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首页> 外文期刊>International journal of chemical engineering >CFD Simulation for Separation of Carbon Dioxide-Methane Mixture by Pressure Swing Adsorption
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CFD Simulation for Separation of Carbon Dioxide-Methane Mixture by Pressure Swing Adsorption

机译:CFD仿真用压力波动吸附分离二氧化碳 - 甲烷混合物

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A developing technology for gas separations is pressure swing adsorption, which has been proven to be more economical and energy efficient compared to other separation methods like cryogenic distillation and membrane separation. A pressure swing adsorption (PSA) column, with carbon dioxide-methane as feed mixture and 6-FDA based polyimides as the adsorbent, was modeled and simulated in this work. Ansys Fluent 12.1, along with supplementary user defined functions, was used to develop a 2D transient Eulerian laminar viscous flow model for the PSA column. The model was validated by comparing the simulated results with established analytical models for PSA. The developed numerical model was used to determine the carbon dioxide concentration in the column as a function of time based on different operating conditions. Effect of various operating parameters like pressure, temperature, and flow rate on the separation efficiency has been studied and reported. Optimization studies were carried out to obtain suitable operating conditions for the feed gases separation. Simulation studies were carried out to determine the separation length required for complete separation of the feed mixture corresponding to different inlet feed concentrations which were entering the column at a given flow rate.
机译:用于气体分离的开发技术是压力摆动吸附,而与其他分离方法相比,被证明是更经济的和节能,如低温蒸馏和膜分离。在这项工作中建模和模拟具有二氧化碳 - 二氧化碳 - 甲烷作为饲料混合物和6-FDA基的聚酰亚胺的压力摆动吸附(PSA)柱。 ANSYS流畅的12.1以及补充用户定义的功能,用于开发PSA列的2D瞬态欧拉层层粘性模型。通过将模拟结果与已建立的PSA分析模型进行比较来验证该模型。基于不同的操作条件,使用开发的数值模型以确定柱中的二氧化碳浓度。研究了各种操作参数,如压力,温度和流速对分离效率的影响。进行优化研究以获得适当的进料气体的操作条件。进行仿真研究以确定对应于在给定流速进入塔的不同入口进料浓度的进料混合物完全分离所需的分离长度。

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