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Biodiesel synthesis from Hevea brasiliensis oil employing carbon supported heterogeneous catalyst: Optimization by Taguchi method
Affiliation:1. IDMEC/LAETA, Instituto Superior Técnico, Universidade de Lisboa, Lisbon, Portugal;2. Departamento de Física, Escola de Ciências e Tecnologia, Universidade de Évora, Évora, Portugal;3. Department of Electrical Engineering and Automation, Instituto Superior de Engenharia de Lisboa, Lisbon, Portugal;4. Centro Algoritmi, Universidade do Minho, Guimarães, Portugal;1. LEGI UMR 5519, BP 53, Grenoble Cedex 9, 38041, France;2. Hydroquest, Le Tarmac, 29 Chemin du Vieux Chêne, Meylan, 38240, France;3. LMFA UMR 5509, Ecole Centrale de Lyon, Ecully Cedex, 69134, France
Abstract:The present work illustrates the parametric effects on biodiesel production from Hevea brasiliensis oil (HBO) using flamboyant pods derived carbonaceous heterogeneous catalyst. Activated carbon (AC) was prepared maintaining 500 °C for 1 h and steam activated at optimised values of activation time 1.5 h and temperature 350 °C. Carbonaceous support was impregnated with KOH at different AC/KOH ratios. The transesterification process was optimized and significant parameters affecting the biodiesel yield was identified by Taguchi method considering four parameters viz. reaction time, reaction temperature, methanol to oil ratio and catalyst loading. The physicochemical properties of Hevea brasiliensis methyl ester (HBME) were examined experimentally at optimised condition and found to meet the global American standards for testing and materials (ASTM). The optimum condition observed to yield 89.81% of biodiesel were: reaction time 60 min, reaction temperature 55 °C, catalyst loading 3.5wt% and methanol to oil ratio 15:1. Contribution factor revealed that among four parameters considered, catalyst loading and methanol to oil ratio have more prominent effect on biodiesel yield. The cost for preparing carbonaceous catalyst support was estimated and observed to be fairly impressive. Thus, Hevea brasiliensis oil (HBO) could be considered as suitable feedstock and flamboyant pods derived carbon as effective catalyst for production of biodiesel.
Keywords:Biodiesel  Flamboyant pods  Heterogeneous carbon catalyst  Taguchi method  Transesterification
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