用于二氧化碳电摆动吸附的整体式蜂窝吸附器的三维模型

Ivaná Đukic, Marija Ječmenica Dučić, N. Nikačević, M. Petkovska
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引用次数: 0

摘要

这项工作的目标是开发一个电动摇摆吸附过程的3D模型,用于从发电厂的废气中捕获二氧化碳。针对单体通道,建立了复合材料蜂窝整体吸附器的详细三维模型,可用于模拟和表示不同的物理特性:速度、浓度和温度。该模型的优点在于,所有物理特性和结果都可以在3D域中可视化呈现。COMSOL Multiphysics软件用于求解偏微分方程和模拟吸附和电热解吸过程。本文给出了一些仿真结果。从3D模拟中获得的结果将用于将吸附器模型简化为1D模型,由于其复杂性和计算需求,1D模型将用于整个ESA循环的建模和优化。基于一维模型的模拟和优化运行将在g-Proms软件中进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D model of a Monolithic Honeycomb Adsorber for Electric Swing Adsorption for Carbon Dioxide Capture
The goal of this work was to develop a 3D model of Electric Swing Adsorption pro- cess for carbon dioxide capture from effluent gasses from power plants. Detailed 3D model of the composite honeycomb monolithic adsorber was developed for a sin- gle monolith channel and can be used to simulate and represent different physical properties: velocity, concentration and temperature. The advantage of this model is the fact that all physical properties and results can be presented visually in the 3D domain. COMSOL Multiphysics software was used for solving partial differential equations and simulations of adsorption and electrothermal desorption processes. Some simulation results are presented in this work. The results obtained from 3D simulations will be used for the adsorber model reduction to the 1D model which will be used for modeling and optimization of the whole ESA cycle due to its sim- plicity and computational demands. Simulation and optimization runs based on the 1D model will be performed in g-Proms software.
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