanolorganosolv pretreatment catalyzed by acid. IOP Conf. Series: Earth and Environmental Science (963). pp. 1-10. ISSN 1755-1315 https://iopscience.iop.org/journal/1755-1315 10.1088/1755-1315/963/1/012054 |
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Agricultural Engineering Mondylaksita, K. Budhijanto, W. Taherzadeh, M.J. Millati, R. Characteristic of oil palm empty fruit bunch after ethanolorganosolv pretreatment catalyzed by acid |
description |
The increasing growth of palm oil industry results in an increase in the accumulation
of waste generated from the industry, such as oil palm empty fruit bunches (OPEFB). OPEFB
is a good source of renewable raw materials if a pretreatment process can overcome the
recalcitrance of OPEFB and allows the fractionation of all carbohydrates and lignin. In this
work, the effectiveness of organosolv pretreatment to deconstruct OPEFB and to recover high
purity of lignin and glucan was studied. The pretreatment experiments were carried out at 210
°C for 90 minutes with a solid to liquid ratio of 1/10. Ethanol 50% (v/v) was used as solvent.
The effect of H2SO4 0.07% (w/w) as catalyst was also studied. The results showed that
organosolv pretreatment with the addition of acid increased the purity of glucan and lignin by
36 and 5%, respectively. A total of 65% lignin was recovered, which was 3.6 times higher than
lignin from pretreatment without acid catalyst. After organosolv pretreatment with an acid
catalyst, the crystallinity index (CRI) decreased by 54%, while the decrease in CRI was only
14.4% after pretreatment without an acid catalyst. The water retention value of the pretreated
OPEFB with acid catalyst increased by 8%. It can be concluded that organosolv pretreatment
using ethanol as a solvent with the addition of acid catalyst succeeded in fractionating OPEFB
with high purity and reducing recalcitrant OPEFB. |
format |
Article PeerReviewed |
author |
Mondylaksita, K. Budhijanto, W. Taherzadeh, M.J. Millati, R. |
author_facet |
Mondylaksita, K. Budhijanto, W. Taherzadeh, M.J. Millati, R. |
author_sort |
Mondylaksita, K. |
title |
Characteristic of oil palm empty fruit bunch after ethanolorganosolv
pretreatment catalyzed by acid |
title_short |
Characteristic of oil palm empty fruit bunch after ethanolorganosolv
pretreatment catalyzed by acid |
title_full |
Characteristic of oil palm empty fruit bunch after ethanolorganosolv
pretreatment catalyzed by acid |
title_fullStr |
Characteristic of oil palm empty fruit bunch after ethanolorganosolv
pretreatment catalyzed by acid |
title_full_unstemmed |
Characteristic of oil palm empty fruit bunch after ethanolorganosolv
pretreatment catalyzed by acid |
title_sort |
characteristic of oil palm empty fruit bunch after ethanolorganosolv
pretreatment catalyzed by acid |
publisher |
IOP Publishing |
publishDate |
2022 |
url |
https://repository.ugm.ac.id/278848/1/Characteristic%20of%20oil%20palm%20empty%20fruit%20bunch%20after%20ethanol-organosolv%20pretreatment%20catalyzed%20by%20acid.pdf https://repository.ugm.ac.id/278848/ https://iopscience.iop.org/journal/1755-1315 |
_version_ |
1781413302757228544 |