From seeds to bioenergy: a conversion path for the valorization of castor and jatropha sedes

The world’s energy matrix can be diversified with biodiesel from castor and jatropha oil. Hence, the objective of this study was to assess a conversion path for the valorization of castor and jatropha seeds. The results showed the maximum extraction of castor oil at 90 °C, 2 rpm, and 6 mm nozzle, ac...

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Veröffentlicht in:Grasas y aceites (Sevilla) 2022-12, Vol.73 (4), p.e482
Hauptverfasser: Montes-Núñez, D.G., Montero-Alpírez, G., Coronado-Ortega, M.A., Ayala-Bautista, J.R., León-Valdez, J.A., Vázquez-Espinoza, A.M., Torres-Ramos, R., García-González, C.
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Sprache:eng
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Zusammenfassung:The world’s energy matrix can be diversified with biodiesel from castor and jatropha oil. Hence, the objective of this study was to assess a conversion path for the valorization of castor and jatropha seeds. The results showed the maximum extraction of castor oil at 90 °C, 2 rpm, and 6 mm nozzle, achieving a yield of 36.97% and for jatropha oil at 100 °C, 1.5 rpm, and 10 mm nozzle, achieving a yield of 20.11%. The acid value and cloud point of castor and jatropha oil were 0.797 and 23.44 mg KOH/g, 10±1 °C and 12±0.55 °C, respectively; while the pour point was -3 °C for both. The acid value and cloud point for biodiesels ranged from 0.26-0.43 mg KOH/g, and -12.50-6.10 °C, respectively. The viscosity of oils and biodiesel ranged from 0.02-1.3 P. GC-MS indicated 66.38% of methyl ricinoleate in castor biodiesel and 31.64% of methyl oleate in jatropha biodiesel. The HHV for castor and jatropha biodiesel ranged from 32.37-40.25 MJ/kg.
ISSN:0017-3495
1988-4214
DOI:10.3989/gya.0571211