Title of article :
Mass balance modelling of contaminants in river basins: A flexible matrix approach
Author/Authors :
Christopher Warren، نويسنده , , Don Mackay، نويسنده , , Mick Whelan، نويسنده , , Kay Fox، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
10
From page :
1458
To page :
1467
Abstract :
A novel and flexible approach is described for simulating the behaviour of chemicals in river basins. A number (n) of river reaches are defined and their connectivity is described by entries in an n × n matrix. Changes in segmentation can be readily accommodated by altering the matrix entries, without the need for model revision. Two models are described. The simpler QMX-R model only considers advection and an overall loss due to the combined processes of volatilization, net transfer to sediment and degradation. The rate constant for the overall loss is derived from fugacity calculations for a single segment system. The more rigorous QMX-F model performs fugacity calculations for each segment and explicitly includes the processes of advection, evaporation, water-sediment exchange and degradation in both water and sediment. In this way chemical exposure in all compartments (including equilibrium concentrations in biota) can be estimated. Both models are designed to serve as intermediate-complexity exposure assessment tools for river basins with relatively low data requirements. By considering the spatially explicit nature of emission sources and the changes in concentration which occur with transport in the channel system, the approach offers significant advantages over simple one-segment simulations while being more readily applicable than more sophisticated, highly segmented, GIS-based models.
Keywords :
GREAT-ER , Aquatic , QWASI , Fugacity , resolution , Down-the-drain
Journal title :
Chemosphere
Serial Year :
2005
Journal title :
Chemosphere
Record number :
738391
Link To Document :
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