Ultrasonic-assisted simultaneous saccharification and fermentation of pretreated oil palm fronds for sustainable bioethanol production

•Palm fronds were pretreated using ultrasonic-assisted organosolv/H2O2 method.•Simultaneous saccharification and fermentation (SSF) of palm fronds by ultrasound.•Optimum conditions: 5h, 40°C, pH 5.0, yeast conc. 15g/l, solid loading 10% w/v.•Maximal ethanol conc. (18.15g/l) and yield (57.02%) at opt...

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Published inFuel (Guildford) Vol. 119; pp. 285 - 291
Main Authors Ofori-Boateng, Cynthia, Lee, Keat Teong
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier Ltd 01.03.2014
Elsevier
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Abstract •Palm fronds were pretreated using ultrasonic-assisted organosolv/H2O2 method.•Simultaneous saccharification and fermentation (SSF) of palm fronds by ultrasound.•Optimum conditions: 5h, 40°C, pH 5.0, yeast conc. 15g/l, solid loading 10% w/v.•Maximal ethanol conc. (18.15g/l) and yield (57.02%) at optimum SSF conditions. Ultrasonic-assisted simultaneous saccharification and fermentation (SSF) of modified organosolv pretreated oil palm fronds (OPFs) for sustainable production of bioethanol was investigated for the first time in this study. Ultrasound application in industrial processes is able to reduce the process temperature and time, which eventually improves the energy utilization for sustainable production. According to this study, the ultrasonic-assisted SSF of pretreated OPFs was found to improve the bioethanol yield significantly at shorter times compared to the SSF processes without ultrasound. Optimization of the ultrasonic-assisted SSF process resulted in maximal bioethanol concentration (18.2g/l) and yield (57.0%) at optimum SSF time (5h), temperature (40°C), pH (5.0), yeast concentration (15g/l) and solid loading (10% (w/v)). SSF coupled with ultrasound was found as a sustainable way of producing high bioethanol titre from organosolv/H2O2 pretreated OPFs.
AbstractList •Palm fronds were pretreated using ultrasonic-assisted organosolv/H2O2 method.•Simultaneous saccharification and fermentation (SSF) of palm fronds by ultrasound.•Optimum conditions: 5h, 40°C, pH 5.0, yeast conc. 15g/l, solid loading 10% w/v.•Maximal ethanol conc. (18.15g/l) and yield (57.02%) at optimum SSF conditions. Ultrasonic-assisted simultaneous saccharification and fermentation (SSF) of modified organosolv pretreated oil palm fronds (OPFs) for sustainable production of bioethanol was investigated for the first time in this study. Ultrasound application in industrial processes is able to reduce the process temperature and time, which eventually improves the energy utilization for sustainable production. According to this study, the ultrasonic-assisted SSF of pretreated OPFs was found to improve the bioethanol yield significantly at shorter times compared to the SSF processes without ultrasound. Optimization of the ultrasonic-assisted SSF process resulted in maximal bioethanol concentration (18.2g/l) and yield (57.0%) at optimum SSF time (5h), temperature (40°C), pH (5.0), yeast concentration (15g/l) and solid loading (10% (w/v)). SSF coupled with ultrasound was found as a sustainable way of producing high bioethanol titre from organosolv/H2O2 pretreated OPFs.
Ultrasonic-assisted simultaneous saccharification and fermentation (SSF) of modified organosolv pretreated oil palm fronds (OPFs) for sustainable production of bioethanol was investigated for the first time in this study. Ultrasound application in industrial processes is able to reduce the process temperature and time, which eventually improves the energy utilization for sustainable production. According to this study, the ultrasonic-assisted SSF of pretreated OPFs was found to improve the bioethanol yield significantly at shorter times compared to the SSF processes without ultrasound. Optimization of the ultrasonic-assisted SSF process resulted in maximal bioethanol concentration (18.2 g/l) and yield (57.0%) at optimum SSF time (5 h), temperature (40 degree C), pH (5.0), yeast concentration (15 g/l) and solid loading (10% (w/v)). SSF coupled with ultrasound was found as a sustainable way of producing high bioethanol titre from organosolv/H2O2 pretreated OPFs.
Author Ofori-Boateng, Cynthia
Lee, Keat Teong
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  givenname: Keat Teong
  surname: Lee
  fullname: Lee, Keat Teong
  email: chktlee@eng.usm.my
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Keywords Oil palm fronds
Ultrasound, bioethanol, simultaneous saccharification and fermentation
Organosolv pretreatment
Palm oil
Saccharification
Pretreatment
Fermentation
Ultrasound
Language English
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Snippet •Palm fronds were pretreated using ultrasonic-assisted organosolv/H2O2 method.•Simultaneous saccharification and fermentation (SSF) of palm fronds by...
Ultrasonic-assisted simultaneous saccharification and fermentation (SSF) of modified organosolv pretreated oil palm fronds (OPFs) for sustainable production of...
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SubjectTerms Applied sciences
Energy
Energy. Thermal use of fuels
Exact sciences and technology
Fuels
Oil palm fronds
Organosolv pretreatment
Ultrasound, bioethanol, simultaneous saccharification and fermentation
Title Ultrasonic-assisted simultaneous saccharification and fermentation of pretreated oil palm fronds for sustainable bioethanol production
URI https://dx.doi.org/10.1016/j.fuel.2013.11.064
https://search.proquest.com/docview/1505343409
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