References

  1. G.H. Safari, M. Zarrabi, M. Hoseini, H. Kamani, J. Jaafari, A.H. Mahvi, Trends of natural and acid-engineered pumice onto phosphorus ions in aquatic environment: adsorbent preparation, characterization, and kinetic and equilibrium modeling, Desal. Wat. Treat, 54 (2015) 3031–3043.
  2. D. Naghipour, K. Taghavi, J. Jaafari, Y. Mahdavi, M. Ghanbari Ghozikali, R. Ameri, A. Jamshidi, A. Hossein Mahvi, Statistical modeling and optimization of the phosphorus biosorption by modified Lemna minor from aqueous solution using response surface methodology (RSM), Desal. Wat. Treat., 57 (2016) 19431–19442.
  3. A.H. Mahvi, A.R. Mesdaghi Nia, F. Karkani, Biological Phosphorous removal from wastewater using continuous flow sequency batch reactors (SBR), J. Shahid Sadoughi Univ. Med. Sci., 1 (2004) 72–80.
  4. Ş. İrdemez, N. Demirciogˇ lu, Y.Ş. Yıldız, Z. Bingül, The effects of current density and phosphate concentration on phosphate removal from wastewater by electrocoagulation using aluminum and iron plate electrodes, Sep. Purif. Technol., 52 (2006) 218–223.
  5. A.R. Mesdaghinia, D. Rabbani, S. Nasseri, F. Vaezi, Effect of coagulants on electrochemical process for phosphorus removal from activated sludge effluent, Iran. J. Public Health, 32 (2003) 45–51.
  6. M.A. Zazouli, E. Bazrafshan, Water & Wastewater Technology, Samat, Tehran, Iran, 2009.
  7. J. Jaafari, M. Seyedsalehi, G. Safari, M.E. Arjestan, H. Barzanouni, S. Ghadimi, H. Kamani, P. Haratipour, Simultaneous biological organic matter and nutrient removal in an anaerobic/anoxic/oxic (A2O) moving bed biofilm reactor (MBBR) integrated system, Int. J. Environ. Sci. Technol., 14 (2017) 291–304.
  8. M. Seyedsalehi, J. Jaafari, C. Hélix-Nielsen, G. Hodaifa, M. Manshouri, S. Ghadimi, H. Hafizi, H. Barzanouni, Evaluation of moving-bed biofilm sequencing batch reactor (MBSBR) in operating A2O process with emphasis on biological removal of nutrients existing in wastewater, Int. J. Environ. Sci. Technol., 15 (2018) 199–206.
  9. M. Behbahani, M.R. Alavi Moghaddam, M. Arami, A comparison between aluminum and iron electrodes on removal of phosphate from aqueous solutions by electrocoagulation process, Int. J. Environ. Sci. Technol., 5 (2011) 403–412.
  10. M. Özacar, I.A. Şengil, Enhancing phosphate removal from wastewater by using polyelectrolytes and clay injection, J. Hazard. Mater., 100 (2003) 131–146.
  11. E. Lacasa, P. Cañizares, C. Sáez, F.J. Fernández, M.A. Rodrigo, Electrochemical phosphates removal using iron and aluminium electrodes, Chem. Eng. J., 172 (2011) 137–143.
  12. Environmental Protection Organization, Environmental Protection Organization Standard and Regulations, Tehran, Iran, 1998.
  13. K. Sharafi, M. Moradi, A. Karami, T. Khosravi, Comparison of the efficiency of extended aeration activated sludge system and stabilization ponds in real scale in the removal of protozoan cysts and parasite ova from domestic wastewater using Bailenger method: a case study, Kermanshah, Iran, Desal. Wat. Treat., 55 (2015) 1135–1141.
  14. J. Jaafari, K. Yaghmaeian, Optimization of heavy metal biosorption onto freshwater algae (Chlorella coloniales) using response surface methodology (RSM), Chemosphere, 217 (2019) 447–455.
  15. J. Jaafaria, K. Yaghmaeiana, Response surface methodological approach for optimizing heavy metal biosorption by the bluegreen alga Chroococcus disperses, Desal. Wat. Treat., 142 (2019) 225–234.
  16. M. Pirsaheb, M. Mohamadi, A.M. Mansouri, A.A.L. Zinatizadeh, S. Sumathi, K. Sharafi, Process modeling and optimization of biological removal of carbon, nitrogen and phosphorus from hospital wastewater in a continuous feeding and intermittent discharge (CFID) bioreactor, Korean J. Chem. Eng., 32 (2015) 1340–1353.
  17. K. Sharafi, M. Fazlzadehdavil, M. Pirsaheb, J. Derayat, S. Hazrati, The comparison of parasite eggs and protozoan cysts of urban raw wastewater and efficiency of various wastewater treatment systems to remove them, Ecol. Eng., 44 (2012) 244–248.
  18. K. Sharafi, M. Pirsaheb, T. Khosravi, A. Dargahi, M. Moradi, M. Savadpour, Fluctuation of organic substances, solids, protozoan cysts, and parasite egg at different units of a wastewater integrated stabilization pond (full scale treatment plant): a case study, Iran, Desal. Wat. Treat., 57 (2016) 4913–4919.
  19. M. Pirsaheb, M. Fazlzadehdavil, S. Hazrati, K. Sharafi, T. Khodadadi, Y. Safari, A survey on nitrogen and phosphor compounds variation process in wastewater stabilization ponds, Pol. J. Environ. Stud., 23 (2014) 831–834.
  20. S. Rybicki, Advanced Wastewater Treatment: Phosphorus Removal from Wastewater - A literature Review, Royal Institute of Technology, Stockholm, Sweden, 1997.
