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Kinetic study of glycerolysis of palm olein for monoacylglycerol production by immobilized lipase

机译:固定化脂肪酶对棕榈油精甘油分解产生单酰基甘油的动力学研究

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Kinetic study of monoacylglycerol production by glycerolysis of palm olein using immobilized lipase has been investigated.A mathematical model took into account mechanism of glycerolysis reaction using palm olein as substrate was developed.The kinetic parameters were estimated by fitting experimental data of glycerolysis reaction of palm olein by immobilized lipase PS on Accurel EP-100.There was a good agreement between experimental results and those predicted by proposed model equations under various enzyme,water,glycerol and palm olein concentrations.From proposed model equations,the synergic effect of glycerol and palm olein concentrations was simulated.The simulation results show that the behavior of high substrate concentrations obtained high initial production rates but low yields of monoacylglycerol.Thus,at high concentrations of palm olein and glycerol of 7.16 and 19.14 mM,respectively,high initial production rate of monoacylglycerol of 0.338 mMh-1 and acceptable yield of 82% were obtained.On the other hand,the highest yield of monoacylglycerol of 100% was obtained at comparatively low palm olein concentration of 2.39 mM and excess glycerol concentration of 19.14 mM.
机译:研究了固定化脂肪酶对棕榈油精进行甘油水解产生单酰基甘油的动力学研究,建立了考虑以棕榈油精为底物进行甘油水解反应机理的数学模型,并通过拟合棕榈油精甘油分解反应的实验数据估算了动力学参数。在不同的酶,水,甘油和棕榈油精浓度下,通过固定化脂肪酶PS将其固定在Accurel EP-100上。实验结果与拟议的模型方程预测的结果之间具有良好的一致性。从拟议的模型方程中,甘油和棕榈油精的协同作用模拟结果表明,高底物浓度的行为获得了较高的初始产率,但是单酰基甘油的产率较低。因此,在棕榈油精和甘油分别为7.16和19.14 mM的高浓度下,单酰基甘油的初始产率较高0.338 mMh-1,合格率82%w另一方面,在相对较低的棕榈油精浓度为2.39 mM和过量甘油浓度为19.14 mM的情况下,单酰基甘油的最高收率为100%。

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