Literature DB >> 12901662

In-situ characterization of soil-water content using gas-phase partitioning tracer tests: field-scale evaluation.

Jason M Keller1, Mark L Brusseau.   

Abstract

Field-scale tests were performed to evaluate the effectiveness of the gas-phase partitioning tracer method for in-situ measurement of soil-water content. The tracer tests were conducted before and after a controlled infiltration event to evaluate performance at two water contents. Nonpartitioning (sulfur hexafluoride) and water-partitioning (difluoromethane) tracers were injected into the test zone, and their effluent breakthrough curves were analyzed using the method of moments to calculate retardation factors for difluoromethane. Soil-water contents estimated using the tracer data were compared to soil-water contents obtained independently using gravimetric core analysis, neutron scattering, and bore-hole ground penetrating radar. For the test conducted under drier soil conditions, the soil-water content estimated from the tracer test was identical to the independently measured values of 8.6% (equivalent to water saturation of 23%). For the test conducted under wetter soil conditions, the tracer test derived soil-water content was 81% of the independently measured values of 12.2% (equivalent to water saturation of 32%). The reduced efficacy at the higher soil-water content may reflectthe impact of advective and/ or diffusive mass transfer constraints on gas-phase transport. The results presented herein indicate that the partitioning tracer method is an effective technique to measure soil-water content at the field scale, especially for sites with moderate to low soil-water contents.

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Year:  2003        PMID: 12901662     DOI: 10.1021/es0340329

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  3 in total

1.  Characterization and Remediation of Chlorinated Volatile Organic Contaminants in the Vadose Zone: An Overview of Issues and Approaches.

Authors:  Mark L Brusseau; Kenneth C Carroll; Michael J Truex; David J Becker
Journal:  Vadose Zone J       Date:  2013-11-01       Impact factor: 3.289

2.  Using a Gas-Phase Tracer Test to Characterize the Impact of Landfill Gas Generation on Advective-Dispersive Transport of VOCs in the Vadose Zone.

Authors:  Gregg R Monger; Candice Morrison Duncan; Mark L Brusseau
Journal:  Water Air Soil Pollut       Date:  2014-12       Impact factor: 2.520

3.  Vapor-phase transport of trichloroethene in an intermediate-scale vadose-zone system: retention processes and tracer-based prediction.

Authors:  Molly S Costanza-Robinson; Tyson D Carlson; Mark L Brusseau
Journal:  J Contam Hydrol       Date:  2012-12-22       Impact factor: 3.188

  3 in total

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