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J Contam Hydrol ; 51(1-2): 83-95, 2001 Sep.
Article in English | MEDLINE | ID: mdl-11530928

ABSTRACT

At the field scale, the biodegradation rate is usually estimated from analytical solutions to single species transport with first-order reactions, using measured data as input. Because many contaminants, e.g., chlorinated solvents, are degraded in a sequential pattern, with degradation products further reacting to produce new species, it is of great interest to quantify the transformation rate of every reaction. The conventional inverse solutions for identifying the transformation rates are limited to single species problems. In the present study, we propose a successive optimization approach to identify the biodegradation rate for each species by using a previously developed analytical solution to multi-species first-order reactive transport using data obtained at the field scale. By specifying a link between analytical solutions to sequentially reactive transport problems and optimization methods and assuming constant transport parameters (velocity, dispersivities, and retardation factors), the first-order transformation rates are optimized successively from parent species to its daughter species.


Subject(s)
Models, Theoretical , Soil Pollutants/metabolism , Water Pollutants, Chemical/metabolism , Biodegradation, Environmental , Chemistry Techniques, Analytical
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