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Correction procedures for extra-column effects in dynamic column breakthrough experiments

机译:动态柱突破实验中柱外效应的校正程序

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Dynamic column breakthrough experiments, routinely used to complement adsorption and diffusion studies at the particle scale, constitute an important step in the development and verification of dynamic models for simulation of adsorption processes. Various parts of the experimental setup contribute to the retention time and band broadening of the experimental breakthrough curve. However, the effect of the extra-column contributions have to be properly accounted for in order to compare the experimental results with theoretical calculations. A common practice is to measure a blank response under the same flow rate, pressure and temperature conditions as the actual experiment by simply bypassing the adsorption column with a tube (or a connector) of negligible volume. This blank response is then subtracted point-by-point from the composite response (i.e., including the adsorption column) to account for extra-column contributions. The underlying assumption here is that blank and column responses are linearly additive, both in terms of mean residence time and band broadening. It is shown that this method of correction can, under certain operating conditions, lead to erroneous results. An alternative procedure based on linear regression is introduced and the improvements achieved by this method are illustrated using simulation examples.
机译:动态色谱柱突破实验通常用于补充颗粒级的吸附和扩散研究,是开发和验证用于模拟吸附过程的动力学模型的重要一步。实验装置的各个部分有助于实验突破曲线的保留时间和谱带展宽。但是,为了将实验结果与理论计算进行比较,必须适当考虑柱外贡献的影响。通常的做法是,在与实际实验相同的流速,压力和温度条件下,通过用体积可忽略不计的管(或连接器)简单地绕过吸附柱来测量空白响应。然后从复合响应(即包括吸附塔)中逐点减去该空白响应,以说明柱外的影响。这里的基本假设是,就平均停留时间和谱带展宽而言,空白和色谱柱响应是线性加和的。结果表明,这种校正方法在某些操作条件下会导致错误的结果。介绍了一种基于线性回归的替代方法,并通过仿真示例说明了该方法实现的改进。

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