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Misinterpretations in the Modeling of Contaminant Desorption from Environmental Solids When Equilibrium Conditions Are Not Fully Understood

机译:当没有完全理解平衡条件时,从环境固体中污染物脱附模型中的误解

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For systems of sediments, soils, and subsurface solids that involve aggregations of fine-grained materials and zones of immobile water, the desorption of organic contaminants is often controlled by aqueous diffusion within the immobile water of a sorption domain. Accurate modeling in such systems requires not only a rational conceptual model for rates, but also good understanding of the equilibrium condition and of the initial conditions that existed at the onset of desorption. In this work, numerical modeling was used to obtain synthetic experimental results with a hypothetical (yet realistic) system in which rates were controlled by sorption-retarded diffusion. Batch sorption and desorption experiments are simulated at a variety of time scales and the results interpreted through modeling. Results show that even 50 days can be far too short to obtain equilibrium isotherms, and that the associated isotherm interpretations cause incorrect kinetic interpretations and predictions. In particular, 4-week batch sorption/desorption rate experiments could be well described using any of the presumed isotherms, but these results lead to greatly overpredicted rates of desorption under longer term conditions more relevant to field remediation. Additional results were also generated to quantitatively illustrate how misunderstanding of sorption equilibrium and diffusion rate will lead to incorrect suppositions of desorption hysteresis.
机译:对于涉及细颗粒物质和固定水区域聚集的沉积物,土壤和地下固体系统,有机污染物的解吸通常受吸附域固定水内的水扩散控制。在这样的系统中进行精确建模不仅需要合理的速率概念模型,而且还需要对解吸开始时存在的平衡条件和初始条件有很好的理解。在这项工作中,数值模型被用来获得一个假设的(至今仍是现实的)系统的合成实验结果,在该系统中,速率是通过吸附延迟扩散来控制的。在各种时间范围内模拟批量吸附和解吸实验,并通过建模解释结果。结果表明,即使50天也可能太短而无法获得平衡等温线,并且相关的等温线解释会导致错误的动力学解释和预测。特别是,使用任何假定的等温线都可以很好地描述4周的批次吸附/解吸速率实验,但是这些结果导致在与田间修复更相关的长期条件下,解吸速率大大超出了预期。还产生了其他结果,定量地说明了对吸附平衡和扩散速率的误解将如何导致错误的解吸滞后假设。

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