柱装置中化学和传质过程建模与模拟的新方法

Q3 Chemical Engineering
C. Boyadjiev, B. Boyadjiev
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引用次数: 9

摘要

在速度分布和相间边界未知的情况下,经典传质理论不适用于模拟柱装置中化学、吸收、吸附和催化过程的传质。这些过程的建模与新型对流扩散模型(用于定性分析)和平均浓度模型(用于定量分析)的创建有关,其中表面反应被等效体积反应取代,而速度和浓度分布被平均速度和浓度取代。平均浓度模型中速度的径向不均匀性的影响是由模型参数引入的,这些参数必须通过实验获得。在柱装置中不同过程的情况下,得到了新的对流扩散和平均浓度模型:简单和复杂的化学反应、物理和化学吸收、物理和化学品吸附、多相催化过程(物理和化学吸附机理)。这些模型在专著Chr中介绍。Boyadjiev,M.Doichinova,B.Boyadjieve,P.Popova-Krumova,“柱装置过程建模”(第二版),Springer Verlag,柏林-海德堡,2018。考虑了两种流体动力学情况,当径向速度分量等于零时,在轴向修改轴向位置分量的径向不均匀性的情况下,以及当径向速度成分不等于零时。对于混凝土过程和柱,使用柱端平均浓度的实验数据,可以获得与速度的径向不均匀性相关的模型参数。这些参数值允许使用平均浓度模型对不同过程进行建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Approach to Modeling and Simulation of Chemical and Mass Transfer Processes in Column Apparatuses
The classical mass transfer theory is not applicable for modeling the mass transfer of chemical, absorption, adsorption and catalytic processes in column apparatuses, where the velocity distributions and interphase boundaries are unknown. The modeling of these processes is related with the creation of new type of convection-diffusion models (for qualitative analysis) and average-concentration models (for quantitative analysis), where the surface reactions are replaced by equivalent volume reaction, while the velocity and concentration distributions are replaced by average velocity and concentrations. The effect of the radial non-uniformity of the velocity in the average-concentration models is introduced by model parameters, which must be obtained experimentally. The new convection-diffusion and average-concentration models are obtained in the cases of different processes in column apparatuses: simple and complicated chemical reactions, physical and chemical absorption, physical and chemical adsorption, heterogeneous catalytic processes (physical and chemical adsorption mechanism). These models are presented in the monograph Chr. Boyadjiev, M. Doichinova, B. Boyadjiev, P. Popova-Krumova, “Modeling of Column Apparatus Processes” (Second edition), Springer- Verlag, Berlin Heidelberg, 2018. Two hydrodynamic situations are considered, when the radial velocity component is equal to zero, in the cases of an axial modification of the radial non-uniformity of the axial velocity component and when the radial velocity component is not equal to zero. The use of experimental data, for the average concentrations at the column end, for a concrete process and column, permits to obtain the model parameters, related with the radial non-uniformity of the velocity. These parameter values permit to use the averageconcentration models for modeling of different processes.
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来源期刊
Recent Innovations in Chemical Engineering
Recent Innovations in Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
2.10
自引率
0.00%
发文量
20
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