Lugito, Graecia and Pamungkas, Andreas Yulius and Realdi, Muhammad Naufaal Daffa and Alam, Alif Kembara and Egiyawati, Candra and Pradana, Yano Surya and Adhi, Tri Partono and Soerawidjaja, Tatang Hernas and Makertihartha, I. Gusti B.N. and Mohtar, Wan Hanna Melini and Kurnia, Irwan and Indarto, Antonius (2025) Biodiesel Stability Enhancement Through Catalytic Transfer Hydrogenation Using Glycerol as Hydrogen Donor. Eng, 6 (5). ISSN 2673-4117
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Abstract
This research aimed to enhance biodiesel stability through catalytic transfer hydrogenation using a biomimetic bimetallic catalyst and glycerol as a hydrogen donor. The effects of catalyst species, intermediate solvent, glycerol feed, and glycerol form on biodiesel stability were investigated. In this study, the examined bimetallic catalysts were Zn-Cr-bicarbonate, Zn-Cr-formate, Zn-Cr-Ni, and Cu-Ni/SiO<inf>2</inf>. Based on the results, the most excellent catalyst was presented by Cu-Ni/SiO<inf>2</inf> catalyst with DMF solvent and 10 wt glycerol feed. This combination demonstrated a significant reduction in iodine (ÎIV = 4.9 g-I<inf>2</inf>/100 g) and peroxide values (ÎPV = â5.2 meq-O<inf>2</inf>/kg) accompanied by an elevation of oxidative stability (ÎOS = 4.3 h). Moreover, the reaction of catalytic transfer hydrogenation using these bimetallic catalysts followed the theoretical mechanism of the simultaneous dehydrogenation hydrogenation process with two different metals. The promotion of bicarbonate and formate ions on the bimetallic catalyst provided hydrogen transfer assistance in the catalyst. Hence, the continuous improvement of biodiesel properties is expected to promote sustainable implementation of cleaner diesel fuel. © 2025 by the authors.
| Item Type: | Article |
|---|---|
| Additional Information: | Cited by: 3; All Open Access; Gold Open Access |
| Uncontrolled Keywords: | Zinc alloys; Bimetallic catalysts; Biomimetic bimetallic catalyst; Catalysts species; Catalytic transfer hydrogenation; Effect of catalyst; Hydrogen donor; Ni/SiO 2; Ni/SiO 2 catalyst; Stability enhancement; ]+ catalyst; Hydrogenolysis |
| Subjects: | T Technology > TP Chemical technology |
| Divisions: | Faculty of Engineering > Chemistry Engineering Department |
| Depositing User: | Rita Yulianti Yulianti |
| Date Deposited: | 18 Jun 2026 06:23 |
| Last Modified: | 18 Jun 2026 06:23 |
| URI: | https://ir.lib.ugm.ac.id/id/eprint/24611 |
