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- W1548398942 abstract "The Monod model is used increasingly to simulate the kinetics of biodegradation in soil environments with distinctly different hydraulic properties than the well-mixed batch reactor environments for which the model is known to be appropriate [17,19,20]. This paper investigates the use of a transport model with Monod kinetics to describe the fate of 2,4-D in soil columns. The research includes development of a mathematical model for the biodegradation of 2,4-D in the presence of an acclimated biological population and an optimization model to calibrate results of the mathematical model with experimented observations. The model is applied to experimental data from two independent soil column experiments to qualify the generality of the numerical results. Fitted kinetic parameters ?we compared with well-mixed batch reactor test data and goodness of fit is compared with a linear model of transport with first-order substrate decay. The fitted model is used to discuss strategies to minimize transport of 2,4-D into lower soil horizons and groundwater." @default.
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- W1548398942 date "1996-01-01" @default.
- W1548398942 modified "2023-09-24" @default.
- W1548398942 title "Estimation of Kinetic Rate Coefficients for 2,4-D Biodegradation during Transport in Soil Columns" @default.
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- W1548398942 doi "https://doi.org/10.1007/978-1-4613-8492-2_12" @default.
- W1548398942 hasPublicationYear "1996" @default.
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