| Literature DB >> 29961200 |
Weiwei Li1,2, Peili Lu3,4, Fengguang Chai1, Lilan Zhang1,2, Xinkuan Han1, Daijun Zhang1,2.
Abstract
Denitrifying anaerobic methane oxidation (damo) bioprocesses can remove nitrate using methane as the electron donor, which gains great concern due to the current stringent discharge standard of nitrogen in wastewater treatment plants. To obtain an engineering acceptable nitrogen removal rate (NRR) and demonstrate the long-term stable ability of damo system under conditions of nitrate and methane, two sequencing batch reactors (SBRs) fed with only nitrate and methane were operated for more than 600 days at 30 °C. The NRR of 21.91 ± 0.73 mg NO3--N L-1 day-1 was obtained which is, to the best of our knowledge, the highest rate observed in the literatures under such conditions. The temperature was found to significantly affect the system performance. Furthermore, the microbial community was analyzed by using real-time PCR technique. The results showed that the microbial consortium contained damo archaea and bacteria. These two microbes cooperated to maintain the long-term stability. And the number of damo archaea was higher than that of damo bacteria with the ratio of 1.77. By using methane as the electron donor, damo archaea reduced nitrate to nitrite coupled to methane oxidation and damo bacteria reduce the generated nitrite to nitrogen gas. The first step of nitrate to nitrite taken by damo archaea might be the limiting step of this cooperation system. SBR could be a suitable reactor configuration to enrich slow-growing microbes like damo culture. These results demonstrated the potential application of damo processes for nitrogen removal of wastewater containing low C/N ratios.Entities:
Keywords: Anaerobic methane-oxidation; Damo archaea; Methane-dependent denitrification; Nitrate removal; SBR
Year: 2018 PMID: 29961200 PMCID: PMC6026486 DOI: 10.1186/s13568-018-0637-9
Source DB: PubMed Journal: AMB Express ISSN: 2191-0855 Impact factor: 3.298
Operational conditions of the reactors
| Number | Time (days) | Substrate | T (°C) | pH |
|---|---|---|---|---|
| A | 0–144 | NO3−, CH4 | 22 | 7.0–7.5 |
| B | 0–260 | NO3−, CH4 | 30 | 7.0–7.5 |
Fig. 1Nitrate and nitrite concentrations in the reactor during the 600 days. a Nitrate and nitrite concentration changes in reactor A; b nitrate and nitrite concentration changes in reactor B
Fig. 2Process performance of the reactors during the 600 days. a Nitrate removal rates, copy numbers of damo bacteria16S rRNA gene and damo archaea 16S rRNA gene in reactor A; b nitrate removal rates, copy numbers of damo bacteria 16S rRNA gene and damo archaea 16S rRNA gene in reactor B
Fig. 3Phylogenetic analysis of the N-damo archaea and N-damo bacteria in the system. a N-damo archaea identified from the reactor; b N-damo bacteria identified from the reactor