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  1. Home
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  5. Bio-Char And Bio-Oil Production From Pyrolysis of Palm Kernel Shell And Polyethylene
 
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Bio-Char And Bio-Oil Production From Pyrolysis of Palm Kernel Shell And Polyethylene

Journal
International Journal of Conservation Science
ISSN
2067533X
Date Issued
2023-01-01
Author(s)
Ibrahim N.R.
Razi Ahmad
Universiti Malaysia Perlis
Wan Amiza Amneera Wan Ahmad
Universiti Malaysia Perlis
Vikneswaran Vijean
Universiti Malaysia Perlis
Ragunathan Al Santiagoo
Universiti Malaysia Perlis
Syakirah Afiza Mohammed
Universiti Malaysia Perlis
Khalid A.F.
Ani A.Y.
DOI
10.36868/IJCS.2023.02.22
Abstract
In recent years, palm kernel shell (PKS) has become a viable feedstock for making biofuels and value-added commodities using a variety of thermal conversion routes. Therefore, significant conservation is required for PKS as a resource for fuel production in biofuel facilities. Thus, this research was intended to elucidate the effects on PKS as a solid fuel through torrefaction and the production of bio-char and bio-oil by single and co-pyrolysis of PKS and polyethylene (PE). The PKS was treated through torrefaction at different temperatures and holding times. The optimum parameters for torrefaction were a temperature of 250 oC and a holding time of 60 min. Then the PKS and PE were pyrolyzed in a fixed-bed reactor at different temperatures and ratios. The product yield was analysed for single and co-pyrolysis of PKS and PE for pyrolysis. The properties of the product composition for single and co-pyrolysis of the PKS and PE were determined by proximate analysis, Fourier transform infrared (FTIR) analysis, and gas chromatography-mass spectrometry (GC-MS). The optimum parameter obtained for biochar and bio-oil production from co-pyrolysis of PKS and PE was at temperature of 500 oC at a ratio of 1:2 (PKS: PE). The ester and phenol compounds were increased around 19.02 to 23.18% and 32.51 to 34.80 %, respectively, while amide and amine decreased around 4.94 to 18.87% and 0.63 to 32.39 %, respectively, compared to the single pyrolysis of PKS. Therefore, the PKS and PE co-pyrolysis significantly increased the amount of phenol and ester compounds while slightly reducing the amount of amide and amine compounds in the bio-oil product. As a conclusion, biomass conservation enables the manufacturing of value-added chemicals.
Funding(s)
Ministry of Higher Education, Malaysia
Subjects
  • Bio-char | Bio-oil | ...

File(s)
Research repository notification.pdf (4.4 MB)
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