固定床电化学反应器传质行为的理论分析:Akbari-Ganji方法

P. Jeyabarathi, L. Rajendran, M. Lyons, M. Abukhaled
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引用次数: 2

摘要

讨论了固定床电化学反应器中板状、圆柱形和球形填充多孔催化颗粒的理论模型。这些粒子在吸热或放热反应中具有内部质量浓度和温度梯度。该模型基于一个非线性反应扩散方程,该方程包含一个非线性项,其固有反应速率与温度呈指数关系。采用Akbari-Ganji法求解非线性方程,得到多孔催化剂颗粒的浓度。对于所有的Thiele模量、活化能和热反应值,还报道了一个简单的、封闭形式的板、圆柱和球面几何有效因子的解析表达式。与一种可靠的数值方法的结果相一致,表明它们的近似解具有良好的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Analysis of Mass Transfer Behavior in Fixed-Bed Electrochemical Reactors: Akbari-Ganji’s Method
The theoretical model for a packed porous catalytic particle of the slab, cylindrical, and spherical geometries shape in fixed-bed electrochemical reactors is discussed. These particles have internal mass concentration and temperature gradients in endothermic or exothermic reactions. The model is based on a nonlinear reaction–diffusion equation containing a nonlinear term with an exponential relationship between intrinsic reaction rate and temperature. The porous catalyst particle’s concentration is obtained by solving the nonlinear equation using Akbari-Ganji’s method. A simple and closed-form analytical expression of the effectiveness factor for slab, cylindrical, and spherical geometries was also reported for all values of Thiele modulus, activation energy, and heat reaction. The accordance with results of a reliable numerical method shows the good accuracy that their approximate solution yields.
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CiteScore
6.30
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