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Kinetic study of lipase-catalyzed glycerolysis of palm olein using Lipozyme TLIM in solvent-free system

机译:Lipozyme TLIM在无溶剂体系中脂肪酶催化棕榈油精甘油分解的动力学研究

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摘要

Diacylglycerol (DAG) and monoacylglycerol (MAG) are two natural occurring minor components found in most edible fats and oils. These compounds have gained increasing market demand owing to their unique physicochemical properties. Enzymatic glycerolysis in solvent-free system might be a promising approach in producing DAG and MAG-enriched oil. Understanding on glycerolysis mechanism is therefore of great importance for process simulation and optimization. In this study, a commercial immobilized lipase (Lipozyme TL IM) was used to catalyze the glycerolysis reaction. The kinetics of enzymatic glycerolysis reaction between triacylglycerol (TAG) and glycerol (G) were modeled using rate equation with unsteady-state assumption. Ternary complex, ping-pong bi-bi and complex ping-pong bi-bi models were proposed and compared in this study. The reaction rate constants were determined using non-linear regression and sum of square errors (SSE) were minimized. Present work revealed satisfactory agreement between experimental data and the result generated by complex ping-pong bi-bi model as compared to other models. The proposed kinetic model would facilitate understanding on enzymatic glycerolysis for DAG and MAG production and design optimization of a pilot-scale reactor.
机译:二酰基甘油(DAG)和一酰基甘油(MAG)是大多数食用油脂中发现的两种天然次要成分。这些化合物由于其独特的理化性质而获得了越来越高的市场需求。无溶剂系统中的酶法甘油分解可能是生产DAG和MAG富集油的一种有前途的方法。因此,对甘油分解机理的理解对于过程模拟和优化非常重要。在这项研究中,商业化的固定化脂肪酶(Lipozyme TL IM)被用来催化甘油分解反应。使用速率方程在非稳态假设下对三酰基甘油(TAG)和甘油(G)之间的酶促甘油分解反应动力学进行了建模。提出并比较了三元复合物,乒乓球bi-bi和复杂的乒乓球bi-bi模型。使用非线性回归确定反应速率常数,并最小化平方误差之和(SSE)。目前的工作表明,与其他模型相比,实验数据与复杂的乒乓球比比模型产生的结果之间令人满意的一致性。所提出的动力学模型将有助于对用于DAG和MAG生产的酶法甘油分解以及中试规模反应器的设计优化的理解。

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