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Whilst, a number of species produced high levels of neutral lipids, suitable for FAME production, under a range of conditions, all were more productive at lower temperatures than found in the Baths.
These solid bases were evaluated as catalysts in the transesterification reaction for the biodiesel (FAME) production.
The ANN is shown to be a powerful tool for modeling and optimizing FAME production.
Further, FAME production rates were easily predicted, even in concentrated biomass slurries, by models derived from fundamental reaction kinetics.
This investigation examined the effects of nitrogen phosphate combined deficiency on the biomass yield, fatty acid methyl esters (FAME) production and composition from Scenedesmus rubescens-like microalga.
The study revealed the possibility of developing heterogeneous catalyst from banana peels for FAME production, which may reduce the overall cost of production.
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Data were analyzed with JMP software (SAS Institute Inc . . Analysisof FAMEs production was performed by gas chromatography (GC).
An industrially synthesized biodiesel sample, loaded in the second lane, was used as a control for FAMEs production.
As a possible biotechnological application, the four immobilized lipases were assayed in preliminary transesterification reactions for FAMEs production.
As a possible application, the behavior of the immobilized lipase preparations was assayed in triolein transesterification for fatty acid methyl esters (FAMEs) production.
Used as a substrate for combined enzymatic degumming and transesterification, it resulted in a slightly lower FAMEs production, compared to soybean oil.
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