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Production of biodiesel from castor oil using sub and supercritical ethanol: Effect of sodium hydroxide on the ethyl ester production

机译:使用次临界和超临界乙醇从蓖麻油生产生物柴油:氢氧化钠对乙酯生产的影响

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The biodiesel obtained by the reaction of castor oil with ethanol under sub and supercritical condition (200-350 °C at endogenous pressure) using small amounts of sodium hydroxide (NaOH) as catalyst was studied. The influence of the operating variables such as temperature, reaction time, ethanohoil molar ratio and catalyst concentration (when used) on the reaction yield was evaluated using a statistical design of experiments along with the surface response methodology for both the catalytic and non-catalytic processes. It was observed that using only 0.1% wt of NaOH for the catalytic process, amount smaller than the necessary to neutralize the castor oil, it was possible to obtain high yields. The maximum ethyl ester yield reached was 98.9% for the catalytic process and 56.2% for the non-catalytic process. Additionally, the reaction kinetic was determined and it was found that a pseudo first order model represents the overall reaction. Activation energies were calculated from the Arrhenius equation for both processes.
机译:研究了蓖麻油与乙醇在亚临界和超临界条件下(内生压力为200-350°C),使用少量氢氧化钠(NaOH)催化反应制得的生物柴油。使用统计设计的实验以及用于催化和非催化过程的表面响应方法,评估了操作变量(例如温度,反应时间,乙醇油摩尔比和催化剂浓度(使用时))对反应收率的影响。 。观察到,仅使用0.1重量%的NaOH进行催化过程,其量小于中和蓖麻油所必需的量,就有可能获得高收率。催化过程达到的最大乙酯收率为98.9%,非催化过程达到56.2%。此外,确定了反应动力学,发现伪一级模型代表了整个反应。从两个过程的阿伦尼乌斯方程计算活化能。

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