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Multiscale Simulation Starting at the Molecular Level for Adsorption Process Development 被引量:4
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作者 Hae-Jeong Son Young-il Lim 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2008年第1期108-111,共4页
This article presents a multiscale simulation approach starting at the molecular level for the adsorption process development. A grand canonical Monte Carlo method is used for the prediction of adsorption isotherms of... This article presents a multiscale simulation approach starting at the molecular level for the adsorption process development. A grand canonical Monte Carlo method is used for the prediction of adsorption isotherms of methanol on an activated carbon at the molecular level. The adsorption isotherms obtained in the linear region (or adsorption constant) are exploited as a model parameter required for the adsorption process simulation. The adsorption process model described by a set of partial differential equations (PDEs) is solved by using the conservation element and solution element method, which produces a fast and an accurate numerical solution to PDEs. The simulation results obtained from the adsorption constant estimated at the molecular level are in good agreement with the experimental results of the pulse response. The systematical multiscale simulation approach addressed in this study may be useful to accelerate the adsorption process development by reducing the number of experiments. 展开更多
关键词 activated carbon METHANOL adsorption isotherms molecular simulation grand canonical Monte Carlo (GCMC) method process simulation and development
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