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This paper presents a coupled hydrodynamic–geochemical model for trace metal dynamics in rivers, to highlight key parameters and set a basis for developing ...
The objective was to establish geochemical coefficients characterizing Cu and Zn trace metals in a river ecosystem. In order to be used in model working at ...
Modelling trace metal transfer in large rivers under dynamic hydrology: A coupled hydrodynamic and chemical equilibrium model · 19 Citations · 108 References.
Mar 1, 2017 · The predictions of the coupled model are compared to those of a fixed Kd partitioning model.The model accurately simulates trace metal behaviour ...
Modelling trace metal transfer in large rivers under dynamic hydrology: A coupled hydrodynamic and chemical equilibrium model. Environmental Modelling and ...
Trace metals (TMs) in rivers experience a complex chemistry that affects their partitioning between the dissolved and particulate fractions.
A coupled model based on the hydrodynamic model MOHID and the chemical speciation model WHAM was applied to the middle part of the Garonne River (SW-France).
Modelling of trace metal transfer in a large river under different hydrological conditions (the Garonne River in southwest France).
Anne Probst : Modelling trace metal transfer in large rivers under dynamic hydrology: A coupled hydrodynamic and chemical equilibrium model. Environ. Model.
Jun 23, 2015 · The modelling of trace metals (TM) in rivers is highly dependent on hydrodynamics, the transport of suspended particulate matter (SPM) and ...