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Kinetic study on lipase-catalyzed biodiesel production from waste cooking oil

机译:废食用油生产脂肪酶催化生物柴油的动力学研究

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A kinetic model of the biodiesel production from waste cooking oil using Candida sp. 99-125 lipase as catalyst was established in this paper. The limited reaction steps in the model were considered to be the hydrolysis of glycerides and the esterification of free fatty acids, while the methanolysis of glycerides were considered to be negligible. Matlab programming platform was used to estimate the parameters of the model. A series of experiments were conducted to verify the validity of the model. The results showed that the model could adequately simulate the reaction results of biodiesel production at different lipase loadings, substrate ratios and initial water concentrations. The agreement between experimental data and calculated values was good, which could prove the validity of the kinetic model. Moreover, the results of biodiesel production using a twelve-step methanol feeding method and a three-step methanol feeding method could be simulated well by the kinetic model. The results indicated that the model could also simulate the biodiesel production using methanol step-wise addition.
机译:使用假丝酵母(Candida sp。)建立了99-125脂肪酶催化剂。该模型中有限的反应步骤被认为是甘油酯的水解和游离脂肪酸的酯化,而甘油酯的甲醇分解被认为是微不足道的。使用Matlab编程平台来估计模型的参数。进行了一系列实验以验证该模型的有效性。结果表明,该模型可以充分模拟生物柴油在不同脂肪酶添加量,底物比例和初始水浓度下的反应结果。实验数据与计算值吻合良好,可以证明动力学模型的有效性。此外,通过动力学模型可以很好地模拟使用十二步甲醇进料方法和三步甲醇进料方法生产生物柴油的结果。结果表明,该模型还可以模拟甲醇逐步加入的生物柴油生产。

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