| Literature DB >> 24765570 |
Abstract
With rising environmental concerns on potable water safety and eutrophication, increased media attention and tighter environmental regulations, managing animal waste in an environmentally responsible and economically feasible way can be a challenge. In this study, the possibility of using granular anammox process forEntities:
Keywords: Anammox; Granular sludge; Mass balance; Nitrogen; Organic matter; Swine manure
Year: 2014 PMID: 24765570 PMCID: PMC3994615 DOI: 10.7717/peerj.336
Source DB: PubMed Journal: PeerJ ISSN: 2167-8359 Impact factor: 2.984
Figure 1Nitrogen removal performance of control reactor feeding with synthetic wastewater.
Figure 2Images of anammox bacteria.
(A) Image showing the reddish anammox granules in a beaker. (B) Scanning electron micrograph showing anammox bacteria surrounded by bacterial extracellular polymeric substances (bar = 400 nm). (C) Transmission electron micrograph showing anammox bacterial cells (bar = 500 nm).
Figure 3FISH image.
Identification of microorganisms by hybridizing with different fluorescent-labeled probes. (A) Probe AMX368F targeting for anammox bacteria. (B) Probe DEN220 targeting for denitrifying bacteria.
Figure 4Treating the effluent after activated sludge deodorization reactor.
NH4+–N, NO2−–N and TN removal (left axis) and process stoichiometry (right axis) during implementation of the effluent after activated sludge deodorization reactor.
Figure 5Treating the effluent after anaerobic digestion-partial oxidation treatment.
NH4+–N, NO2−–N and TN removal (left axis) and process stoichiometry (right axis) during gradual implementation of the effluent after anaerobic digestion-partial oxidation treatment.
Figure 6Effect of organic matter on anammox performance treating pretreated swine manure.
Mass balance evaluation of participation of different processes.
| COD conc. | COD | NH4+–N | NO2−–N removal | NO3−–N | COD | Inf. NH4+–N | NO2−–N | |||
|---|---|---|---|---|---|---|---|---|---|---|
| Anammox | Denitrification | Production | Removal | Final | ||||||
| 0 | — | 48.8 | 51.0 | — | 15.8 | — | 15.8 | — | 50.0 | 100 |
| 232.0 | 0.9 | 65.5 | 68.8 | 0.8 | 21.0 | 11.8 | 9.2 | 41.8 | 67.0 | 98.9 |
| 464.0 | 0.9 | 115.3 | 121.1 | 15.4 | 37.4 | 15.7 | 21.7 | 86.6 | 121.1 | 88.7 |
| 1160.0 | 0.9 | 211.9 | 222.5 | 107.1 | 68.7 | 40.6 | 28.1 | 369.2 | 304.5 | 67.5 |
| 2320.0 | 0.9 | 166.9 | 175.2 | 462.6 | 54.1 | 29.0 | 25.1 | 1097.6 | 615.0 | 27.5 |
| 230.0 | 0.4 | 211.2 | 221.8 | 28.9 | 68.4 | 32.5 | 35.9 | 173.1 | 231.0 | 88.5 |
Notes.
Values denote nitrate produced via anammox process.
Values means nitrate removed by denitrification process.
Values stand for final concentration of effluent nitrate.