• Title of article

    Catalytic Gasification of Empty Fruit Bunch for Enhanced Production of Hydrogen Rich Fuel Gas

  • Author/Authors

    Mohammed, M. A. A. Universiti Putra Malaysia - Faculty of Engineering - Department of Chemical Environmental Engineering, Malaysia , Salmiaton, A. Universiti Putra Malaysia - Faculty of Engineering - Department of Chemical Environmental Engineering, Malaysia , Wan Azlina, W. A. K. G. Universiti Putra Malaysia - Faculty of Engineering - Department of Chemical Environmental Engineering, Malaysia , hamad Amran, M. S. , Omar, R. Universiti Putra Malaysia - Faculty of Engineering - Department of Chemical Environmental Engineering, Malaysia , Taufiq-Yap, Y. H. Universiti Putra Malaysia - Faculty of Science - Centre of Excellence for Catalysis Science and Technology,Department of Chemistry, Malaysia , Fakhru’l-Razi, A. Universiti Putra Malaysia - Faculty of Science - Centre of Excellence for Catalysis Science and Technology,Department of Chemistry, Malaysia

  • From page
    139
  • To page
    149
  • Abstract
    Oil palm is widely grown in Malaysia. There has been interest in the utilization of oil palm biomass for production of environmental friendly biofuels. The gasification of empty fruit bunches (EFB), a waste of the palm oil industry, was investigated in this study to effectively and economically convert low value and highly distribution solid biomass to a uniform gaseous mixture mainly hydrogen (H2). The effects of temperature, equivalence ratio (ER) and catalyst adding on the yields and distribution of hydrogen rich gas products were also investigated. The main gas species generated, as identified by GC, were H2, CO, CO2, CH4 and trace amounts of C2H4 and C2H6. With temperature increasing from 700 to 1000 °C, the total gas yield was enhanced greatly and reached the maximum value (~ 90 wt. % ) at 1000°C with a big portion of H2 (38.02 vol. %) and CO (36.36 vol. %). Equivalence ratio (ER) showed a significant influence on the upgrading of hydrogen production and product distribution. The optimum ER (0.25) was found to attain a higher H2 yield (27.42 vol. %) at 850°C. The effect of adding catalysts (Malaysian dolomite1, P1), Malaysian dolomite2 (GML), NaOH, NaCl, CaO, ZnO, NiO) as a primary catalyst on gas product yield was investigated, and it was found that adding dolomite showed the greatest effect with the maximum H2 yield achieved (28.18 vol.%) at 850°C
  • Keywords
    Biomass , hydrogen , gasification , catalyst adding
  • Journal title
    Pertanika Journal of Science and Technology ( JST)
  • Journal title
    Pertanika Journal of Science and Technology ( JST)
  • Record number

    2650895