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Esterification of a waste cooking oil using metal-hybrid catalysts for chemoenzymatic reactions

Ramlee, Nurfadhila Nasya and Md. Illias, Rosli and Toemen, Susilawati and Abdul Manas, Nor Hasmaliana and Wan Azelee, Nur Izyan (2021) Esterification of a waste cooking oil using metal-hybrid catalysts for chemoenzymatic reactions. In: 3rd International Conference on Separation Technology, ICoST 2020, 15 - 16 August 2020, Johor, Malaysia.

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Official URL: http://dx.doi.org/10.1016/j.matpr.2021.02.795

Abstract

Waste cooking oil (WCO) serve as a cheap feedstocks for biodiesel production. However, the high acidity of this oil disqualifies it from using alkaline transesterification as the synthesis reaction for biodiesel production. Thus, the integration of enzymatic and chemical catalysts to form a hybrid catalyst for reducing oil acidity is a new option in the biodiesel industry. In the present study, five types of metal oxides and Candida rugosa lipase (CRL) were sequentially co-immobilized on the Alumina (Al2O3) for esterification of free fatty acid (FFA) to fatty acid methyl esters (FAMEs).The lowest FFA content achieved was 1.10% using CRL-CaO-Al2O3for 24 h esterification reaction, correspond to a conversion rates of 66.94%. The FAMEs conversion of the treated WCO indicates that the hybrid catalyst also can perform transesterification of triglycerides in the oil. Among all the hybrid catalysts, CRL-MgO-Al2O3shows the highest FAME conversion of 69.10%. The best immobilization time was recorded at 7 h which successfully reduced the FFA content until 1.39%. The application of heterogeneous enzyme-metal hybrid catalysts promise a better insight in the biodiesel industry in terms of its simplicity and catalyst recovery.

Item Type:Conference or Workshop Item (Paper)
Uncontrolled Keywords:Esterification, FFA
Subjects:T Technology > TP Chemical technology
Divisions:Chemical and Energy Engineering
ID Code:94380
Deposited By: Widya Wahid
Deposited On:31 Mar 2022 15:21
Last Modified:31 Mar 2022 15:21

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