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Some practical aspects of nonlinear frequency response method for investigation of adsorption equilibrium and kinetics

机译:非线性频率响应方法研究吸附平衡和动力学的一些实际问题

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摘要

Some practical aspects regarding application of the nonlinear frequency response (NFR) method for investigation of gas adsorption: choice of the optimal mass of the adsorbent, frequency range and input amplitude, are studied theoretically. For successful application of the NFR method, reliable experimental determination of the second-order frequency response function (FRF) is essential. In order to analyse the influence of the mass of the adsorbent, the frequency range and the input amplitude on the accuracy of the estimated the second-order FRF, frequency responses (FRs) of a batch adsorber with volume modulation are simulated and used for calculation of the second-order FRF. Furthermore, the procedure for estimation of the optimal mass of the adsorbent, required frequency range and input amplitude, based on simple preliminary step responses, is proposed. In order to demonstrate the procedure, responses of the batch adsorber for the step volume change are also simulated. The proposed procedure enables establishment of the efficient experimental plan for application of the NFR method.
机译:从理论上研究了有关非线性频率响应(NFR)方法用于气体吸附研究的一些实际问题:吸附剂的最佳质量,频率范围和输入振幅的选择。为了成功应用NFR方法,必须可靠地确定二阶频率响应函数(FRF)的实验值。为了分析吸附剂质量,频率范围和输入幅度对估计的二阶FRF精度的影响,模拟了具有体积调制的间歇式吸附器的频率响应(FR)并用于计算二阶FRF。此外,提出了基于简单的初步阶跃响应来估算吸附剂最佳质量,所需频率范围和输入振幅的程序。为了演示该程序,还模拟了批量吸附器对阶跃体积变化的响应。所提出的程序使得能够建立用于NFR方法的有效实验计划。

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