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变压吸附数学模型30年进展
引用本文:曾嵘,关建郁. 变压吸附数学模型30年进展[J]. 中国化学工程学报, 2002, 10(2): 228-235
作者姓名:曾嵘  关建郁
作者单位:ResearchInstituteofChemicalEngineering,SouthChinaUniversityofTechnology,Tuangzhou510640,China
基金项目:Supported by the National Natural Science Foundation of China (No. 29876011).
摘    要:The pressure swing adsorption (PSA) models discussed here are divided into three categories:partial differential equation model,electrical analogue model and neural network model.The partial differential equation model,including equilibrium and kinetic models,has provided an elementary viewpoint for PSA processes.Using the simplest equilibrium modes,some influential factors, such as pressurization with product,incomplete purge, beds with dead volume and heat effects,are discussed respectively.With several approximate assumptions i.e., concentration profile in adsorbent,“frozen” column,symmetry and heat effects of bed wall,the more complex kinetic models can be simplified to a certain degree at the expense of a limited application.It has also been found that the electrical analogue model has great fxexibility to handle more realistic PSA processes without any additional hypothesis.

关 键 词:气体分离 神经网络模型 数学模型 压力摆动吸附 微分方程模型 电模拟模型
修稿时间: 

Progress in Pressure Swing Adsorption Models During the Recent 30 Years
ZENG Rong,GUAN Jianyu. Progress in Pressure Swing Adsorption Models During the Recent 30 Years[J]. Chinese Journal of Chemical Engineering, 2002, 10(2): 228-235
Authors:ZENG Rong  GUAN Jianyu
Affiliation:Research Institute of Chemical Engineering, South China University of Technology, Guangzhou 510640, China
Abstract:The pressure swing adsorption (PSA) models discussed here are divided into three categories: partial differential equation model, electrical analogue model and neural network model. The partial differential equation model, including equilibrium and kinetic models, has provided an elementary viewpoint for PSA processes. Using the simplest equilibrium models, some influential factors, such as pressurization with product, incomplete purge, beds with dead volume and heat effects, are discussed respectively. With several approximate assumptions i.e., concentration profile in adsorbent, "frozen" column, symmetry and heat effects of bed wall, the more complex kinetic models can be simplified to a certain degree at the expense of a limited application. It has also been found that the electrical analogue model has great flexibility to handle more realistic PSA processes without any additional hypothesis.
Keywords:gas separation   pressure swing adsorption   mathematical model
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