References

  1. Z.G. Rahmat, M.V. Niri, N. Alavi, G. Goudarzi, A.A. Babaei, Z. Baboli, M. Hosseinzadeh, Landfill site selection using GIS and AHP: a case study: Behbahan, Iran, KSCE J. Civil. Eng., 21 (2017) 111–118.
  2. P. Ghosh, I.S. Thakur, Enhanced removal of COD and color from landfill leachate in a sequential bioreactor, Bioresour. Technol., 170 (2014) 10–19.
  3. S. Renou, J.G. Givaudan, S. Poulain, F. Dirassouyan, P. Moulin, Landfill leachate treatment: review and opportunity, J. Hazard. Mater., 150 (2008) 468–493.
  4. G. Hassani, A. Babaei, A. Takdastan, M. Shirmardi, F. Yousefian, M. Mohammadi, Occurrence and fate of 17β-estradiol in water resources and wastewater in Ahvaz, Iran, Glob. NEST. J., 18 (2016) 855–866.
  5. M. Keshtkar, S. Dobaradaran, F. Soleimani, V.N. Karbasdehi, M.J. Mohammadi, R. Mirahmadi, F.F. Ghasemi, Data on heavy metals and selected anions in the Persian popular herbal distillates, Data Brief, 8 (2016) 21–25.
  6. M. Mohammadi, J. Salari, A. Takdastan, M. Farhadi, P. Javanmardi, A. Yari, S. Dobaradaran, H. Almasi, S. Rahimi, Removal of turbidity and organic matter from car wash wastewater by electrocoagulation process, Desal. Wat. Treat., 68 (2017) 122–128.
  7. M. Mohammadi, A. Takdastan, S. Jorfi, A. Neisi, M. Farhadi, A. Yari, S. Dobaradaran, Y. Khaniabadi, Electrocoagulation process to chemical and biological oxygen demand treatment from carwash grey water in Ahvaz megacity, Iran, Data Brief, 11 (2017) 634–639.
  8. M.V. Niri, A.H. Mahvi, M. Alimohammadi, M. Shirmardi, H. Golastanifar, M.J. Mohammadi, A. Naeimabadi, M. Khishdost, Removal of natural organic matter (NOM) from an aqueous solution by NaCl and surfactant-modified clinoptilolite, J. Water Health, 13 (2015) 394–405.
  9. N. Reynier, L. Coudert, J.-F. Blais, G. Mercier, S. Besner, Treatment of contaminated soil leachate by precipitation, adsorption and ion exchange, J. Environ. Chem. Eng., 3 (2015) 977–985.
  10. Y. Gong, S. Wang, H. Xu, Y. Guo, X. Tang, Partial oxidation of landfill leachate in supercritical water: optimization by response surface methodology, Waste Manage., 43 (2015) 343–352.
  11. K. Klein, A. Kivi, N. Dulova, I. Zekker, E. Mölder, T. Tenno, M. Trapido, T. Tenno, A pilot study of three-stage biological– chemical treatment of landfill leachate applying continuous ferric sludge reuse in Fenton-like process, Clean Technol. Environ. Policy, 19 (2017) 541–551.
  12. K. Klein, E. Kattel, A. Goi, A. Kivi, N. Dulova, A. Saluste, I. Zekker, M. Trapido, T. Tenno, Combined treatment of pyrogenic wastewater from oil shale retorting, Oil Shale, 34 (2017) 82.
  13. R. He, B.-H. Tian, Q.-Q. Zhang, H.-T. Zhang, Effect of Fenton oxidation on biodegradability, biotoxicity and dissolved organic matter distribution of concentrated landfill leachate derived from a membrane process, Waste Manage., 38 (2015) 232–239.
  14. Y. Yu, Z. Chen, Z. Guo, Z. Liao, L. Yang, J. Wang, Z. Chen, Removal of refractory contaminants in municipal landfill leachate by hydrogen, oxygen and palladium: a novel approach of hydroxyl radical production, J. Hazard. Mater., 287 (2015) 349–355.
  15. R. Bakhshoodeh, N. Alavi, A.S. Mohammadi, H. Ghanavati, Removing heavy metals from Isfahan composting leachate by horizontal subsurface flow constructed wetland, Environ. Sci. Pollut. Res., 23 (2016) 12384–12391.
  16. R. Bakhshoodeh, N. Alavi, M. Majlesi, P. Paydary, Compost leachate treatment by a pilot-scale subsurface horizontal flow constructed wetland, Ecol. Eng., 105 (2017) 7–14.
