HR: 0800h
AN: H51D-0748 [Abstracts]
TI: Development and application of a coupled bio-geochmical and hydrological model for point and non-point source river water pollution
AU: * Pohlert, T
EM: pohlert@uni-mainz.de
AF: Zentrum f{ü}r Umweltforschung, Johannes-Gutenberg-University Mainz, Johann-Joachim-
Becher-Weg 21, Mainz, 55099, Germany
AB:
The aim of this paper is to present recent developments of an integrated water- and N-balance model for the
assessment of land use changes on water and N-fluxes for meso-scale river catchments. The semi-distributed
water-balance model SWAT was coupled with algorithms of the bio-geochemical model DNDC as well as the
model CropSyst. The new model that is further denoted as SWAT-N was tested with leaching data from a long-
term lysimeter experiment as well as results from a 5-years sampling campaign that was conducted at the outlet
of the meso-scale catchment of the River Dill (Germany). The model efficiency for N-load as well as the spatial
representation of N-load along the river channel that was tested with results taken from longitudinal profiles show
that the accuracy of the model has improved due to the integration of the aforementioned process-oriented
models. After model development and model testing, SWAT-N was then used for the assessment of the EU
agricultural policy (CAP reform) on land use change and consequent changes on N-fluxes within the Dill
Catchment.
UR: http://geb.uni-
giessen.de/geb/volltexte/2007/4531/
DE: 1804 Catchment
DE: 1806 Chemistry of fresh water
DE: 1813 Eco-hydrology
DE: 1847 Modeling
DE: 1880 Water management (6334)
SC: Hydrology [H]
MN: 2007 Fall Meeting