  21. P. Drogui, M. Asselin, S.K. Brar, H. Benmoussa, J.F. Blais, Electrochemical removal of pollutants from agro-industry wastewaters, Sep. Purif. Technol., 61 (2008) 301–310.
  22. A. Kiani, P. Haratipour, M. Ahmadi, R. Zare-Dorabei, A. Mahmoodi, Efficient removal of some anionic dyes from aqueous solution using a polymer-coated magnetic nano-adsorbent, J. Water Supply Res. Technol. AQUA, 66 (2017) 239–248.
  23. A. Mesdaghinia, K. Naddafi, R. Nabizadeh, R. Saeedi, M. Zamanzadeh, Wastewater characteristics and appropriate method for wastewater management in the hospitals, Iran. J. Public Health, 38 (2009) 34–40.
  24. H.-G. Kim, H.-N. Jang, H.-M. Kim, D.-S. Lee, T.-H. Chung, Effect of an electro phosphorous removal process on phosphorous removal and membrane permeability in a pilot-scale MBR, Desalination, 250 (2010) 629–633.
  25. M. Eddy, Wastewater Engineering, McGraw Hill, London, UK, 2003.
  26. M. Morita, H. Uemoto, A. Watanabe, Nitrogen-removal bioreactor capable of simultaneous nitrification and denitrification for application to industrial wastewater treatment, Biochem. Eng. J., 41 (2008) 59–66.
  27. R. Saeedi, K. Naddafi, R. Nabizadeh, A. Mesdaghinia, S. Nasseri, M. Alimohammadi, S. Nazmara, Simultaneous removal of nitrate and natural organic matter from drinking water using a hybrid heterotrophic/autotrophic/biological activated carbon bioreactor, Environ. Eng. Sci., 29 (2012) 93–100.
  28. M. Abtahi, K. Naddafi, A. Mesdaghinia, K. Yaghmaeian, R. Nabizadeh, N. Jaafarzadeh, N. Rastkari, S. Nazmara, R. Saeedi, Removal of dichloromethane from waste gas streams using a hybrid bubble column/biofilter bioreactor, J. Environ. Health Sci. Eng., 12 (2014) 22.
  29. M. Nikimalekie, Phosphorus removal from municipal wastewater by using aerobic-anaerobic sequencing batch reactors, MS Thesis in Environmental Engineering, Tehran University, Iran, 1998.
  30. E.M. Rashed, M. Massoud, The effect of effective microorganisms (EM) on EBPR in modified contact stabilization system, HBRC J., 11 (2015) 384–392.
  31. E.M. Rashed, M.M. El-Shafei, M.A. Heikal, A.M. Noureldin, Application of contact stabilization activated sludge for enhancing biological phosphorus removal (EBPR) in domestic wastewater, HBRC J., 10 (2014) 92–99.
  32. WEF, APHA, Standard Methods for the Examination of Water and Wastewater, American Public Health Association (APHA), Washington, D.C., USA, 2005.
  33. J. Jaafari, A. Mesdaghinia, R. Nabizadeh, M. Hoseini, A.H. Mahvi, Influence of upflow velocity on performance and biofilm characteristics of Anaerobic Fluidized Bed Reactor (AFBR) in treating high-strength wastewater, J. Environ. Health Sci. Eng., 12 (2014) 139.
  34. J. Jafari, A. Mesdaghinia, R. Nabizadeh, M. Farrokhi, A.H. Mahvi, Investigation of anaerobic fluidized bed reactor/aerobic moving bed bio reactor (AFBR/MMBR) system for treatment of currant wastewater, Iran. J. Public Health, 42 (2013) 860.
  35. W. Zhang, Y. Peng, N. Ren, Q. Liu, Y. Chen, Improvement of nutrient removal by optimizing the volume ratio of anoxic to aerobic zone in AAO-BAF system, Chemosphere, 93 (2013) 2859–2863.
  36. G. Tchobanoglous, F.L. Burton, H.D. Stensel, Wastewater Engineering Treatment and Reuse, McGraw-Hill Higher Education, Boston, US, 2003.
  37. N. Shen, Y. Zhou, Enhanced biological phosphorus removal with different carbon sources, Appl. Microbiotech., 100 (2016) 4735–4745.
  38. W. Zhao, Y. Zhang, D. Lv, M. Wang, Y. Peng, B. Li, Advanced nitrogen and phosphorus removal in the pre-denitrification anaerobic/anoxic/aerobic nitrification sequence batch reactor (pre-A2NSBR) treating low carbon/nitrogen (C/N) wastewater, Chem. Eng. J., 302 (2016) 296–304.
  39. S. Chae, H.-S. Shin, Characteristics of simultaneous organic and nutrient removal in a pilot-scale vertical submerged membrane bioreactor (VSMBR) treating municipal wastewater at various temperatures, Process Biochem., 42 (2007) 193–198.
  40. S. Yang, F. Yang, Z. Fu, T. Wang, R. Lei, Simultaneous nitrogen and phosphorus removal by a novel sequencing batch moving bed membrane bioreactor for wastewater treatment, J. Hazard. Mater., 175 (2010) 551–557.
  41. H.-L. Zhang, W. Fang, Y.-P. Wang, G.-P. Sheng, R.J. Zeng, W.-W. Li, H.-Q. Yu, Phosphorus removal in an enhanced biological phosphorus removal process: roles of extracellular polymeric substances, Environ. Sci. Technol., 47 (2013) 11482–11489.
  42. Y. Pan, W. Ruan, Y. Huang, Q. Chen, H. Miao, T. Wang, Performance of enhanced biological phosphorus removal and population dynamics of phosphorus accumulating organisms in sludge-shifting sequencing batch reactors, Water Sci. Technol., 78 (2018) 886–895.