relation: https://khub.utp.edu.my/scholars/18020/ title: In Situ Catalytic Conversion of Glycerol to Triacetin under Microwave Irradiation with Commercial Palladium on Activated Carbon Catalyst creator: Azmi, N. creator: Ameen, M. creator: Yashni, G. creator: Yusup, S. creator: Yusoff, M.H.M. creator: Chai, Y.H. description: The depletion of non-renewable fossil fuels has increased the importance of carbon-neutral resources like biofuel and biodiesel. Biodiesel is a better fuel option than petrodiesel due to its excellent lubricity, non-toxic nature, and lack of sulphur. However, the excess production of glycerol is a challenge for biodiesel usage. This study investigates using an acetylation process with palladium on the activated carbon catalyst to convert glycerol into triacetin, a potential fuel additive for biodiesel blends. The study optimises the reaction parameters using response surface methodology to achieve high selectivity for triacetin. The study determined that the optimised parameters for achieving 96.64 glycerol conversion and 0.231 triacetin selectivity are 110 �C, a 1:10 glycerol-acetic acid mole ratio, and 0.718 wt catalyst loading. Analysis of variance revealed that the reaction temperature significantly impacts glycerol conversion, while the glycerol-acetic acid mole ratio affects the selectivity of triacetin. © 2023, International Centre for Sustainable Development of Energy, Water and Environment Systems SDEWES. All rights reserved. date: 2023 type: Article type: PeerReviewed identifier: Azmi, N. and Ameen, M. and Yashni, G. and Yusup, S. and Yusoff, M.H.M. and Chai, Y.H. (2023) In Situ Catalytic Conversion of Glycerol to Triacetin under Microwave Irradiation with Commercial Palladium on Activated Carbon Catalyst. Journal of Sustainable Development of Energy, Water and Environment Systems, 11 (4). relation: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85171782871&doi=10.13044%2fj.sdewes.d11.0465&partnerID=40&md5=c7d31c7ea7e08dbd17c569dd60c5c2a6 relation: 10.13044/j.sdewes.d11.0465 identifier: 10.13044/j.sdewes.d11.0465