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首页> 外文期刊>Chemical Engineering Science >Nonlinear frequency response method for estimation of single solute adsorption isotherms. Part I. Theoretical basis and simulations
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Nonlinear frequency response method for estimation of single solute adsorption isotherms. Part I. Theoretical basis and simulations

机译:用于估计单个溶质吸附等温线的非线性频率响应方法。第一部分:理论基础和模拟

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摘要

A method for determination of single solute adsorption isotherms based on the analysis of the nonlinear frequency response (FR) of a chromatographic column is developed theoretically. In order to demonstrate this method, the FR of a chromatographic column is simulated for the periodical inlet concentration changes (sine waveform) around several steady-state concentrations. The frequency response functions (FRFs) up to the third order are calculated from the inlet and outlet concentration changes, which are analysed using the fast Fourier transform. Afterwards the coefficients of an adsorption isotherm are estimated from the low-frequency asymptotes of the FRFs and their derivatives. The obtained coefficients compare well with those used for simulations. Also discussed are some aspects that might affect the accuracy of the suggested method when it is applied to the analysis of experimental data, e.g. influence of velocity fluctuations, noise and size of the analysed data set. (c) 2007 Elsevier Ltd. All rights reserved.
机译:理论上开发了一种基于色谱柱非线性频率响应(FR)分析的单溶质吸附等温线测定方法。为了证明该方法,针对几个稳态浓度附近的周期性入口浓度变化(正弦波形)模拟了色谱柱的FR。根据入口和出口浓度变化计算出最高三阶的频率响应函数(FRF),然后使用快速傅立叶变换对其进行分析。然后,从FRF及其衍生物的低频渐近线估计吸附等温线的系数。所获得的系数与用于仿真的系数比较良好。还讨论了某些方面,当将其应用于实验数据分析时,可能会影响建议方法的准确性。速度波动,噪声和分析数据集大小的影响。 (c)2007 Elsevier Ltd.保留所有权利。

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