1H NMR and UV-Vis as Analytical Techniques to Evaluate Biodiesel Conversion and Oxidative Stability

Author:

Braga Emanuelle1,Damasceno Luana1,Barros de Sousa Silva Chastryane1,Silva Lucas1,Cavalcante Maria1,Barreto César2ORCID,Silva Silvia3,Murilo Tavares de Luna Francisco3ORCID,Bertini Luciana4,Nascimento Tassio4ORCID,Rios Maria15ORCID

Affiliation:

1. Grupo de Inovações Tecnológicas e Especialidades Químicas, Departamento de Engenharia Mecânica, Universidade Federal do Ceará, Campus do Pici, Bl. 714, Fortaleza 60440-554, Brazil

2. Departamento de Física, Universidade Federal do Ceará, Campus do Pici, Bl. 902, Fortaleza 60440-900, Brazil

3. NPL, Departamento de Engenharia Mecânica, Universidade Federal do Ceará, Campus do Pici, Bl. 714, Fortaleza 60440-554, Brazil

4. Instituto Federal de Educação, Ciência e Tecnologia do Rio Grande do Norte (IFRN), Apodi 59700-000, Brazil

5. Programa de Pós-Graduação em Engenharia Química, Universidade Federal do Ceará, Campus do Pici, Bl. 709, Fortaleza 60455-760, Brazil

Abstract

The present study evaluated the applicability of 1H NMR and UV-Vis spectroscopies as analytical techniques for the characterization and determination of biodiesel conversion and for monitoring the oxidative stability of biodiesel samples with antioxidants. For this study, safflower and babassu biodiesels were obtained through transesterification, and physicochemical properties confirmed the success of both reactions. A bench-top accelerated oxidation system was used as an alternative to the Rancimat® method, with samples of 6.0 g heated at 110 ± 5 °C and collected every 2 h for 12 h. The agreement for biodiesel conversions was good, with divergences between 2% and 0.4% for safflower biodiesel and 1.9% for babassu biodiesel. As for UV-Vis spectroscopy, the technique showed the same trend as the Rancimat® method, showing efficiency in evaluating the oxidative stability of safflower biodiesel and in the performance of antioxidants BHT and DMP-30. The accuracy of NMR signals integration for mixtures of safflower oil and safflower biodiesel and the use of UV-Vis spectroscopy associated with a bench-top accelerated oxidation system to investigate the performance of phenolic and amine antioxidants in safflower and babassu biodiesel were explored for the first time, showing results close to the standard methods. Therefore, 1H NMR and UV-Vis spectroscopies could be applied as alternatives to the GC and Rancimat® methods to determine conversion and monitor the oxidative stability of biodiesel rapidly and practically.

Funder

CNPq

FUNCAP

FINEP

CAPES

Publisher

MDPI AG

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