| Literature DB >> 24291558 |
Annette E Rosenbom1, Philip J Binning2, Jens Aamand3, Arnaud Dechesne2, Barth F Smets2, Anders R Johnsen3.
Abstract
The potential for pesticide degradation varies greatly at the centimeter-scale in agricultural soil. Three dimensional numerical simulations were conducted to evaluate how such small-scale spatial heterogeneity may affect the leaching of the biodegradable pesticide 2-methyl-4-chlorophenoxyacetic acid (MCPA) in the upper meter of a variably-saturated, loamy soil profile. To incorporate realistic spatial variation in degradation potential, we used data from a site where 420 mineralization curves over 5 depths have been measured. Monod kinetics was fitted to the individual curves to derive initial degrader biomass values, which were incorporated in a reactive transport model to simulate heterogeneous biodegradation. Six scenarios were set up using COMSOL Multiphysics to evaluate the difference between models having different degrader biomass distributions (homogeneous, heterogeneous, or no biomass) and either matrix flow or preferential flow through a soil matrix with a wormhole. MCPA leached, within 250 days, below 1m only when degrader biomass was absent and preferential flow occurred. Both biodegradation in the plow layer and the microbially active lining of the wormhole contributed to reducing MCPA-leaching below 1m. The spatial distribution of initial degrader biomass within each soil matrix layer, however, had little effect on the overall MCPA-leaching.Entities:
Keywords: COMSOL simulations; MCPA leaching; Monod-kinetics; Preferential transport; Spatial biodegradation
Mesh:
Substances:
Year: 2013 PMID: 24291558 DOI: 10.1016/j.scitotenv.2013.11.009
Source DB: PubMed Journal: Sci Total Environ ISSN: 0048-9697 Impact factor: 7.963