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Mathematically modeling fixed-bed adsorption in aqueous systems

机译:水系统中固定床吸附的数学模型

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摘要

Adsorption is one of the widely used processes in the chemical industry environmental application. As compared to mathematical models proposed to describe batch adsorption in terms of isotherm and kinetic behavior, insufficient models are available to describe and predict fixed-bed or column adsorption, though the latter one is the main option in practical application. The present review first provides a brief summary on basic concepts and mathematic models to describe the mass transfer and isotherm behavior of batch adsorption, which dominate the column adsorption behavior in nature. Afterwards, the widely used models developed to predict the breakthrough curve, i.e., the general rate models, linear driving force (LDF) model, wave propagation theory model, constant pattern model, Clark model, Thomas model, Bohart-Adams model, Yoon-Nelson model, Wang model, Wolborska model, and modified dose-response model, are briefly introduced from the mechanism and mathematical viewpoint. Their basic characteristics, including the advantages and inherit shortcomings, are also discussed. This review could help those interested in column adsorption to reasonably choose or develop an accurate and convenient model for their study and practical application.
机译:吸附是化学工业环境应用中广泛使用的工艺之一。与提议用等温线和动力学行为描述批量吸附的数学模型相比,没有足够的模型来描述和预测固定床或色谱柱吸附,尽管后者是实际应用中的主要选择。本综述首先简要介绍了基本概念和数学模型,以描述批吸附的传质和等温线行为,这些行为和支配性质实际上是色谱柱吸附行为的主要部分。之后,开发了广泛使用的模型来预测突破曲线,即一般速率模型,线性驱动力(LDF)模型,波传播理论模型,恒定模式模型,Clark模型,Thomas模型,Bohart-Adams模型,Yoon-从机理和数学角度简要介绍了Nelson模型,Wang模型,Wolborska模型和修正的剂量反应模型。还讨论了它们的基本特征,包括优点和继承缺点。这篇综述可以帮助那些对色谱柱吸附感兴趣的人合理地选择或开发一个准确,方便的模型,以供他们的研究和实际应用。

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  • 来源
    《Journal of Zhejiang University SCIENCE A》 |2013年第3期|155-176|共22页
  • 作者单位

    State Key Laboratory of Pollution Control and Resource Reuse School of the Environment Nanjing University">(13383);

    State Key Laboratory of Pollution Control and Resource Reuse School of the Environment Nanjing University">(13383);

    State Key Laboratory of Pollution Control and Resource Reuse School of the Environment Nanjing University">(13383);

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  • 正文语种 eng
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