Knowledge of solute transport in heterogeneous porous media is crucial to monitor contaminant fate and transport in soil and groundwater systems. In this study, we present new findings from experimental and mathematical analysis to improve current understanding of solute transport in structured heterogeneous porous media. Three saturated columns packed with different sand combinations were used to examine the breakthrough behavior of bromide, a conservative tracer. Experimental results showed that bromide had different breakthrough responses in the three types of sand combinations, indicating that heterogeneity in hydraulic conductivity has a significant effect on the solute transport in structured heterogeneous porous media. Simulations from analytical solutions of a two-domain solute transport model matched experimental breakthrough data well for all the experimental conditions tested. Experimental and model results show that under saturated flow conditions, advection dominates solute transport in both fast-flow and slow-flow domains. The sand with larger hydraulic conductivity provided a preferential flow path for solute transport (fast-flow domain) that dominates the mass transfer in the heterogeneous porous media. Importantly, the transport in the slow-flow domain and mass exchange between the domains also contribute to the flow and solute transport processes and thus must be considered when investigating contaminant transport in heterogeneous porous media.
Journal of environmental science and health. Part A, Toxic/hazardous substances & environmental engineering. 2014;49(3):338-43. doi: 10.1080/10934529.2014.846686 Q32.12025
Analytical and experimental analysis of solute transport in heterogeneous porous media
异质多孔介质中溶质运移的分析与实验研究 翻译改进
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DOI: 10.1080/10934529.2014.846686 PMID: 24279625
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Keywords:solute transport; heterogeneous porous media
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期刊名:Journal of environmental science and health part a-toxic/hazardous substances & environmental en
缩写:J ENVIRON SCI HEAL A
ISSN:1093-4529
e-ISSN:1532-4117
IF/分区:2.1/Q3