The acid catalyzed transesterification of rapeseed and jatropha oil with 1-butanol was studied by varying temperature, reaction time, butanol/triglyceride ratio and the amount of sulfuric acid. A full factorial design supporting non-linear regression models was used to combine the four design parameters. The measured yield, viscosity and acid number were quantitatively described by PLS-regression as functions of the four design variables for each vegetable oil. Product purity was controlled by 1H NMR. The PLS-regression model was used for optimizing the three response parameters. High (100%) yield is easily obtained within the experimental domain, whereas viscosity and acid number, with different optimum conditions, have to be compromised i...
Biodiesel has emerged as an alternative to non-renewable diesel fuel. Growing demand for biodiesel h...
Abstract A central composite rotatable design and response surface methodology were used in order to...
The synthesis of biodiesel from Jatropha curcas by transesterification is kinetically controlled. It...
The acid catalyzed transesterification of rapeseed and jatropha oil with 1-butanol was studied by va...
Jatropha oil and Rapeseed oil was transesterified with n-butanol by the use of H2SO4. Before conduct...
The study of an anion-exchange resin (Amberlyst A26 (OH)) catalyzed transesterification of Jatropha ...
Biodiesel was produced from seed oil of Jatropha curcas by in situ acid-catalyzed transesterificatio...
The aim of this work is to study the transesterification of vegetable oils with a high acid number. ...
The Central Composite Design is used for the optimization of alkaline catalyzed transesterification ...
Heterogeneous catalysts are promising catalysts for optimal biodiesel yield from transesterification...
Biodiesel can be produced both in homogeneous and heterogeneous ways. Heterogeneous synthesis allows...
Biodiesel production is worthy of continued study and optimization of production procedures due to i...
A central composite rotatable design and response surface methodology were used in order to investig...
Al-SBA-15 samples with molar Si/Al ratios of 3, 22 and 73 were synthesized and tested for the acid c...
Transesterification is the most common method of producing biodiesel from vegetable oils. A comparat...
Biodiesel has emerged as an alternative to non-renewable diesel fuel. Growing demand for biodiesel h...
Abstract A central composite rotatable design and response surface methodology were used in order to...
The synthesis of biodiesel from Jatropha curcas by transesterification is kinetically controlled. It...
The acid catalyzed transesterification of rapeseed and jatropha oil with 1-butanol was studied by va...
Jatropha oil and Rapeseed oil was transesterified with n-butanol by the use of H2SO4. Before conduct...
The study of an anion-exchange resin (Amberlyst A26 (OH)) catalyzed transesterification of Jatropha ...
Biodiesel was produced from seed oil of Jatropha curcas by in situ acid-catalyzed transesterificatio...
The aim of this work is to study the transesterification of vegetable oils with a high acid number. ...
The Central Composite Design is used for the optimization of alkaline catalyzed transesterification ...
Heterogeneous catalysts are promising catalysts for optimal biodiesel yield from transesterification...
Biodiesel can be produced both in homogeneous and heterogeneous ways. Heterogeneous synthesis allows...
Biodiesel production is worthy of continued study and optimization of production procedures due to i...
A central composite rotatable design and response surface methodology were used in order to investig...
Al-SBA-15 samples with molar Si/Al ratios of 3, 22 and 73 were synthesized and tested for the acid c...
Transesterification is the most common method of producing biodiesel from vegetable oils. A comparat...
Biodiesel has emerged as an alternative to non-renewable diesel fuel. Growing demand for biodiesel h...
Abstract A central composite rotatable design and response surface methodology were used in order to...
The synthesis of biodiesel from Jatropha curcas by transesterification is kinetically controlled. It...