References

  1. R.X. Hao, S.M. Li, J.B. Li, Denitrification of simulated municipal wastewater treatment plant effluent using a three-dimensional biofilm-electrode reactor: operating performance and bacterial community, Bioresour. Technol., 143 (2013) 178–186.
  2. L. Yi, W. Jiao, W. Chen, An overview of reclaimed water reuse in China, Environ. Sci., 23 (2011) 1585–1593.
  3. R.X. Hao, S.M. Li, J.B. Li, Water quality assessment for wastewater reclamation using principal component analysis, J. Environ. Inf., 21 (2013) 45–54.
  4. D. Wei, Z. Tan, Y. Du, A biological safety evaluation on reclaimed water reused as scenic water using a bioassay battery, Environ. Sci., 23 (2011) 1611–1618.
  5. Y.M. Chen, K. Liu, T. Zheng, The situation and development trend of the reclaimed water, Water purification technology, 22 (2003) 34–36 (in Chinese).
  6. D.J. Conley, H.W. Paerl, R.W. Howarth, Controlling eutrophication: nitrogen and phosphorus, Sci. Prog., 323 (2009) 1014–1015.
  7. R.M. Pusker, T.M. Wes, S.F. Gary, Nitrogen removal assessment through nitrification rates and media biofilm accumulation in an IFAS process demonstration study, Water Res., 45 (2011) 6699–6708.
  8. J. Zheng, N. Sun, Experimental study on denitrification of denitrifying biofilters with different properties of filter media, Technol. Water Treat., 37 (2011) 73–76 (in Chinese).
  9. J. Li, S.C. Mao, J.X. Wang, The performance of denitrification filter in the process of dealing with secondary effluent, J. Beijing Univ. Technol., 37 (2011) 132–136 (in Chinese).
  10. M. Yang, Y.L. Sun, X.C. Zheng, Study on enhanced nitrification of suspended filler and its engineering application effect, Water Wastewater Eng., 46 (2010) 36–39 (in Chinese).
  11. M.F. Dahab, Nitrate treatment methods: An Overview-Nitrate Contamination Exposure, Consequence and Control, Springer-Verlag, Berlin, Germany, 1991, pp. 349–368.
  12. Y. Yuan, Y. Huang, H.P. Deng, The effect of nitrite accumulation with different C/N on denitrifying progress, Environ. Sci., 34 (2013) 1416–1420.
  13. M.P. Harremoes, O. Sinkjaer, Kinetic interpretation of nitrogen removal in pilot scale experiments, Water Res., 64 (1995) 899–905.
  14. C.K. Choi, J.K. Lee, K.H. Lee, The effects on operation conditions of sludge retention time and carbon/nitrogen ratio in an intermittently aerated membrane bioreactor (IAMBR), Bioresour. Technol., 99 (2008) 5397–5401.
  15. T. Kuba, M.C.M. Van Loosdrecht, J.J. Heijnen, Phosphorus and nitrogen removal with minimal COD requirement by integration of denitrifying dephosphatation and nitrification in a two-sludge system, Water Res., 30 (1996) 1702–1710.
  16. National Drinking Water Quality Standard (USEPA), USA, 2002.
  17. C. Glass, J. Silverstein, Denitrification kinetics of high nitrate concentration water: pH effect on inhibition and nitrite accumulation, Water Res., 32 (1998) 831–839.
  18. The first level A criteria specified in Discharge Standard of Pollutants for Municipal Wastewater Treatment Plant (GB18918-2002), China, 2002.
  19. K.C. Lee, B.E. Rittmann, Effects of pH and precipitation on auto-hydrogenotrophic denitrification using the hollow-fiber membrane-biofilm reactor, Water Res., 37 (2003) 1551–1556.
  20. H. Zhao, C. Feng, Q. Wang, Nitrate removal from groundwater by cooperating heterotrophic with autotrophic denitrification in a biofilm-electrode reactor, J. Hazard. Mater., 192 (2011) 1033–1039.
  21. W.Z. Wu, F.F. Yang, L.H. Yang, Biological denitrification with a novel biodegradable polymer as carbon source and biofilm carrier, Bioresour. Technol., 118 (2012) 136–140.
  22. N. Kishida, J.H. Kim, Y. Kimochi, Effect of C/N ratio on nitrous oxide emission from swine wastewater treatment process, Water Sci. Technol., 49 (2004) 359–365.
  23. R.G. Anna, R. Marques, C. Arangio, Distinctive denitrifying capabilities lead to differences in N2O production by denitrifying polyphosphate accumulating organisms and denitrifying glycogen accumulating organisms, Bioresource. Technol., 219 (2016) 106–113.
  24. A. Ribera-Guardia, E. Kassotaki, O. Gutierrez, Effect of carbon source and competition for electrons on nitrous oxide reduction in a mixed denitrifying microbial community, Process Biochem., 49 (2014) 2228–2234.
  25. S. Hallin, M. Pell, Metabolic properties of denitrifying bacteria adapting to methanol and ethanol in activated sludge, Water Res., 32 (1998) 13–18.
  26. H.M. Song, Optimization of Denitrification Filter Operating Conditions and Effects of Denitrification, Shanghai Normal University, Shanghai, 2012 (in Chinese).
  27. X.H. Liu, J.W. Li, Y.P. Gan, Application of Denitrification Biofilter in Reclaimed Water Production, Annual meeting of Chinese Society of Environmental Sciences, 2013 (in Chinese).
  28. S.Y. Tang, N. Liu, C. Bu, Study on denitrification effect of postdenitrification biofilter, Biotechnol. World, 6 (2012) 91–92 (in Chinese).
  29. W. Zhao, Y.Y. Wang, S.H. Liu, Denitrification activities and N2O production under salt stress with varying COD/N ratios and terminal electron acceptors, Chem. Eng. J., 215–216 (2013) 252–260.
  30. X.S. Cao, K.M. Fu, D. Qian, Effect of C/N on nitrite accumulation in denitrification process with methanol as carbon source, J. Chem. Ind., 61 (2010) 2938–2944 (in Chinese).
  31. R. Du, Y.Z. Peng, S.B. Cao, Characteristic of nitrous oxide production in partial denitrification process with high nitrite accumulation, Bioresour. Technol., 203 (2016) 341–347.