Original scientific paper
https://doi.org/10.15255/KUI.2025.060
Epoxidation of Oleic Acid Using Acetic Acid and Citric Acid as Hybrid Organic Oxygen Carriers
Aishah Derahman
; Faculty of Chemical Engineering, Universiti Teknologi MARA Cawangan Teregganu, Kampus Bukit Besi, 23 200, Bukit Besi, Dungun, Terengganu, Malaysia
Mohd Jumain Jalil
; Faculty of Chemical Engineering, Universiti Teknologi MARA Cawangan Johor, Kampus Pasir, Gudang, 81 750 Masai, Johor, Malaysia
*
Intan Suhada Azmi
; Faculty of Chemical Engineering, Universiti Teknologi MARA Cawangan Johor, Kampus Pasir, Gudang, 81 750 Masai, Johor, Malaysia
Nur Azmina Asyiqin Norazmi
; Faculty of Chemical Engineering, Universiti Teknologi MARA Cawangan Johor, Kampus Pasir, Gudang, 81 750 Masai, Johor, Malaysia
Mohammad Aathif Addli
; Faculty of Chemical Engineering, Universiti Teknologi MARA Cawangan Johor, Kampus Pasir, Gudang, 81 750 Masai, Johor, Malaysia
* Corresponding author.
Abstract
This study investigates the epoxidation of oleic acid employing a hybrid oxygen-carrier system consisting of acetic acid and citric acid. Conventional peracid-based epoxidation pathways often suffer from instability and undesirable side reactions, which restrict their broader application. To overcome these challenges, the influence of three key parameters, namely reaction temperature, hydrogen peroxide, and the oxygen carrier molar ratio, was systematically investigated. The results indicate that moderate reaction conditions (55–65 °C) enhanced oxirane formation and maintained epoxide stability, while both hydrogen peroxide and oxygen carriers at a stoichiometric ratio (1 : 1) achieved the highest epoxide yield of approximately 21 %. Increasing either parameter beyond the optimum promoted oxirane ring-opening and degradation reaction, leading to reduced conversion. A first-order kinetic model was established and optimised using MATLAB, and the predicted values showed excellent agreement with experimental data (R² = 0.9927), confirming the reliability of the developed model.
Overall, the use of acetic-citric acid hybrid oxygen carriers improved epoxide stability, minimised secondary reactions, and provided a greener alternative for producing high-quality epoxidised oleic acid with potential application in sustainable polymer and bio-based chemical industries.
Keywords
epoxidation; oleic acid; hybrid oxygen carrier; kinetic model
Hrčak ID:
350163
URI
Publication date:
14.9.2026.
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