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Experimental and kinetic modeling of acid oil (trans)esterification in supercritical ethanol

机译:超临界乙醇中酸性油(反式)酯化的实验和动力学模型

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This work reports experimental and kinetic modeling of the coupled esterification and transesterification reactions ((trans) esterification) of a model acid oil (a mixture of soybean oil and oleic acid) using ethanol at sub and supercritical conditions in a continuous tubular reactor. Process variables, namely temperature (220-350 degrees C), pressure (100-200 bar) and ethanol to acid oil molar ratio (2:1-20:1) as well as the effect of the initial amount of free fatty acids in the raw material were studied. The best condition for the ethylic supercritical (trans) esterification of soybean oil with 20 wt% of oleic acid was 280 degrees C, 100 bar, and ethanol to acid oil molar ratio of 4:1, where 80% of ester yield was reached in 60 min. It was observed that increasing the free fatty acid content increased the reaction rate and reaction yield. The proposed autocatalytic kinetic model presented a good fit in relation to the experimental data.
机译:这项工作报告了在连续管式反应器中,在亚临界和超临界条件下,使用乙醇对模型酸性油(大豆油和油酸的混合物)进行的酯化和酯交换反应((反)酯化)偶联的实验和动力学建模。工艺变量,即温度(220-350摄氏度),压力(100-200巴)和乙醇与酸性油的摩尔比(2:1-20:1)以及游离脂肪酸初始量的影响研究了原材料。用20 wt%的油酸对大豆油进行乙基超临界(反式)酯化的最佳条件是280℃,100 bar,乙醇与酸性油的摩尔比为4:1,其中酯收率达到80%。 60分钟观察到增加游离脂肪酸含量增加了反应速率和反应产率。所提出的自催化动力学模型相对于实验数据表现出很好的拟合性。

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