Title of article :
Advanced Mathematical Model To Describe The Production Of Biodiesel Process
Author/Authors :
Ibrehem, Ahmmed S. University of Sedaya - Chemical Petroleum Engineering Department, Malaysia , Al-Salim, Hikmat S. University of Sedaya - Chemical Petroleum Engineering Department, Malaysia
From page :
37
To page :
42
Abstract :
Advanced mathematical model was used to capture the batch reactor characteristics of reacting compounds. The model was applied to batch reactor for the production of bio-diesel from palm and kapok oils. Results of the model were compared with experimental data in terms of conversion of transesterification reaction for the production of bio-diesel under unsteady state. A good agreement was obtained between our model predictions and the experimental data. Both experimental and modeling results showed that the conversion of triglycerides to methyl ester was affected by the process conditions. The transesterification process with temperature of about 70 oC, and methanol ratio to the triglyceride of about 5 times its stoichiometry, and the NAOH catalyst of wt 0.4%, appear to be acceptable process conditions for bio diesel process production from palm oil and kapok oil. The model can be applied for endothermic batch process.
Keywords :
Mathematical model , Bio diesel. Vegetable oil , Catalytic reactor , Process production
Journal title :
Bulletin of Chemical Reaction Engineering & Catalysis
Journal title :
Bulletin of Chemical Reaction Engineering & Catalysis
Record number :
2672050
Link To Document :
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