TO ISSUE INCREASING THE EFFICIENCY OF THE MASS TRANSFER PROCESS IN AGITATORS

Gasim Mammadov, Isgandar Aliyev Gasim Mammadov, Isgandar Aliyev
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Abstract

This study investigates the impact of impeller design on the rate of esterification reaction in a batch reactor. Different impeller designs were tested and compared, including Backswept impeller, C-shaped, Double Blade impeller, and Pitched impeller. The results showed that the choice of impeller design has a significant effect on the rate of esterification reaction, with the Backswept impeller proving to be the most effective. In this work, it is aimed to investigate the esterification of acetic acid and methanol in a batch stirred reactor for the synthesis of methyl acetate. The temperature range of 303.15 K is examined, with sulphuric acid used as the homogeneous catalyst in varying concentrations of 0.0633 mol·L1 to 0.3268 mol·L-1. The feed molar ratio of acetic acid to methanol also varied from 1:1 to 1:4 to observe its influence on the reaction rate. The research delves into the effects of temperature, catalyst concentration, and reactant concentration on the reaction rate. The experimental data is correlated using a second-order kinetic rate equation, and the forward and backward reaction rate constants and activation energies are determined from the Arrhenius plot. The developed kinetic model is compared with previous models in literature. In order to find the most effective impeller for esterification reaction, diameter of impellers was accepted same in the constant volume and dimension of batch reactor. The obtained kinetic equation proves useful for the simulation of a reactive distillation column for the synthesis of methyl acetate. Keywords: the batch reactor, impeller, esterification, effectivity, mass transfer, mixing, mechanical mixers, Logarithmic Shear Rate, Eddy Diffusivity.
提高搅拌器传质过程的效率
本研究探讨了叶轮设计对间歇式反应器中酯化反应速率的影响。对不同的叶轮设计进行了测试和比较,包括后倾式叶轮、C 形叶轮、双叶片叶轮和倾斜式叶轮。结果表明,叶轮设计的选择对酯化反应的速率有显著影响,而后掠叶轮被证明是最有效的。 这项工作旨在研究乙酸和甲醇在间歇搅拌反应器中的酯化反应,以合成乙酸甲酯。研究的温度范围为 303.15 K,硫酸作为均相催化剂的浓度为 0.0633 mol-L1 至 0.3268 mol-L-1。醋酸与甲醇的进料摩尔比也从 1:1 到 1:4 不等,以观察其对反应速率的影响。研究深入探讨了温度、催化剂浓度和反应物浓度对反应速率的影响。使用二阶动力学速率方程对实验数据进行关联,并根据阿伦尼乌斯图确定正反反应速率常数和活化能。所建立的动力学模型与以往文献中的模型进行了比较。为了找到酯化反应最有效的叶轮,在间歇式反应器的体积和尺寸不变的情况下,叶轮的直径被认为是相同的。所获得的动力学方程可用于模拟合成醋酸甲酯的反应蒸馏塔。 关键词:间歇式反应器、叶轮、酯化、效应、传质、混合、机械搅拌器、对数剪切速率、涡流扩散率。
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