生物柴油酯交换过程动力学研究

F. Trejo-Zárraga, Felipe de Jesús Hernández-Loyo, J. Chavarria-Hernandez, Rogelio Sotelo-Boyás
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引用次数: 23

摘要

生物柴油是一种可再生燃料,主要通过油脂的酯交换反应生产,与化石燃料相比,它可以用作运输燃料、溶剂和发电,具有减少CO 2、SO 2、CO和HC排放的潜力。本文通过对已有的动力学模型进行综述,研究了不同酯交换技术下甘油三酯的动力学行为,旨在建立反应机理和主要变量效应的趋势,并进一步优化化学过程。对各种类型的酯交换反应进行动力学研究,即均相、非均相、酶促和超临界酯交换反应。因此,通过描述它们的发展方式以及如何将它们用于过程模拟和优化,对动力学模型进行了回顾。本章分为研究现状,分析和综合研究成果,以及进一步优化生物柴油生产过程的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetics of Transesterification Processes for Biodiesel Production
Biodiesel is a renewable fuel mainly produced by transesterification of oils and fats that can be used as a transportation fuel, solvent and for energy generation with the potential to reduce the emissions of CO 2 , SO 2 , CO and HC, compared to fossil fuels. In this work, the kinetic behavior of triglycerides by different transesterification technologies is investigated through a critical review of the kinetic models reported in the study with the aim to establish a trend of the reaction mechanisms and the main variable effects and to further optimize the chemical process. The study of the transesterification reaction kinetics is performed for every type of transesterification, that is, homogeneous, heterogeneous, enzymatic and supercritical. The kinetic models are thus reviewed by describing the way they have evolved and how they can be used for process simulation and optimization. This chapter is divided in a study of the state of the art, an analysis and synthesis of research results, and an application for further optimization of the biodiesel production process.
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