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Modeling Temperature in Wastewater Treatment Systems Under Future Climate Change Predictions

  • 2025
  • OriginalPaper
  • Chapter
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Abstract

This chapter delves into the critical role of wastewater stabilization ponds (WSPs) in community health and environmental management, highlighting their vulnerability to climate change. The study uses the Delft-3D hydrodynamic model to simulate the impact of projected temperature changes on WSP operations, focusing on temperature, stratification, and density processes. Key findings include a significant increase in water temperatures and stratification over the decades, which can affect treatment performance and microbial activity. The research also explores the potential for WSPs to become more effective under certain climate change scenarios, offering a cost-effective solution for numerous communities. Additionally, the study discusses adaptive strategies and research limitations, emphasizing the need for further investigation into climate variables' impacts on water quality parameters. This comprehensive analysis sets the stage for understanding the combined effects of climate change on wastewater treatment systems and the importance of adaptive strategies for sustainable management.

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Title
Modeling Temperature in Wastewater Treatment Systems Under Future Climate Change Predictions
Authors
Lauren Halliwell
Alexander Rey
Hamidreza Shirkhani
Leon Boegman
Geoffrey Hall
Pascale Champagne
Copyright Year
2025
DOI
https://doi.org/10.1007/978-3-031-97693-3_21
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