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The role of COD/N ratio on the start-up performance and microbial mechanism of an upflow microaerobic reactor treating piggery wastewater

  • University of Queensland
  • Harbin Institute of Technology
  • Jiangxi University of Science and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

This study investigated the role of COD/N ratio on the start-up and performance of an upflow microaerobic sludge reactor (UMSR) treating piggery wastewater at 0.5 mgO2/L. At high COD/N ratio (6.24 and 4.52), results showed that the competition for oxygen between ammonia-oxidizing bacteria, nitrite-oxidizing bacteria and heterotrophic bacteria limited the removal of nitrogen. Nitrogen removal efficiency was below 40% in both scenarios. Decreasing the influent COD/N ratio to 0.88 allowed achieving high removal efficiencies for COD (∼75%) and nitrogen (∼85%) due to the lower oxygen consumption for COD mineralization. Molecular biology techniques showed that nitrogen conversion at a COD/N ratio 0.88 was dominated by the anammox pathway and that Candidatus Brocadia sp. was the most important anammox bacteria in the reactor with a relative abundance of 58.5% among the anammox bacteria. Molecular techniques also showed that Nitrosomonas spp. was the major ammonia-oxidiser bacteria (relative abundance of 86.3%) and that denitrification via NO3 and NO2 also contributed to remove nitrogen from the system.

Original languageEnglish
Pages (from-to)825-831
Number of pages7
JournalJournal of Environmental Management
Volume217
DOIs
StatePublished - 1 Jul 2018

Keywords

  • Anammox
  • C/N ratio
  • Deammonification
  • Molecular mechanism
  • Nitrogen removal

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