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首页> 外文期刊>AIChE Journal >Master Curves for Mass Transfer in Bidisperse Adsorbents for Pressure-Swing and Volume-Swing Frequency Response Methods
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Master Curves for Mass Transfer in Bidisperse Adsorbents for Pressure-Swing and Volume-Swing Frequency Response Methods

机译:压力波动和体积波动频率响应方法中双分散吸附剂传质的主曲线

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摘要

A general model has been developed for pressure-swing and volume-swing frequency response methods with analytical solutions derived to analyze various mass transfer resistances in biporous adsorbents. The model can consider a combination of distributed mass transfer resistances acting independently or in series including macropore diffusion, micropore diffusion, and a surface barrier resistance at the entrance of micropores. Heat effects are included for nonisothermal systems. Temperature variations are shown to be less for pressure-swing compared with volume-swing systems. The general model is developed in such a way that information extracted from it is independent of whether a system is batch volume swing or flow-through pressure swing. Simulation results demonstrate that mass transfer mechanisms can be easily discriminated by the master curves. Isothermal models exhibit one-step curves, whereas non-isothermal effects are represented by two-step curves. Examples are given to demonstrate the use of the master curves to describe experimental data
机译:已经建立了压力波动和体积波动频率响应方法的通用模型,该模型具有分析溶液,可以分析双孔吸附剂中的各种传质阻力。该模型可以考虑独立或串联作用的分布传质阻力的组合,包括大孔扩散,微孔扩散和微孔入口处的表面阻挡阻力。非等温系统包括热效应。与体积摆动系统相比,压力摆动的温度变化较小。通用模型的开发方式是,从通用模型中提取的信息与系统是批量流量波动还是流通压力波动无关。仿真结果表明,传质机理可以很容易地通过主曲线来区分。等温模型表现出一步曲线,而非等温效应则表现为两步曲线。举例说明了如何使用主曲线描述实验数据

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