HR: 1340h
AN: H53E-1455 [Abstracts]
TI: Synchrotron X-Ray Microtomography and Interfacial Partitioning Tracer Test Measurements of Napl-Water Interfacial Areas
AU: * Brusseau, M L
EM: brusseau@ag.arizona.edu
AF: University, 429 Shantz, Tucson, AZ 85721, United States
AU: Janousek, H
EM: hilaryjanousek@yahoo.com
AF: University, 429 Shantz, Tucson, AZ 85721, United States
AU: Murao, A
EM: muraoa@gmail.com
AF: University, 429 Shantz, Tucson, AZ 85721, United States
AU: Schnaar, G
EM: gschnaar@gmail.com
AF: University, 429 Shantz, Tucson, AZ 85721, United States
AB:
Interfacial areas between an immiscible organic liquid (NAPL) and water were measured for two natural porous
media using two methods, aqueous-phase interfacial partitioning tracer tests and synchrotron X-ray
microtomography. The interfacial areas measured with the tracer tests were similar to previously reported values
obtained with the method. The values were, however, significantly larger than those obtained from
microtomography. Analysis of microtomography data collected before and after introduction of the interfacial
tracer solution indicated that the surfactant tracer had minimal impact on fluid-phase configuration and interfacial
areas under conditions associated with typical laboratory application. The disparity between the tracer-test and
microtomography values is attributed primarily to the inability of the microtomography method to resolve interfacial
area associated with microscopic surface heterogeneity. This hypothesis is consistent with results recently
reported for a comparison of microtomographic analysis and interfacial tracer tests conducted for an air-water
system. The tracer-test method provides a measure of effective, total (capillary and film) interfacial area, whereas
microtomography can be used to determine separately both capillary-associated and film-associated interfacial
areas. Both methods appear to provide useful information for given applications. A key to their effective use is
recognizing the specific nature of the information provided by each, as well as associated limitations.
DE: 1831 Groundwater quality
DE: 1832 Groundwater transport
SC: Hydrology [H]
MN: 2007 Fall Meeting