  17. M. Cotman, A.Ž. Gotvajn, Comparison of different physicochemical methods for the removal of toxicants from landfill leachate, J. Hazard. Mater., 178 (2010) 298–305.
  18. S.S. Shalini, K. Joseph, Nitrogen management in landfill leachate: application of SHARON, ANAMMOX and combined SHARON–ANAMMOX process, Waste Manage., 32 (2012) 2385–2400.
  19. S.W. Van Hulle, H.J. Vandeweyer, B.D. Meesschaert, P.A. Vanrolleghem, P. Dejans, A. Dumoulin, Engineering aspects and practical application of autotrophic nitrogen removal from nitrogen rich streams, Chem. Eng. J., 162 (2010) 1–20.
  20. L.-k. Wang, G.-m. Zeng, Z.-h. Yang, L.-l. Luo, H.-y. Xu, J. Huang, Operation of partial nitrification to nitrite of landfill leachate and its performance with respect to different oxygen conditions, Biochem. Eng. J., 87 (2014) 62–68.
  21. I. Zekker, E. Rikmann, K. Kroon, A. Mandel, J. Mihkelson, T. Tenno, Ameliorating nitrite inhibition in a low-temperature nitritation–anammox MBBR using bacterial intermediate nitric oxide, Int. J. Environ. Sci. Technol., 14 (2017) 2343–2356.
  22. T. Tenno, K. Uiga, A. Mashirin, I. Zekker, E. Rikmann, Modeling closed equilibrium systems of H2O–dissolved CO2–solid CaCO3, J. Phys. Chem. A, 121 (2017) 3094–3100.
  23. M. Raudkivi, I. Zekker, E. Rikmann, P. Vabamäe, K. Kroon, T. Tenno, Nitrite inhibition and limitation–the effect of nitrite spiking on anammox biofilm, suspended and granular biomass, Water. Sci. Technol., 75 (2017) 313–321.
  24. L. Daija, A. Selberg, E. Rikmann, I. Zekker, T. Tenno, T. Tenno, The influence of lower temperature, influent fluctuations and long retention time on the performance of an upflow mode laboratory-scale septic tank, Desal. Wat. Treat., 57 (2016) 18679–18687.
  25. M. Strous, J. Heijnen, J. Kuenen, M. Jetten, The sequencing batch reactor as a powerful tool for the study of slowly growing anaerobic ammonium-oxidizing microorganisms, Appl. Microbiol. Biotechnol., 50 (1998) 589–596.
  26. 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.
  27. T. Tenno, E. Rikmann, I. Zekker, T. Tenno, L. Daija, A. Mashirin, Modelling Equilibrium Distribution of Carbonaceous Ions and Molecules in a Heterogeneous System of CaCO3-Water-Gas, Proc. Estonian Academy of Sciences, Vol. 65, 2016, pp. 68–77.
  28. I. Zekker, E. Rikmann, A. Mandel, K. Kroon, A. Seiman, J. Mihkelson, T. Tenno, T. Tenno, Step-wise temperature decreasing cultivates a biofilm with high nitrogen removal rates at 9 C in short-term anammox biofilm tests, Environ. Technol., 37 (2016) 1933–1946.
  29. E. Rikmann, I. Zekker, M. Tomingas, T. Tenno, L. Loorits, P. Vabamäe, A. Mandel, M. Raudkivi, L. Daija, K. Kroon, Sulfate-reducing anammox for sulfate and nitrogen containing wastewaters, Desal. Wat. Treat., 57 (2016) 3132–3141.
  30. Y.-H. Ahn, Sustainable nitrogen elimination biotechnologies: a review, Process Biochem., 41 (2006) 1709–1721.
  31. R.-C. Jin, G.-F. Yang, J.-J. Yu, P. Zheng, The inhibition of the anammox process: a review, Chem. Eng. J., 197 (2012) 67–79.
  32. B. Molinuevo, M.C. García, D. Karakashev, I. Angelidaki, Anammox for ammonia removal from pig manure effluents: effect of organic matter content on process performance, Bioresour. Technol., 100 (2009) 2171–2175.
  33. U. van Dongen, M. Jetten, M. Van Loosdrecht, The SHARONAnammox process for treatment of ammonium rich wastewater, Water. Sci. Technol., (2001) 153–160.
  34. C. Fux, H. Siegrist, Nitrogen removal from sludge digester liquids by nitrification/denitrification or partial nitritation/ anammox: environmental and economical considerations, Water. Sci. Technol., 50 (2004) 19–26.
  35. Q.-Q. Chen, H. Chen, Z.-Z. Zhang, L.-X. Guo, R.-C. Jin, Effects of thiocyanate on granule-based anammox process and implications for regulation, J. Hazard. Mater., 321 (2017) 81–91.
