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Esterification of free fatty acids with supercritical methanol for biodiesel production and related kinetic study

机译:用超临界甲醇酯化游离脂肪酸用于生物柴油生产及相关动力学研究

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摘要

Non-catalytic esterification of free fatty acids (oleic acid) with methanol for biodiesel production was studied in the reaction temperature range of 220-280 degrees C. To optimize the reaction conditions, the influence of the process parameters on biodiesel yield was studied with response surface methodology (RSM). It was found that biodiesel yield decreases at an exorbitant temperature. Thus, a reaction temperature below 260 degrees C is appropriate. At a temperature of 260 degrees C, with a methanol to oleic acid molar ratio of 20/1 and a reaction time of 60 min, the biodiesel yield can reach about 95%. In addition, a simplified approach to implementing a kinetic model for the esterification reaction was developed. The kinetic parameters were analyzed and discussed, and the experimental results were found to fit a first-order kinetic rate law. The rate constant of esterification in supercritical methanol increases significantly in comparison to that of subcritical conditions, and the apparent activation energy is higher than that of subcritical conditions.
机译:研究了在220-280℃的反应温度范围内,游离脂肪酸(油酸)与甲醇的非催化酯化反应,用于生产生物柴油。为了优化反应条件,研究了工艺参数对生物柴油收率的影响,并对其反应进行了研究。表面方法学(RSM)。已经发现,生物柴油的产率在过高的温度下降低。因此,低于260℃的反应温度是合适的。在260摄氏度的温度下,甲醇与油酸的摩尔比为20/1,反应时间为60分钟,生物柴油的收率可以达到约95%。另外,开发了用于实现酯化反应动力学模型的简化方法。对动力学参数进行了分析和讨论,发现实验结果符合一阶动力学速率定律。与亚临界条件相比,超临界甲醇中的酯化速率常数显着增加,并且表观活化能高于亚临界条件。

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