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Biodiesel Production from Jatropha oaxacana Oil by Reactive Vacuum Distillation: Optimization by Response Surface Methodology

机译:通过反应性真空蒸馏从麻醉oaxacana油产生的生物柴油生产:响应面法优化

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The application of Response Surface Methodology (RSM) and Central Composite Rotatable Design (CCRD) for modeling and optimization of the influence of three operating variables (mass of catalyst, MeOH/Oil molar ratio, and temperature) on performance of Reactive Vacuum Distillation (RVD) to increase biodiesel yield is discussed in this work. Changes in RVD performance during biodiesel production were evaluated by using RSM and CCRD.A mathematical equation to model biodiesel production by RVD was derived from computer simulation programming by applying a least squares method using MATLAB? v. R2016a. Predicted values were found to be in good agreement with experimental values (with R2 = 0.934). Optimal conditions for the production of ethyl esters were: Temperature: 31.2 °C, MeOH/Oil molar ratio: 5.65:1, and mass of catalyst: 0.1344 g.
机译:响应面方法(RSM)和中央复合旋转设计(CCRD)的应用建模与优化三种操作变量(催化剂,MeOH /摩尔比和温度)对反应性真空蒸馏性能的影响及优化(RVD )提高生物柴油产量在这项工作中讨论。通过使用RSM和CCRD.A数学方程来评估生物柴油生产过程中的RVD性能的变化,通过使用MATLAB应用最小二乘法来源,通过rvd来评估模型生物柴油生产。 v。r2016a。发现预测值与实验值吻合良好(R2 = 0.934)。乙酯生产的最佳条件为:温度:31.2℃,MeOH /油摩尔比:5.65:1和催化剂质量:0.1344g。

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