Biodiesel was produced from seed oil of Jatropha curcas by in situ acid-catalyzed transesterification with methanol. Optimization of the reaction parameters was carried out using response surface methodology based on Box-Behnken design. All the four variables investigated were found to be significant. The empirical model obtained adequately expresses the relationship between the biodiesel yield and the statistically significant reaction variables (R2 = 96.97%). The optimization result predicted an optimal biodiesel yield of 84.07% at a reaction temperature of 48°C; a reaction time of 240 min; with 5 cm3 methanol/g of the seed and catalyst concentration of 0.88M. The validation result was in agreement with the predicted biodiesel yield. The ...
Biodiesel as an alternative fuel is one of the best choices among other sources due to its immense p...
Biodiesel, known as fatty acid methyl ester (FAME), was produced from crude cottonseed oil (triglyce...
Biodiesel has emerged as an alternative to non-renewable diesel fuel. Growing demand for biodiesel h...
Cost of biodiesel is primarily because of factors such as the feedstock, production process and mate...
Jatropha seed is potential to be utilized as raw material for biodiesel production by in situ transe...
Biodiesel of non food vegetal oil origin is gaining attention as a replacement for current fossil fu...
Rapid Industrialization has led to a drastic decline in fossil fuels giving rise to the need for env...
Biodiesel, an alternative renewable fuel made from transesterification of vegetable oil with alcohol...
Biodiesel, an alternative renewable fuel made from transesterification of vegetable oil with alcohol...
Making biodiesel from jatropha oil have been made through transesteri-fication reaction. This study ...
With the growing demand for vegetable oils, alternative non-edible feedstocks like Jatropha curcas s...
ABSTRACT Energy consumption increases when human activity increases. Today, the energy supply is ...
Biodiesel was one of the alternatives fuels to fuel the vehicle since world petroleum depleted. Prod...
The synthesis of biodiesel from Jatropha curcas by transesterification is kinetically controlled. It...
Biodiesel as an alternative fuel is one of the best choices among other sources due to its immense p...
Biodiesel, known as fatty acid methyl ester (FAME), was produced from crude cottonseed oil (triglyce...
Biodiesel has emerged as an alternative to non-renewable diesel fuel. Growing demand for biodiesel h...
Cost of biodiesel is primarily because of factors such as the feedstock, production process and mate...
Jatropha seed is potential to be utilized as raw material for biodiesel production by in situ transe...
Biodiesel of non food vegetal oil origin is gaining attention as a replacement for current fossil fu...
Rapid Industrialization has led to a drastic decline in fossil fuels giving rise to the need for env...
Biodiesel, an alternative renewable fuel made from transesterification of vegetable oil with alcohol...
Biodiesel, an alternative renewable fuel made from transesterification of vegetable oil with alcohol...
Making biodiesel from jatropha oil have been made through transesteri-fication reaction. This study ...
With the growing demand for vegetable oils, alternative non-edible feedstocks like Jatropha curcas s...
ABSTRACT Energy consumption increases when human activity increases. Today, the energy supply is ...
Biodiesel was one of the alternatives fuels to fuel the vehicle since world petroleum depleted. Prod...
The synthesis of biodiesel from Jatropha curcas by transesterification is kinetically controlled. It...
Biodiesel as an alternative fuel is one of the best choices among other sources due to its immense p...
Biodiesel, known as fatty acid methyl ester (FAME), was produced from crude cottonseed oil (triglyce...