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Is the ammonia stripping pre-treatment suitable for the nitrogen removal via partial nitritation-anammox of OFMSW digestate? | LitMetric

AI Article Synopsis

  • The study explores the combination of anaerobic digestion and partial nitritation-anammox processes to effectively treat organic municipal solid waste (OFMSW) for organic matter and nitrogen removal.
  • Two sequencing batch reactors, one using ammonia stripping pre-treatment (AS-SBR) and the other without (nAS-SBR), were evaluated, showing that AS-SBR had better effluent quality despite lower nitrogen removal rates.
  • A significant decrease in specific anammox activity was noted when increasing OFMSW content, with the microbial community changes linked to the sCOD/N ratios, indicating that ammonia stripping effectively enhances the overall treatment process.

Article Abstract

Treating the organic fraction of municipal solid waste (OFMSW) can be performed by coupling the anaerobic digestion (AD) and partial nitritation-anammox (PN-AMX) processes for organic matter and nitrogen removal, respectively. Besides, an ammonia stripping (AS) step before the AD benefit the removal of organic matter. In the present study, the operation of two PN-AMX sequencing batch reactors with and without AS pre-treated OFMSW digestate (AS-SBR and nAS-SBR, respectively) was assessed. The specific anammox activity decreased by 90 % for increasing proportions of fed OFMSW in both cases, indicating no differences over the anammox activity whether the AS pre-treatment is implemented or not. For 100 % OFMSW proportion, the AS-SBR achieved better effluent quality than the nAS-SBR (127 ± 88 vs. 1050 ± 23 mg N/L) but with lower nitrogen removal rates (58 ± 8 vs. 687 ± 32 g N/(L·d)). Still, the latter required successive re-inoculations to obtain higher removal rates. Changes in the microbial communities were mainly correlated to sCOD/N ratios in the OFMSW, being Candidatus Brocadia the dominant anamnmox species. The results proved the AS to be a suitable pre-treatment, despite the higher sCOD/N ratios in the OFMSW digestate, achieving good synergy between the PN-AMX and heterotrophic denitrification processes.

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Source
http://dx.doi.org/10.1016/j.jhazmat.2020.123458DOI Listing

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