Affiliation:
1. a INRAE, UR REVERSAAL, 5 Rue de la Doua, 69100 Villeurbanne, Villeurbanne, France
2. b Eco Bird, 3 route du Dôme, 69630 Chaponost, France
Abstract
Abstract
This study investigates the impact of aeration strategy on the performance of total nitrogen (TN) removal in a compact hybrid aerated treatment wetland (TW), called Rhizosph'air®. The system combines a single-stage French vertical flow wetland with an aerated horizontal-flow wetland, offering a unique and flexible approach for optimizing TN removal. In total, seven experimental conditions were tested, with different aeration modes, hydraulic loading rates and ammonium addition. The wetland system demonstrated high performance in terms of chemical oxygen demand removal (>85%) and solids removal (>90%), regardless of the experimental condition. However, TN removal was found to be directly impacted by operational changes. Increasing the hydraulic loading rate from 0.15 to 0.25 m/day led to an improvement in TN removal, achieving over 60%. Furthermore, when ammonium was added to the inlet and when the aeration timing was synced with the timing of the influent batch load, the environmental conditions facilitated the denitrification process, resulting in TN removal of approximately 70% and the lowest effluent NO3-N concentrations (8.70 ± 4.40 mg/L). In summary, the timing of the aeration strategy according to influent batch loading improved TN removal, suggesting its potential for optimization in future studies.
Funder
Office Français de la Biodiversité
Agence de l'eau Rhône–Méditerranée–Corse
Agence de l'eau Adour-Garonne
EUR H2O'Lyon
Subject
Water Science and Technology,Management, Monitoring, Policy and Law,Environmental Science (miscellaneous)
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Standard DWA-A 262E: Principles for Dimensioning, Construction, and Operation of Wastewater Treatment Plants with Planted and Unplanted Filters for Treatment of Domestic and Municipal Wastewater.
Cited by
2 articles.
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