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首页> 外文期刊>Química Nova >Enzyme kinetic modelling and analytical solution of nonlinear rate equation in the transformation of D-methionine into L-methionine in batch reactor using the new homotopy perturbation method
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Enzyme kinetic modelling and analytical solution of nonlinear rate equation in the transformation of D-methionine into L-methionine in batch reactor using the new homotopy perturbation method

机译:新的同伦摄动法在间歇反应器中将D-蛋氨酸转化为L-蛋氨酸的非线性速率方程的酶动力学建模和解析解

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A mathematical model of biotransformation of D-methionine into L-methionine in the cascade of the enzymes such as, D-amino acid oxidase (D-AAO), L-phenylalanine dehydrogenase (L-PheDH) and formate dehydrogenase (FDH) is discussed. The model is based on a system of coupled nonlinear reaction equations under non steady-state conditions for biochemical reactions occurring in the batch reactor that describes the substrate and product concentration within the catalyst. Simple analytical expressions for the concentration of substrate and product have been derived for all values of reaction parameters using the new homotopy perturbation method (NHPM). Enzyme reaction rate in terms of concentration and kinetic parameters are also reported. The analytical results are also compared with experimental and numerical ones and a good agreement is obtained. The graphical procedure for estimating the kinetic parameters is also reported.
机译:讨论了在D-氨基酸氧化酶(D-AAO),L-苯丙氨酸脱氢酶(L-PheDH)和甲酸脱氢酶(FDH)等酶的级联反应中D-蛋氨酸向L-蛋氨酸生物转化的数学模型。 。该模型基于在批处理反应器中发生的生化反应的非稳态条件下耦合非线性反应方程组的系统,该系统描述了底物和催化剂中的产物浓度。使用新的同伦扰动方法(NHPM),可以得出反应参数所有值的底物和产物浓度的简单分析表达式。还报道了酶反应速率的浓度和动力学参数。还将分析结果与实验和数值结果进行了比较,得出了很好的一致性。还报告了估算动力学参数的图形程序。

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