References

  1. C.B. Bott, D.S. Parker, J. Jimenez, M.W. Miller, J.B. Neethling, WEF/WERF study of BNR plants achieving very low N and P limits: evaluation of technology performance and process reliability, Water Sci. Technol., 65 (2012) 808–815.
  2. P.L. McCarty, J. Bae, J. Kim, Domestic wastewater treatment as a net energy producer–can this be achieved? Environ. Sci. Technol., 45 (2011) 7100–7106.
  3. A.R. Sheik, E.L. Muller, P. Wilmes, A hundred years of activated sludge: time for a rethink, Front. Microbiol., 5 (2014) 1–7.
  4. Y. Luo, W. Guo, H.H. Ngo, J.D. Nghiem, F.I. Hai, J. Zhang, S. Liang, X.C. Wang, A review on the occurrence of micropollutants in the aquatic environment and their fate and removal during wastewater treatment, Sci. Total Environ., 473 (2014) 619–641.
  5. M. Carballa, F. Omil, J.M. Lema, M. Liompart, C. Garcia-Jares, I. Rodriguez, M. Gomez, T. Ternes, Behavior of pharmaceuticals, cosmetics and hormones in a sewage treatment plant, Water Res., 38 (2004) 2918–2926.
  6. E.N. Evgenidou, I.K. Konstantinou, D.A. Lambropoulou, Occurrence and removal of transformation products of PPCPs and illicit drugs in wastewaters: a review, Sci. Total Environ., 505 (2015) 905–926.
  7. D. Griggs, M. Stafford-Smith, O. Gaffney, J. Rockstrom, M.C. Ohman, P. Shyamsundar, W. Steffen, G. Glaser, N. Kanie, I. Noble, Policy: Sustainable development goals for people and planet, Nature, 495 (2013) 305–307.
  8. B. Li, D. Wang, M. Li, J. Wei, G. Wu, Technical performance and environmental effects of the treated effluent of wastewater treatment plants in Shenzhen Bay Catchment, China, Sustainability, 8 (2016) 984.
  9. S. Chang, Anaerobic membrane bioreactors (AnMBR) for wastewater treatment, Adv. Chem. Eng. Sci., 4 (2014) 56–61.
  10. I. Martin-Garcia, V. Monsalvo, M. Pidou, P. Le-Clech, S.J. Judd, E.J. McAdam, B. Jefferson, Impact of membrane configuration on fouling in anaerobic membrane bioreactors, J. Membr. Sci., 382 (2011) 41–49.
  11. G. Skouteris, D. Hermosilla, P. Lopez, C. Negro, A. Blanco, Anaerobic membrane bioreactors for wastewater treatment: a review, Chem. Eng. J., 198 (2012) 138–148.
  12. W.M. Bandara, H. Satoh, M. Sasakawa, Y. Nakahara, M. Takahashi, S. Okabe, Removal of residual dissolved methane gas in an upflow anaerobic sludge blanket reactor treating low-strength wastewater at low temperature with degassing membrane, Water Res., 45 (2011) 3533–3540.
  13. A.E. Rotaru, P.M. Shrestha, F. Liu, M. Shrestha, D. Shrestha, M. Embree, K. Zengler, C. Wardman, K.P. Nevin, D.R. Lovley, A new model for electron flow during anaerobic digestion: direct interspecies electron transfer to Methanosaeta for the reduction of carbon dioxide to methane, Energy Environ. Sci., 7 (2014) 408–415.
  14. Q. Yin, Z. Hu, Y. Sun, B. Li, G. Wu, Effect of the dosage of ferroferric oxide on batch anaerobic treatment of high strength synthetic wastewater, Desal. Wat. Treat., 91 (2017) 152–158.
  15. Q. Yin, S. Yang, Z. Wang, L. Xing, G. Wu, Clarifying electron transfer and metagenomic analysis of microbial community in the methane production process with the addition of ferroferric oxide, Chem. Eng. J., 333 (2018) 216–225.
  16. H. Andersen, H. Siegrist, B. Halling-Sonrensen, T.A. Ternes, Fate of estrogens in a municipal sewage treatment plant, Environ. Sci. Technol., 37 (2003) 4021–4026.
  17. K. He, Q. Yin, A. Liu, S. Echigo, S. Itoh, G. Wu, Enhanced anaerobic degradation of amide pharmaceuticals by dosing ferroferric oxide or anthraquinone-2, 6-disulfonate, J. Water Process Eng., 18 (2017) 192–197.
  18. X. Shi, K.Y. Leong, H.Y. Ng, Anaerobic treatment of pharmaceutical wastewater: a critical review, Bioresour. Technol., 245 (2017) 1238–1244.
