References

  1. E. Broda, Two kinds of lithotrophs missing in nature, Zeitschrift für allgemeine Mikrobiologie, 17 (1977) 491–493.
  2. A. Mulder, A.A. Van de Graaf, L. Robertson, J. Kuenen, Anaerobic ammonium oxidation discovered in a denitrifying fluidized bed reactor, FEMS Microbiol. Ecol., 16 (1995) 177–183.
  3. A.A. Van de Graaf, A. Mulder, P. de Bruijn, M. Jetten, L. Robertson, J.G. Kuenen, Anaerobic oxidation of ammonium is a biologically mediated process, Appl. Environ. Microbiol., 61 (1995) 1246–1251.
  4. W.R. Van der Star, W.R. Abma, D. Blommers, J.W. Mulder, T. Tokutomi, M. Strous, C. Picioreanu, M.C. van Loosdrecht, Startup of reactors for anoxic ammonium oxidation: experiences from the first full-scale anammox reactor in Rotterdam, Water Res., 41 (2007) 4149–4163.
  5. S. Lackner, E.M. Gilbert, S.E. Vlaeminck, A. Joss, H. Horn, M.C. van Loosdrecht, Full-scale partial nitritation/anammox experiences–an application survey, Water Res., 55 (2014) 292–303.
  6. M. Ali, S. Okabe, Anammox-based technologies for nitrogen removal: advances in process start-up and remaining issues, Chemosphere, 141 (2015) 144–153.
  7. N. Chamchoi, S. Nitisoravut, Anammox enrichment from different conventional sludges, Chemosphere, 66 (2007) 2225–2232.
  8. Z. Wenjie, Z. Yuanyuan, L. Liang, Z. Xuehong, J. Yue, Fast start-up of expanded granular sludge bed (EGSB) reactor using stored Anammox sludge, Water Sci. Technol., 69 (2014) 1469–1474.
  9. M.J. Kampschreur, H. Temmink, R. Kleerebezem, M.S.M. Jetten, M.C.M.V. Loosdrecht, Nitrous oxide emission during wastewater treatment, Water Res., 43 (2009) 4093–4103.
  10. J.G. Kuenen, Anammox bacteria: from discovery to application, Nat. Rev. Microbiol., 6 (2008) 320–326.
  11. B. Kartal, J.V. Kuenen, M. Van Loosdrecht, Sewage treatment with anammox, Science, 328 (2010) 702–703.
  12. M.J. Kampschreur, R. Poldermans, R. Kleerebezem, W.R.L. Van der Star, R. Haarhuis, W.R. Abma, M.S.M. Jetten, M.C.M. Van Loosdrecht, Emission of nitrous oxide and nitric oxide from a full-scale single-stage nitritation-anammox reactor, Water Sci. Technol., 60 (2009) 3211.
  13. S. Okabe, M. Oshiki, Y. Takahashi, H. Satoh, N2O emission from a partial nitrification–anammox process and identification of a key biological process of N2O emission from anammox granules, Water Res., 45 (2011) 6461–6470.
  14. E. Harris, A. Joss, L. Emmenegger, M. Kipf, B. Wolf, J. Mohn, P. Wunderlin, Isotopic evidence for nitrous oxide production pathways in a partial nitritation-anammox reactor, Water Res., 83 (2015) 258–270.
  15. C.M. Castro-Barros; M.R.J. Daelman, K.E. Mampaey, M.C.M. van Loosdrecht, E.I.P. Volcke, Effect of aeration regime on N2O emission from partial nitritation-anammox in a fullscale granular sludge reactor, Water Res., 68 (2015) 793–803.
  16. Z. Wenjie, W. Huaqin, D.R. Joseph, J. Yue, Granular activated carbon as nucleus for formation of Anammox granules in an expanded granular-sludge-bed reactor, Global NEST J., 17 (2015) 508–514.
  17. APHA, Standard Method for the Examination of Water and Wastewater, 19th ed., American Public Health Association, Washington, DC, 1995.
  18. J. Yue, W. Dunqiu, Z. Wenjie, Treatment of high-strength ethylene glycol waste water in an expanded granular sludge blanket reactor: use of PVA-gel beads as a biocarrier, SpringerPlus, 5 (2016) 856.
  19. Z. Wenjie, W. Dunqiu, K. Yasunori, Y. Taichi, Z. Li, F. Kenji, PVA-gel beads enhance granule formation in a UASB reactor, Bioresour. Technol., 99 (2008) 8400–8405.
  20. Z. Wenjie, X. Qinglin, J.D. Rouse, Q. Sen, F. Kenji, Treatment of high-strength corn steep liquor using cultivated polyvinyl alcohol gel beads in an anaerobic fluidized-bed reactor, J. Biosci. Bioeng., 107 (2009) 49–53.
  21. M. Ali, R.M.L.D. Rathnayake, L. Zhang, S. Ishii, T. Kindaichi, H. Satoh, S. Toyoda, N. Yoshida, S. Okabe, Source identification of nitrous oxide emission pathways from a single-stage nitritation-anammox granular reactor, Water Res., 102 (2016) 147–157.
  22. M.J. Kampschreur, W.R.L. van der Star, H.A. Wielders, J.W. Mulder, M.S.M. Jetten, M.C.M. van Loosdrecht, Dynamics of nitric oxide and nitrous oxide emission during full-scale reject water treatment, Water Res., 42 (2008) 812–826.
  23. C. Domingo-Félez, A.G. Mutlu, M.M. Jensen, B.F. Smets, Aeration strategies to mitigate nitrous oxide emissions from single-stage nitritation/Anammox reactors, Environ. Sci. Technol., 48 (2014) 8679–8687.
  24. H. Tian, C. Lu, P. Ciais, A.M. Michalak, J.G. Canadell, E. Saikawa, D.N. Huntzinger, K.R. Gurney, S. Sitch, B. Zhang, The terrestrial biosphere as a net source of greenhouse gases to the atmosphere, Nature, 531 (2016) 225–228.
  25. T. Yoshinari, M. Wahlen, Oxygen isotope ratios in N2O from nitrification at a wastewater treatment facility, Nature, 317 (1985) 349.
  26. W. Zhang, D. Wang, Y. Jin, Effects of inorganic carbon on the nitrous oxide emissions and microbial diversity of an anaerobic ammonia oxidation reactor, Bioresour. Technol., 250 (2018) 124–130.
  27. X. Ma, Y. Jin, W. Zhang, Effects of Ca2+ concentration on anaerobic ammonium oxidation reactor microbial community structure, Water, 11 (2019) 1341.
  28. W. Zhang, Y. Jin, Effects of Fe(II) on N2O emissions from anammox reactors, Desal. Water Treat., 63 (2017) 221–226.