Fast GC-FID method for monitoring acidic and basic catalytic transesterification reactions in vegetable oils to methyl ester biodiesel preparation

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Abstract

A fast gas chromatography with a flame ionisation detector (GC-FID) method for the simultaneous analysis of methyl palmitate (C16:0), stearate (C18:0), oleate (C18:1), linoleate (C18:2) and linolenate (C18:3) in biodiesel samples was proposed. The analysis was conducted in a customised ionic-liquid stationary-phase capillary, SLB-IL 111, with a length of 14 m, an internal diameter of 0.10 mm, a film thickness of 0.08 μm and operated isothermally at 160°C using hydrogen as the carrier gas at a rate of 50 cm s-1 in run time about 3 min. Once methyl myristate (C14:0) is present lower than 0.5% m/m in real samples it was used as an internal standard. The method was successful applied to monitoring basic and acidic catalysis transesterification reactions of vegetable oils such as soybean, canola, corn, sunflower and those used in frying process.

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Sato, R. T., Stroppa, P. H. F., Da Silva, A. D., & De Oliveira, M. A. L. (2016). Fast GC-FID method for monitoring acidic and basic catalytic transesterification reactions in vegetable oils to methyl ester biodiesel preparation. Quimica Nova, 39(3), 352–355. https://doi.org/10.5935/0100-4042.20160027

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