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首页> 外文期刊>Journal of the Serbian Chemical Society >Vapor-liquid equilibria of triglycerides-methanol mixtures and their influence on the biodiesel synthesis under supercritical conditions of methanol
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Vapor-liquid equilibria of triglycerides-methanol mixtures and their influence on the biodiesel synthesis under supercritical conditions of methanol

机译:甲醇超临界条件下甘油三酸酯-甲醇混合物的汽液平衡及其对生物柴油合成的影响

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摘要

The non-catalytic synthesis of biodiesel (fatty acids methyl esters) from triglycerides and methanol proceeds at elevated pressures above 100 bar and temperatures above 523 K. Kinetic investigations of the system revealed an unusual behavior of the reaction rate constant with increasing temperature and pressure. In order to explain this phenomenon, the phase behavior of the triglycerides-methanol mixture was investigated. The phase equilibria of the binary system sunflower oil-methanol were measured at different temperatures between 473 and 503 K, and a range of pressures between 10 and 56 bar. The experimental data were correlated using the Peng-Robinson, Soave-Redlich-Kwong and Redlich-Kwong-Aspen equations of state and different mixing rules. The best results were obtained with the RK-ASPEN equation of state and the Van der Waals mixing rule (VdW), which were then used to calculate the distribution of the phases at pressures and temperatures usual for the non-catalytic synthesis of biodiesel under high pressures. The obtained data indicated a strong influence of the phase equilibria on the reaction kinetics.
机译:由甘油三酸酯和甲醇进行的非催化生物柴油(脂肪酸甲酯)的合成是在高于100 bar的高压和高于523 K的温度下进行的。该系统的动力学研究表明,反应速率随温度和压力的增加而具有恒定的异常行为。为了解释该现象,研究了甘油三酸酯-甲醇混合物的相行为。在473至503 K之间的不同温度以及10至56 bar的压力范围内,测量了二元体系向日葵油-甲醇的相平衡。使用Peng-Robinson,Soave-Redlich-Kwong和Redlich-Kwong-Aspen状态方程和不同的混合规则对实验数据进行关联。使用状态方程RK-ASPEN和范德华混合规则(VdW)可获得最佳结果,然后将其用于计算在高压下非催化合成生物柴油通常所用的压力和温度下的相分布。压力。获得的数据表明相平衡对反应动力学的强烈影响。

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