Sammanfattning
To meet future nitrogen removal targets, Henriksdal wastewater treatment plant (WWTP) will require external carbon addition, estimated at 8 tons COD/day by 2040, due to low influent BOD/TN ratios, precipitation chemical use, and low temperatures. Methanol, the projected option, is fossil-based and contributes to indirect greenhouse gas emissions. This study evaluated a volatile fatty acid (VFA)-based fermentate produced from primary sludge and food waste in a 2 m3 mesophilic fermenter as a carbon source for denitrification. The filtrated fermentate was tested as carbon source in both batch denitrification tests and pilot-scale MBR (4.5 m3 /h), where it was dosed for 70 days, replacing glycerol currently used at Henriksdal and Henriksdals WWTP. In batch tests, the fermentate achieved a 40% higher denitrification rate than glycerol. Pilot trials showed a 30% higher denitrification rate and 50% lower carbon consumption while maintaining effluent concentration below 3 mg NO3 - -N/L. Microbial analysis revealed no significant community changes with the carbon source transition, indicating effective VFA uptake by existing microorganisms. Full-scale projections suggested that replacing methanol would require 10% of the plant’s primary sludge plus food waste. Although this sludge use would reduce biogas production, methane potential tests showed that recycling of the fermentate solid fraction would result in only 2% lower biogas production, representing a minor trade-off.
| Originalspråk | Engelska |
|---|---|
| Artikelnummer | 139 |
| Antal sidor | 14 |
| Tidskrift | Water Science and Technology |
| Volym | 92 |
| Nummer | 1 |
| DOI | |
| Status | Publicerad - 2025 |
Bibliografisk information
Publisher Copyright:© 2025 The Authors.
Nyckelord
- VFA
- carbon source,
- denitrification
- microbiology
- resource recovery
- wastewater
Citera det här
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver