Pia Le Cauchois, Samuel Doucet, Ons Bouattour, Natasha McQuaid, Henry Beral, Margit Kõiv-Vainik, Françoise Bichai, David McCarthy, Julien St-Laurent, Danielle Dagenais, Nesrine Bennekrela, Juan Guerra, Mounia Hachad, Raja Kammoun and Sarah Dorner
Article (2025)
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Open Access to the full text of this document Published Version Terms of Use: Creative Commons Attribution No Derivatives Download (1MB) |
Abstract
Urbanization is leading to more frequent flooding as cities have more impervious surfaces and runoff exceeds the capacity of combined sewer systems. In heavy rainfall, contaminated excess water is discharged into the natural environment, damaging ecosystems and threatening drinking water sources. To address these challenges aggravated by climate change, urban blue-green water management systems, such as bioretention cells, are increasingly being adopted. Bioretention cells use substrate and plants adapted to the climate to manage rainwater. They form shallow depressions, allowing infiltration, storage, and gradual evacuation of runoff. In 2018, the City of Trois-Rivières (Québec, Canada) installed 54 bioretention cells along a residential street, several of which were equipped with access points to monitor performance. Groundwater quality was monitored through the installation of piezometers to detect potential contamination. This large-scale project aimed to improve stormwater quality and reduce sewer flows. The studied bioretention cells reduced the flow and generally improved water quality entering the sewer system, as well as the quality of stormwater, with some exceptions. Higher outflow concentrations were observed for contaminants such as manganese and nitrate. The results of this initiative provide useful recommendations for similar projects for urban climate change adaptation.
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| Department: | Department of Civil, Geological and Mining Engineering |
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| Funders: | NSERC / CRSNG, Ville de Trois-Rivières, Ouranos, NSERC / CRSNG - Pure Create |
| PolyPublie URL: | https://publications.polymtl.ca/62689/ |
| Journal Title: | Blue-Green Systems (vol. 7, no. 1) |
| Publisher: | IWA Publishing |
| DOI: | 10.2166/bgs.2025.029 |
| Official URL: | https://doi.org/10.2166/bgs.2025.029 |
| Date Deposited: | 13 Feb 2025 09:02 |
| Last Modified: | 07 Jan 2026 21:43 |
| Cite in APA 7: | Le Cauchois, P., Doucet, S., Bouattour, O., McQuaid, N., Beral, H., Kõiv-Vainik, M., Bichai, F., McCarthy, D., St-Laurent, J., Dagenais, D., Bennekrela, N., Guerra, J., Hachad, M., Kammoun, R., & Dorner, S. (2025). Full-scale characterization of the effects of a bioretention system on water quality and quantity following the replacement of a mixed stormwater and combined sewer system. Blue-Green Systems, 7(1), 43-62. https://doi.org/10.2166/bgs.2025.029 |
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