  36. P. Huang, S.T. Mukherji, S. Wu, J. Muller, R. Goel, Fate of 17β-estradiol as a model estrogen in source separated urine during integrated chemical P recovery and treatment using partial nitritation-anammox process, Water. Res., 103 (2016) 500–509.
  37. P. Chatterjee, M. Ghangrekar, S. Rao, Development of anammox process for removal of nitrogen from wastewater in a novel self-sustainable biofilm reactor, Bioresour. Technol., 218 (2016) 723–730.
  38. R. Du, S. Cao, S. Wang, M. Niu, Y. Peng, Performance of partial denitrification (PD)-ANAMMOX process in simultaneously treating nitrate and low C/N domestic wastewater at low temperature, Bioresour. Technol., 219 (2016) 420–429.
  39. A.A. Babaei, R. Azadi, N. Jaafarzadeh, N. Alavi, Application and kinetic evaluation of upflow anaerobic biofilm reactor for nitrogen removal from wastewater by Anammox process, Iran. J. Environ. Health Sci. Eng., 10 (2013) 2–7.
  40. W.E. Federation, A.P.H. Association, Standard Methods for the Examination of Water and Wastewater, American Public Health Association (APHA), Washington, DC, USA, 2005.
  41. H.-g. Zhang, S.-q. Zhou, Treating leachate mixture with anaerobic ammonium oxidation technology, J. Central South Univ. Technol., 13 (2006) 663–667.
  42. A. Dapena-Mora, J. Campos, A. Mosquera-Corral, M. Jetten, R. Méndez, Stability of the ANAMMOX process in a gas-lift reactor and a SBR, J. Biotechnol., 110 (2004) 159–170.
  43. A.A. Van de Graaf, P. de Bruijn, L.A. Robertson, M.S. Jetten, J.G. Kuenen, Autotrophic growth of anaerobic ammoniumoxidizing micro-organisms in a fluidized bed reactor, Microbiology, 142 (1996) 2187–2196.
  44. C.-C. Wang, P.-H. Lee, M. Kumar, Y.-T. Huang, S. Sung, J.-G. Lin, Simultaneous partial nitrification, anaerobic ammonium oxidation and denitrification (SNAD) in a full-scale landfillleachate treatment plant, J. Hazard. Mater., 175 (2010) 622–628.
  45. H. Chen, S. Liu, F. Yang, Y. Xue, T. Wang, The development of simultaneous partial nitrification, ANAMMOX and denitrification (SNAD) process in a single reactor for nitrogen removal, Bioresour. Technol., 100 (2009) 1548–1554.
  46. G. Cema, J. Surmacz-Górska, K. Miksch, Implementation of Anammox Process in the Membrane Assisted Bioreactor, Integration and Optimization of Urban Sanitation Systems, Joint Polish-Swedish Seminars, 2004, pp. 81–92.
  47. S. Cho, Y. Takahashi, N. Fujii, Y. Yamada, H. Satoh, S. Okabe, Nitrogen removal performance and microbial community analysis of an anaerobic up-flow granular bed anammox reactor, Chemosphere, 78 (2010) 1129–1135.
  48. I. Tsushima, Y. Ogasawara, T. Kindaichi, H. Satoh, S. Okabe, Development of high-rate anaerobic ammonium-oxidizing (anammox) biofilm reactors, Water. Res., 41 (2007) 1623–1634.
  49. E.S. Chian, F.B. DeWalle, Characterization of soluble organic matter in leachate, Environ. Sci. Technol., 11 (1977) 158–163.
  50. J. Liu, J.e. Zuo, Y. Yang, S. Zhu, S. Kuang, K. Wang, An autotrophic nitrogen removal process: short-cut nitrification combined with ANAMMOX for treating diluted effluent from an UASB reactor fed by landfill leachate, J. Environ. Sci., 22 (2010) 777–783.
  51. Y. He, G. Zhou, Y. Zhao, Nitrification with high nitrite accumulation for the treatment of “old” landfill leachates, Environ. Eng. Sci., 24 (2007) 1084–1094.
  52. Z. Liang, J. Liu, Landfill leachate treatment with a novel process: anaerobic ammonium oxidation (anammox) combined with soil infiltration system, J. Hazard. Mater., 151 (2008) 202–212.
  53. K. Egli, U. Fanger, P.J. Alvarez, H. Siegrist, J.R. van der Meer, A.J. Zehnder, Enrichment and characterization of an anammox bacterium from a rotating biological contactor treating ammonium-rich leachate, Arch. Microbiol., 175 (2001) 198–207.