Numerical model for the transport and degradation of pollutants through wetlands

Constructed wetlands are increasingly being designed and used to treat wastewaters. The majority of constructed wetlands are designed based on steady-state releases of pollutant loading. However, in some cases (i.e., aquaculture ponds) pollutant loadings are not steady-state, rather are intermittent...

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Bibliographic Details
Main Authors: Imteaz, Monzur Alam, Uddameri, Venkatesh, Ahsan, Amimul
Format: Article
Language:English
Published: Inderscience 2016
Online Access:http://psasir.upm.edu.my/id/eprint/53403/1/Numerical%20model%20for%20the%20transport%20and%20degradation%20of%20pollutants%20through%20wetlands%20.pdf
http://psasir.upm.edu.my/id/eprint/53403/
http://www.inderscienceonline.com/doi/abs/10.1504/IJW.2016.073738
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Summary:Constructed wetlands are increasingly being designed and used to treat wastewaters. The majority of constructed wetlands are designed based on steady-state releases of pollutant loading. However, in some cases (i.e., aquaculture ponds) pollutant loadings are not steady-state, rather are intermittent. Analysis based on steady-state release (inflow) will be quite different from an analysis based on intermittent loading/inflow. A simple numerical model was developed based on conservation of mass principle for the pollutants and convection through a wetland, considering a series of tanks. Tank-in-series approach assumes that the wetland is comprised of several interconnected tanks, each of which can be modelled as a continuous flow stirred tank reactor. The developed numerical model can simulate pollutant transport and degradations for steady-state, continuous and/or irregular/intermittent pollutant loadings. Numerical model results were verified with earlier developed analytical solutions for intermittent pollutant loadings. Numerical model results are very close to the results derived from analytical solutions for the same condition. The developed numerical model was used to present different scenarios using different flow rates, pond volumes, degradation constants and different masses of intermittent pollutants.