Algae Oil Transesterification by Ultrasonic Irradiation on Sn-nano Sulfated Zirconia- Silica Catalyst
S. D. Sharma, Shailandra Singh
Chemical Science International Journal · pp. 71–81 · Published 10 Apr 2015
10.9734/ACSJ/2015/17259Abstract
Biodiesel production from algae oil by transesterification reaction using ultrasonic irradiation on heterogeneous catalyst was done at atmospheric condition to make the process sustainable and parsimonious. Ultrasonication reduces the reaction time as compared to the conventional methods and the solid acid catalyst gives 99.15% biodiesel yield which was obtained for oil to methanol molar ratio 1:10, catalyst 2 wt.% of oil, metal 0.4 wt.% of catalyst and 15min. reaction time. Heterogeneous catalyst and ultrasonic irradiation gives good yield and handling for biodiesel production.
References (20)
- 1 A RAPID METHOD OF TOTAL LIPID EXTRACTION AND PURIFICATION [DOI]
- 2 Biodiesel from microalgae [DOI]
- 3 Sonochemistry: Environmental Science and Engineering Applications [DOI]
- 4 Biodiesel made with sugar catalyst [DOI]
- 5 Structure-reactivity correlations in MgAl hydrotalcite catalysts for biodiesel synthesis [DOI]
- 6 Transesterification of soybean oil with zeolite and metal catalysts [DOI]
- 7 Transesterification of triacetin with methanol on solid acid and base catalysts [DOI]
- 8 Preparation of biodiesel with the help of ultrasonic and hydrodynamic cavitation [DOI]
- 9 A new method for obtaining ultra-low sulfur diesel fuel via ultrasound assisted oxidative desulfurization☆ [DOI]
- 10 Li–CaO catalysed tri-glyceride transesterification for biodiesel applications [DOI]
- 11 Base-Catalyzed Fast Transesterification of Soybean Oil Using Ultrasonication [DOI]
- 12 Calcium carbonate catalyzed alcoholysis of fats and oils [DOI]
- 13 Fast, easy ethanolysis of coconut oil for biodiesel production assisted by ultrasonication [DOI]
- 14 Ultrasonic-assisted transesterification of Jatropha curcus oil using solid catalyst, Na/SiO2 [DOI]
- 15 Three-phase catalytic hydrogenation of xylose to xylitol — prolonging the catalyst activity by means of on-line ultrasonic treatment [DOI]
- 16 Effect of the oil acidity on the methanolysis performances of lime catalyst biodiesel from waste frying oils (WFO) [DOI]
- 17 Biodiesel production over lithium modified lime catalysts: Activity and deactivation [DOI]
- 18 Simultaneous esterification and transesterification of soybean oil with methanol catalyzed by mesoporous Ta2O5/SiO2–[H3PW12O40/R] (R = Me or Ph) hybrid catalysts [DOI]
- 19 Continuous Low Cost Transesterification Process for the Production of Coconut Biodiesel [DOI]
- 20 Synthesis and Characterization of Highly Effective Nano Sulfated Zirconia over Silica: Core-Shell Catalyst by Ultrasonic Irradiation
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