Kinetic Study of Ethanol Dehydration to Ethylene and Diethyl Ether in Catalytic Packed Bed Reactor Over ZSM-5 Catalyst

Narin A. Aali, G. Hadi
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Abstract

Dehydration of ethanol is one of the crucial processes as it is considered a green route for producing ethylene and diethyl ether and is promoted mainly by economics and environmental appeal. In this study, different kinetic models for ethanol dehydration to ethylene and diethyl ether were developed based on two parallel reactions and different mechanisms. Additionally, a mathematical model of a packed bed reactor was also suggested based on a set of hypotheses for investigating the axial concentration profile of ethanol. Kinetic parameters of each model were estimated by nonlinear regression analysis of obtained experimental data reported in the literature at temperatures between (523.15 – 623.15) K. The analysis showed that the single-site model I for ethylene formation and dual-site (LHHW) model for diethyl ether formation gave the best representation of experimental data compared to other proposed models. Kinetic parameters were found to be in good accordance with the Arrhenius equation with acceptable straight-line plots, and they have been satisfactorily correlated as functions of reaction temperature. The mathematical model presented a smooth linear change in ethanol concentration at various temperatures. The AARD% obtained for each chosen ethylene and diethyl ether formation model were about (1.4502-2.5978) and (0.9135-2.9394), respectively.
ZSM-5催化剂催化填料床反应器中乙醇脱水制乙烯和乙醚的动力学研究
乙醇脱水是一个关键的过程,因为它被认为是生产乙烯和乙醚的绿色路线,主要是由于经济和环境的吸引力。本研究基于两个平行反应和不同机理,建立了乙醇脱水制乙烯和乙醚的不同动力学模型。此外,在研究乙醇轴向浓度分布的假设基础上,提出了填充床反应器的数学模型。在(523.15 ~ 623.15)k的温度范围内,通过对文献报道的实验数据进行非线性回归分析,估计了每个模型的动力学参数。分析表明,与其他模型相比,乙烯生成的单位点模型I和乙醚生成的双位点(LHHW)模型能最好地代表实验数据。动力学参数与Arrhenius方程符合良好的直线图,且与反应温度的关系令人满意。数学模型显示乙醇浓度在不同温度下呈光滑的线性变化。乙烯和乙醚生成模型的AARD%分别为(1.4502 ~ 2.5978)和(0.9135 ~ 2.9394)。
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