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首页> 外文期刊>Transport in Porous Media >Ability of Single-Rate Models to Predict Solute Distribution Coefficients in Systems with Heterogeneous Sorption Kinetics
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Ability of Single-Rate Models to Predict Solute Distribution Coefficients in Systems with Heterogeneous Sorption Kinetics

机译:单速率模型在具有异质吸附动力学的系统中预测溶质分布系数的能力

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摘要

Several sorption nonequilibrium models have been developed to gain a better understanding of solute transport in porous media, among which are those that assume a single-rate behavior. In this study, two commonly used single-rate models were fitted to computer-simulated breakthrough data from hypothetical column experiments in which multirate sorption kinetics exist at the pore scale. The objective was to determine how the sorption distribution coefficient (K) predicted using these models depends on the conditions under which the data were obtained. Simulated cases covered a range of experimental conditions and involved compounds with different sorption characteristics and different degrees of sorption rate heterogeneity. Results revealed that, for a system with a multirate sorption behavior, the true K value is under-predicted if the parameter estimation is determined by curve fitting a single-rate model. The extent of deviation between the fitted and true K increases with the decrease in residence time and increase in sorption rate heterogeneity. Functional relationships were developed between the relative reduction in K and solute residence time. Analysis using the relationships developed suggests that a major potential cause of the previously reported discrepancy between batch- and column-determined K could be attributed to the use of single-rate models for parameter prediction.
机译:已经开发了几种吸附非平衡模型,以更好地理解多孔介质中的溶质运移,其中包括那些具有单一速率行为的模型。在这项研究中,将两个常用的单速率模型拟合到假设柱实验的计算机模拟突破数据中,在该数据中,孔隙速率处存在多速率吸附动力学。目的是确定使用这些模型预测的吸附分布系数(K)如何取决于获取数据的条件。模拟案例涵盖了一系列实验条件,涉及了具有不同吸附特性和不同程度的吸附速率异质性的化合物。结果表明,对于具有多速率吸附行为的系统,如果参数估计是通过曲线拟合单速率模型确定的,则真实K值将被低估。拟合K和真实K之间的偏差程度随停留时间的减少和吸附速率异质性的增加而增加。在K的相对减少和溶质停留时间之间建立了功能关系。使用建立的关系进行的分析表明,以前报道的批次和列确定的K之间差异的主要原因可能归因于使用单速率模型进行参数预测。

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