Title of article
Electrokinetic ion transport through unsaturated soil: : 2. Application to a heterogeneous field site
Author/Authors
Earl D. Mattson، نويسنده , , Robert S. Bowman، نويسنده , , Eric R. Lindgren، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2002
Pages
20
From page
121
To page
140
Abstract
Results of a field demonstration of electrokinetic transport of acetate through an unsaturated heterogeneous soil are compared to numerical modeling predictions. The numerical model was based on the groundwater flow and transport codes MODFLOW and MT3D modified to account for electrically induced ion transport. The 6-month field demonstration was conducted in an unsaturated layered soil profile where the soil moisture content ranged from 4% to 28% (m3 m−3). Specially designed ceramic-cased electrodes maintained a steady-state moisture content and electric potential field between the electrodes during the field demonstration. Acetate, a byproduct of acetic acid neutralization of the cathode electrolysis reaction, was transported from the cathode to the anode by electromigration. Field demonstration results indicated preferential transport of acetate through soil layers exhibiting higher moisture content/electrical conductivity. These field transport results agree with theoretical predictions that electromigration velocity is proportional to a power function of the effective moisture content. A numerical model using a homogeneous moisture content/electrical conductivity domain did not adequately predict the acetate field results. Numerical model predictions using a three-layer electrical conductivity/moisture content profile agreed qualitatively with the observed acetate distribution. These results suggest that field heterogeneities must be incorporated into electrokinetic models to predict ion transport at the field-scale.
Keywords
Heterogeneous field site , Elecrokinetic ion transport , unsaturated soil
Journal title
Journal of Contaminant Hydrology
Serial Year
2002
Journal title
Journal of Contaminant Hydrology
Record number
693270
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