Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size
Bio-oil production from pyrolysis of 0.15-0.5 mm and 1-2 mm palm kernel shell (PKS) has been investigated in a fluidized bed reactor under the nitrogen gas flow rate of 25 L(NTP)/min, with reactor temperature of 450°C. The pyrolysis unit has six successive condensers. Thus, six fractions of bio-oil...
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Trans Tech Publications Ltd
2014
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my.utp.eprints.323532022-03-29T05:28:05Z Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size Norizan, A. Uemura, Y. Wissam, N.O. Tsutsui, T. Bio-oil production from pyrolysis of 0.15-0.5 mm and 1-2 mm palm kernel shell (PKS) has been investigated in a fluidized bed reactor under the nitrogen gas flow rate of 25 L(NTP)/min, with reactor temperature of 450°C. The pyrolysis unit has six successive condensers. Thus, six fractions of bio-oil samples were acquired from the six condensers. The calorific value, water content, ashcontent, and element content of each bio-oil samples were determined. The bio-oil yield from palm kernel shell with the size of 0.15-0.5 mm and 1-2 mm were 20 and 26, respectively. The highest calorific value among the six bio-oil samples was 25.1 MJ/kg which was drawn from the forth condenser from pyrolysis of 0.15-0.5 mm of palm kernel shell. The incondensable gas was a mixture of hydrogen, methane, carbon dioxide and ethane. © (2014) Trans Tech Publications, Switzerland. Trans Tech Publications Ltd 2014 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84904060166&doi=10.4028%2fwww.scientific.net%2fAMR.917.63&partnerID=40&md5=3346df07b720ce9f493502760de31823 Norizan, A. and Uemura, Y. and Wissam, N.O. and Tsutsui, T. (2014) Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size. Advanced Materials Research, 917 . pp. 63-71. http://eprints.utp.edu.my/32353/ |
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Bio-oil production from pyrolysis of 0.15-0.5 mm and 1-2 mm palm kernel shell (PKS) has been investigated in a fluidized bed reactor under the nitrogen gas flow rate of 25 L(NTP)/min, with reactor temperature of 450°C. The pyrolysis unit has six successive condensers. Thus, six fractions of bio-oil samples were acquired from the six condensers. The calorific value, water content, ashcontent, and element content of each bio-oil samples were determined. The bio-oil yield from palm kernel shell with the size of 0.15-0.5 mm and 1-2 mm were 20 and 26, respectively. The highest calorific value among the six bio-oil samples was 25.1 MJ/kg which was drawn from the forth condenser from pyrolysis of 0.15-0.5 mm of palm kernel shell. The incondensable gas was a mixture of hydrogen, methane, carbon dioxide and ethane. © (2014) Trans Tech Publications, Switzerland. |
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Article |
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Norizan, A. Uemura, Y. Wissam, N.O. Tsutsui, T. |
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Norizan, A. Uemura, Y. Wissam, N.O. Tsutsui, T. Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size |
author_facet |
Norizan, A. Uemura, Y. Wissam, N.O. Tsutsui, T. |
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Norizan, A. |
title |
Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size |
title_short |
Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size |
title_full |
Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size |
title_fullStr |
Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size |
title_full_unstemmed |
Bio-oil derived from palm kernel shell in fluidized bed reactor: Effect of particle size |
title_sort |
bio-oil derived from palm kernel shell in fluidized bed reactor: effect of particle size |
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Trans Tech Publications Ltd |
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2014 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-84904060166&doi=10.4028%2fwww.scientific.net%2fAMR.917.63&partnerID=40&md5=3346df07b720ce9f493502760de31823 http://eprints.utp.edu.my/32353/ |
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