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Kinetics of esterification of methanol and acetic acid with mineral homogeneous acid catalyst 被引量:1

矿物均相酸催化剂催化甲醇和乙酸酯化反应动力学(英文)
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摘要 In this work, esterification of acetic acid and methanol to synthesize methyl acetate in a batch stirred reactor is studied in the temperature range of 305.15–333.15 K. Sulfuric acid is used as the homogeneous catalyst with concentrations ranging from 0.0633 mol·L-1to 0.3268 mol·L-1. The feed molar ratio of acetic acid to methanol is varied from 1:1 to 1:4. The influences of temperature, catalyst concentration and reactant concentration on the reaction rate are investigated. A second order kinetic rate equation is used to correlate the experimental data. The forward and backward reaction rate constants and activation energies are determined from the Arrhenius plot.The developed kinetic model is compared with the models in literature. The developed kinetic equation is useful for the simulation of reactive distillation column for the synthesis of methyl acetate. In this work, esterification of acetic acid and methanol to synthesize methyl acetate in a batch stirred reactor is studied in the temperature range of 305.15–333.15 K. Sulfuric acid is used as the homogeneous catalyst with concentrations ranging from 0.0633 mol·L-1to 0.3268 mol·L-1. The feed molar ratio of acetic acid to methanol is varied from 1:1 to 1:4. The influences of temperature, catalyst concentration and reactant concentration on the reaction rate are investigated. A second order kinetic rate equation is used to correlate the experimental data. The forward and backward reaction rate constants and activation energies are determined from the Arrhenius plot.The developed kinetic model is compared with the models in literature. The developed kinetic equation is useful for the simulation of reactive distillation column for the synthesis of methyl acetate.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第1期100-105,共6页 中国化学工程学报(英文版)
关键词 ESTERIFICATION Homogeneous catalyst Kinetic rate-equation Simulation 反应动力学 乙酸甲酯 酯化合成 甲醇 酸催化剂 反应速率常数 矿物 温度范围
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  • 1Xu Z P,Can J Chem Eng,1996年,74卷,8期,493页

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