  19. J. Völker, S. Castronovo, A. Wick, T.A. Ternes, A. Joss, J. Oehlmann, M. Wagner, Advancing biological wastewater treatment: extended anaerobic conditions enhance the removal of endocrine and dioxin-like activities, Environ. Sci. Technol., 50 (2016) 10606–10615.
  20. S. Suthersan, J.J. Ganczarczyk, Inhibition of nitrite oxidation during nitrification. Some observations, Water Pollut. Res. J. Can., 21 (1986) 257–266.
  21. H. Yoo, K.H. Ahn, H.J. Lee, K.H. Lee, Y.J. Kwak, K.G. Song, Nitrogen removal from synthetic wastewater by simultaneous nitrification and denitrification (SND) via nitrite in an intermittently-aerated reactor, Water Res., 33 (1999) 145–154.
  22. M. Kornaros, S.N. Dokianakis, G. Lyberatos, Partial nitrification/ denitrification can be attributed to the slow response of nitrite oxidizing bacteria to periodic anoxic disturbances, Environ. Sci. Technol., 44 (2010) 7245–7253.
  23. Y. Sun, Y. Guan, M. Pan, X. Zhan, Z. Hu, G. Wu, Enhanced biological nitrogen removal and N2O emission characteristics of the intermittent aeration activated sludge process, Rev. Environ. Sci. Bio/Technol., 16 (2017) 761–780.
  24. T. Yi, W.F. Happer Jr., The link between nitrification and biotransformation of 17a-thinylestradiol, Environ. Sci. Technol., 41 (2007) 4311–4316.
  25. Q. Sun, Y. Li, P.H. Chou, P.Y. Peng, C.P. Yu, Transformation of bisphenol A and alkylphenols by ammonia-oxidizing bacteria through nitration, Environ. Sci. Technol., 46 (2012) 4442–4448.
  26. E. Fernandez-Fontaina, F. Omil, J.M. Lema, M. Crballa, Influence of nitrifying conditions on the biodegradation and sorption of emerging micropollutants, Water Res., 46 (2012) 5434–5444.
  27. A.L. Batt, S. Kim, D.S. Aga, Enhanced biodegradation of iopromide and trimethoprim in nitrifying activated sludge, Environ. Sci. Technol., 40 (2006) 7367–7373.
  28. J. Sipma, B. Osuna, N. Collado, H. Monclús, G. Ferrero, J. Comas, I. Rodriguez-Roda, Comparison of removal of pharmaceuticals in MBR and activated sludge systems, Desalination, 250 (2010) 653–659.
  29. X. Zhao, X. Wang, Z. Chen, H. Xu, Q. Zhang, Microbial community structure and pharmaceuticals and personal care products removal in a membrane bioreactor seeded with aerobic granular sludge, Appl. Microbiol. Biotechnol., 99 (2015) 425–433.
  30. P. Grenni, L. Patrolecco, N. Ademollo, A. Tolomei, A.B. Caracciolo, Degradation of gemfibrozil and naproxen in a river water ecosystem, Microchem. J., 107 (2013) 158–164.
  31. J.R. Lawrence, G.D. Swerhone, L.I. Wassenaar, T.R. Neu, Effects of selected pharmaceuticals on riverine biofilm communities, Can. J. Microbiol., 51 (2005) 655–669.
  32. H. Roh, N. Subramanya, F. Zhao, C.P. Yu, J. Sandt, K.H. Chu, Biodegradation potential of wastewater micropollutants by ammonia-oxidizing bacteria, Chemosphere, 77 (2009) 1084–1089.
  33. N.H. Tran, T. Urase, O. Kusakabe, The characteristics of enriched nitrifier culture in the degradation of selected pharmaceutically active compounds, J. Hazard. Mater., 171 (2009) 1051–1057.
  34. K. Fischer, M. Majewsky, Cometabolic degradation of organic wastewater micropollutants by activated sludge and sludgeinherent microorganisms, Appl. Microbiol. Biotechnol., 98 (2014) 6583–6597.
  35. Y.D. Scherson, G.F. Wells, S.G. Woo, J. Lee, J. Park, B.J. Cantwell, C.S. Criddle, Nitrogen removal with energy recovery through N2O decomposition, Energy Environ. Sci., 6 (2013) 241–248.
  36. J. Miao, Y. Zhao, G. Wu, Effect of organic carbons on microbial activity and structure in denitrifying systems acclimated to nitrite as the electron acceptor, Int. Biodeterior. Biodegrad., 118 (2017) 66–72.