Optimization of enzymatic transesterification of acid oils for biodiesel production using a low-cost lipase: the effect of transesterification conditions and the synergy of lipases with different regioselectivity

Author:

Moschona Alexandra1,Spanou Androniki2,Pavlidis Ioannis V.2,Karabelas Anastasios J.1,Patsios Sotiris I.1ORCID

Affiliation:

1. Centre for Research and Technology-Hellas: Ethniko Kentro Ereunas & Technologikes Anaptyxes

2. University of Crete: Panepistemio Kretes

Abstract

Abstract This study describes the enzymatic production of 2nd generation biodiesel using low-quality acid oil as a substrate. Biolipasa-R, a commercially available and low-cost lipase, was employed for enzymatic transesterification. Response surface methodology was applied to optimize the enzymatic transesterification process. The optimal conditions for biodiesel production, which comprised 42% lipase concentration (per weight of oil), 32% water content (per weight of oil), a methanol to oil molar ratio of 3:1, pH 7.0 and reaction temperature 30oC, resulted in the highest fatty acid methyl ester (FAME) content (71.3%). Subsequently, the synergistic effect of two lipases with different regioselectivities, under the optimum transesterification conditions, was studied, aiming at the enhancement of process efficiency. The transesterification efficiency of immobilized Biolipasa-R was determined and compared to that of Biolipasa-R in its free form. The results revealed a good performance on FAME content (66.5%), while the recycling of immobilized lipase resulted in a decrease of transesterification efficiency after three consecutive uses.

Publisher

Research Square Platform LLC

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