Enzyme Kinetic of Lipase Catalysed Acidolysis of Used Cooking Palm Oil

Shakirah S. Sulaiman, N. Zaharudin, Roslina Rashid, S. M. Mohamed Esivan
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Abstract

Enzymatic acidolysis of various fats and oils has successfully shown a promising ability to alter specific positions of lipids and incorporate desirable fatty acids at specific positions. However, used cooking oil utilization for enzymatic acidolysis is still lacking scientific investigation. Hence, this study aims to utilize used cooking palm oil (UCPO) by enhancing the oleic acid content via enzymatic acidolysis using immobilized C. rugosa lipase. The optimum substrate molar ratio (mol/mol) was identified based on the analysis of the peroxide, iodine, and acid values. Then, kinetic parameters, Km and Vmax for the enzymatic acidolysis of UCPO were calculated. Substrate molar ratio of 1:1, 1:2, 1:3, 1:4, and 1:5 mol/mol (oil: acid) was varied to evaluate the peroxide, acid, and iodine values. The reaction conditions such as reaction temperature (50 °C), reaction time (24 hours), enzyme concentration (0.05 g), agitation speed (250 rpm), and pH (7) were fixed throughout the experiment. The Michaelis-Menten kinetic model was selected to describe the kinetic of enzymatic acidolysis of UCPO. The result showed that incorporation of oleic acid in UCPO has been successfully achieved with the increased in IV value from 39.47 I2/g to 110.53 I2/g. The optimum substrate molar ratio obtained was 1:3 mol/mol with the highest iodine value of 110.53 I2/g. The best linear regression approach is Lineweaver-Burk plot with the values of Vmax and Km were 34.5658 μmol/ml.min and 0.06 mol/L, respectively. The enzyme activity for C. rugosa lipase was obtained at 0.5804 μmol/min.ml.
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脂肪酶催化废食用油酸解的酶动力学研究
各种脂肪和油的酶酸解已经成功地显示出改变脂质特定位置和在特定位置合并所需脂肪酸的有希望的能力。然而,废油用于酶解酸解还缺乏科学的研究。因此,本研究的目的是利用固定化的棕榈脂酶,通过酶解提高烹饪用棕榈油(UCPO)的油酸含量。通过对过氧化氢、碘和酸值的分析,确定了最佳底物摩尔比(mol/mol)。然后计算了UCPO酶解的动力学参数、Km和Vmax。底物的摩尔比为1:1、1:2、1:3、1:4和1:5 mol/mol(油:酸),以评估过氧化氢、酸和碘的值。实验过程中固定反应温度(50℃)、反应时间(24小时)、酶浓度(0.05 g)、搅拌速度(250 rpm)、pH(7)等反应条件。采用Michaelis-Menten动力学模型描述UCPO酶解酸解的动力学过程。结果表明,油酸在UCPO中的掺入成功,IV值从39.47 I2/g提高到110.53 I2/g。所得的最佳底物摩尔比为1:3 mol/mol,碘值最高为110.53 I2/g。线性回归的最佳方法是Lineweaver-Burk图,Vmax和Km均为34.5658 μmol/ml。min和0.06 mol/L。酶活为0.5804 μmol/min.ml。
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