Soybean oil (56–80 g) was reacted with methanol (40–106 mL) to produce fatty acid methyl ester in the presence of 1–6% acetic acid under subcritical condition at 250 _C. Stirring and loading of the reaction system affected the yield and severity of the process. The presence of acetic acid improved the yield of FAME from 32.1% to 89.5% at a methanol to oil molar ratio of 20 mL/g. Acetic acid was found to act strongly as an acid catalyst and to some extent improved the solubility between oil and methanol. Reaction pressure higher than the supercritical pressure of methanol (7.85 MPa) was not required to achieve high FAME yield (89.5–94.8%) in short time (30–60 min)
grantor: University of TorontoThe one-phase acid- and base-catalyzed methanolysis of soybe...
Fatty acid methyl esters (FAMEs) that are used as biodiesel can be synthesized in supercritical meth...
Fatty acid methyl esters (biodiesel) were produced by the transesterification of triglycerides with ...
Soybean oil (56–80 g) was reacted with methanol (40–106 mL) to produce fatty acid methyl ester in th...
Abstract This work presents the results of a supercritical transesterification process of soybean o...
The slow yet steady expansion of the global economies, has led to an increased demand for energy and...
Biologically derived acids such as ascorbic acid and acetic acid may be used to catalyze the product...
Biodiesel is an affordable and renewable transportation fuel. Within the United States it is commonl...
A benign process, non catalytic transesterification in sub and supercritical methanol method was use...
The manganese carbonate catalyst, prepared by precipitation method, was used in transesterification ...
In biodiesel production, the vegetable oil used as raw material for transesterification should be fr...
A set of experiments was carried out to study the optimum condition for transesterification of veget...
Transesterification of soybean oil with methanol was investigated. Three stepwise and reversible rea...
<p>A benign process, non catalytic transesterification in sub and supercritical methanol method was ...
Non catalytic transesterification in sub and supercritical methanol have been used to produce biodie...
grantor: University of TorontoThe one-phase acid- and base-catalyzed methanolysis of soybe...
Fatty acid methyl esters (FAMEs) that are used as biodiesel can be synthesized in supercritical meth...
Fatty acid methyl esters (biodiesel) were produced by the transesterification of triglycerides with ...
Soybean oil (56–80 g) was reacted with methanol (40–106 mL) to produce fatty acid methyl ester in th...
Abstract This work presents the results of a supercritical transesterification process of soybean o...
The slow yet steady expansion of the global economies, has led to an increased demand for energy and...
Biologically derived acids such as ascorbic acid and acetic acid may be used to catalyze the product...
Biodiesel is an affordable and renewable transportation fuel. Within the United States it is commonl...
A benign process, non catalytic transesterification in sub and supercritical methanol method was use...
The manganese carbonate catalyst, prepared by precipitation method, was used in transesterification ...
In biodiesel production, the vegetable oil used as raw material for transesterification should be fr...
A set of experiments was carried out to study the optimum condition for transesterification of veget...
Transesterification of soybean oil with methanol was investigated. Three stepwise and reversible rea...
<p>A benign process, non catalytic transesterification in sub and supercritical methanol method was ...
Non catalytic transesterification in sub and supercritical methanol have been used to produce biodie...
grantor: University of TorontoThe one-phase acid- and base-catalyzed methanolysis of soybe...
Fatty acid methyl esters (FAMEs) that are used as biodiesel can be synthesized in supercritical meth...
Fatty acid methyl esters (biodiesel) were produced by the transesterification of triglycerides with ...