A.Annam Renita, J Aravind Kumar, Anstey Vathani T, Sai Sruthi V, T. Sathish, Basem Abu Zneid
Waste cooking oil (WCO) has the benefit of conversion to biodiesel, which has both ecological and economic benefits. This paper presents a copper-based metal-organic framework (Cu-MOF) catalyst that was used in the WCO transesterification reaction and then the separation of the product in a packed bed column. The thermogravimetric analysis was used in the determination of catalyst stability and showed a degradation temperature of 250°C. Other structural and morphological characterisation was done through FESEM, FTIR, and XRD. Optimisation of the process was conducted based on the response surface using a central composite design that showed a maximum biodiesel yield of 88% when the ratio of methanol to oil was 6:1 and 5.28 g of the Cu-MOF was used. Sustained activity in reusability tests was demonstrated up to the tenth cycle, with a 70% yield observed until the yield dropped. The results indicate high catalytic efficiency and recyclability of Cu-MOF, which has a strong potential for producing sustainable biodiesel by using WCO.