Transesterification of Biodiesel by Molecular Modeling and Simulation

Wimonmas Masomboon, Thanita Sonthisawate, Pirawat Thongjun, T. Srinophakun
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引用次数: 1

Abstract

Transesterification of alkyl esters plays an important role in biodiesel production, and a critical substance in this mechanism is triacylglycerol. A molecular modeling technique is used in this study to determine the geometrical parmeters of triacylglycerol via semi-empirical AM1, PM3 and ab initio HF/6-31G with the GaussView 03W and GAUSSAIN 03W pieces of software. The results obtained from these three models showed that the geometrical parameters of the triacylglycerol molecules are in the same range. Hence, these molecular models can be used in the simulation of the transesterification mechanism. There are six possible mechanisms for the biodiesel transesterifications. Each type of mechanism contains six reaction steps. Using the B3LYP/6-31G//PM3 method, the transesterification mechanism was simulated to determine the best possible pathway.
生物柴油酯交换反应的分子模拟与模拟
烷基酯酯的酯交换反应在生物柴油生产中起着重要的作用,而其中的关键物质是三酰基甘油。本研究采用分子建模技术,利用半经验的AM1、PM3和从头算HF/6-31G,利用GaussView 03W和GAUSSAIN 03W软件确定了三酰甘油的几何参数。三种模型的计算结果表明,三酰甘油分子的几何参数在同一范围内。因此,这些分子模型可用于酯交换反应机理的模拟。生物柴油酯交换反应有六种可能的机制。每种反应机制都包含六个反应步骤。采用B3LYP/6-31G//PM3方法模拟酯交换反应机理,确定最佳途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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