首页> 外文期刊>Journal of Contaminant Hydrology >Nonideal transport of reactive contaminants in heterogeneous porous media: 7. distributed-domain model incorporating immiscible-liquid dissolution and rate-limited sorption/desorption
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Nonideal transport of reactive contaminants in heterogeneous porous media: 7. distributed-domain model incorporating immiscible-liquid dissolution and rate-limited sorption/desorption

机译:非均质多孔介质中反应性污染物的非理想迁移:7.包含不溶性液体溶解和速率受限的吸附/解吸的分布域模型

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The purpose of this work is to present a distributed-domain mathematical model incorporating the primary mass-transfer processes that mediate the transport of immiscible organic liquid constituents in water-saturated, locally heterogeneous porous media. Specifically, the impact of grain/pore-scale heterogeneity on immiscible-liquid dissolution and sorption/desorption is represented in the model by describing the system as comprising a continuous distribution of mass-transfer domains. With this conceptualization, the distributions of the initial dissolution rate coefficient and the sorption/ desorption rate coefficient are represented as probability density functions. Several sets of numerical experiments are conducted to examine the effects of heterogeneous dissolution and sorption/ desorption on contaminant transport and elution. Four scenarios with different combinations of uniform/heterogeneous rate-limited dissolution and uniform/heterogeneous rate-limited sorption/ desorption are evaluated. The results show that both heterogeneous rate-limited sorption/desorption and heterogeneous rate-limited dissolution can significantly increase the time or pore volumes required to elute immiscible-liquid constituents from a contaminated porous medium. However, sorption/desorption has minimal influence on elution behavior until essentially all of the immiscible liquid has been removed. For typical immiscible-liquid constituents that have relatively low sorption, the asymptotic elution tailing produced by heterogeneous rate-limited sorption/desorption begins at effluent concentrations that are several orders of magnitude below the initial steady-state concentrations associated with dissolution of the immiscible liquid. Conversely, the enhanced elution tailing associated with heterogeneous rate-limited dissolution begins at concentrations that are approximately one-tenth of the initial steady-state concentrations. Hence, dissolution may generally control elution behavior of immiscible-liquid constituents in cases wherein grain/pore-scale heterogeneity significantly influences both dissolution and sorption/desorption.
机译:这项工作的目的是提出一个结合了主要传质过程的分布域数学模型,该传质过程介导了在水饱和的局部非均质多孔介质中不混溶的有机液体成分的传输。具体地,通过描述该系统包括传质域的连续分布,在模型中表示了颗粒/孔尺度异质性对不混溶液体溶解和吸附/解吸的影响。通过这种概念化,将初始溶解速率系数和吸附/解吸速率系数的分布表示为概率密度函数。进行了几组数值实验,以检验异质溶解和吸附/解吸对污染物迁移和洗脱的影响。评估了具有均匀/非均质速率限制溶出度和均匀/非均质速率限制吸附/解吸的不同组合的四种方案。结果表明,异质限速吸附/解吸和异质限速溶解均可显着增加从受污染的多孔介质中洗脱不混溶液体成分所需的时间或孔体积。但是,吸附/解吸对洗脱行为的影响很小,直到基本上所有不混溶的液体都被除去为止。对于具有相对较低吸附率的典型不混溶液体成分,由异质限速吸附/解吸产生的渐进洗脱拖尾始于比与不溶混液体溶解相关的初始稳态浓度低几个数量级的流出液浓度。相反,与异质限速溶出有关的增强洗脱拖尾始于大约为初始稳态浓度的十分之一的浓度。因此,在颗粒/孔尺度异质性显着影响溶解和吸附/解吸的情况下,溶解通常可控制不混溶液体成分的洗脱行为。

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