HR: 0800h
AN: H31A-0369 [Abstracts]
TI: Effects of Contaminated Site Age on Dissolution Dynamics
AU: * Jawitz, J W
EM: jawitz@ufl.edu
AF: Soil and Water Science Department, University of Florida
2169 McCarty Hall, Gainesville, FL 32611
AB:
This work presents a streamtube-based analytical approach to evaluate reduction in groundwater contaminant flux resulting
from partial mass reduction in a nonaqueous phase liquid (NAPL) source zone. The reduction in contaminant flux, Rj,
discharged from the source zone is a remediation performance metric that has a direct effect on the fundamental drivers of
remediation: protection of human health risks and the environment. Spatial variability is described within a Lagrangian
framework where aquifer hydrodynamic heterogeneities are characterized using nonreactive travel time distributions, while
NAPL spatial distribution heterogeneity can be similarly described using reactive travel time distributions. The combined
statistics of these distributions are used to evaluate the relationship between reduction in contaminant mass, Rm, and Rj.
A portion of the contaminant mass in the source zone is assumed to be removed via in-situ flushing remediation, with the
initial and final conditions defined as steady-state natural-gradient groundwater flow through the contaminant source zone.
The combined effect of aquifer and NAPL heterogeneities are shown to be captured in a single parameter, reactive travel time
variability, that was determined to be the most important factor controlling the relationship between Rm and Rj. Increased
values of the following parameters are shown to result in more favorable contaminant elution dynamics (i.e., greater flux
reduction for a given reduction in mass): aquifer hydrodynamic heterogeneity, NAPL source zone heterogeneity, positive
correlation between travel time and NAPL content, and time since the contamination event. Less favorable elution behavior is
shown to result from negative correlations between travel time and NAPL content and rate-limited dissolution. The specific
emphasis of this presentation is on the effects of the length of time that has elapsed since the contamination event (site
age) on the dissolution dynamics.
DE: 1831 Groundwater quality
DE: 1832 Groundwater transport
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting