References

  1. A. Amouei, H.A. Asgharnia, A.A. Mohammadi, H. Fallah, R. Dehghani, M.B. Miranzadeh, Investigation of hospital wastewater treatment plant efficiency in the north of Iran during 2010–2011, Int. J. Phys. Sci., 7 (2012) 5213–5217.
  2. X. Luo, Q. Yan, C. Wang, C. Luo, N. Zhou, C. Jian, Treatment of ammonia nitrogen wastewater in low concentration by two-stage ozonization, Int. J. Environ. Res. Public Health, 12 (2015) 11975–11987.
  3. Y.K. Ip, S.F. Chew, D.J. Randall, Ammonia toxicity, tolerance, and excretion, Fish Physiol., 20 (2001) 109–148.
  4. M.S. Ayilara, O.S. Olanrewaju, O.O. Babalola, O. Odeyemi, Waste management through composting: challenges and potentials, Sustainability, 12 (2020) 1–23, doi: 10.3390/su12114456.
  5. F. Takeda, K. Komori, M. Minamiyama, S. Okamoto, Toxicity of wastewater with regard to ammonia evaluated by algal growth inhibition test: a case study using wastewater treatment pilot plant, Jpn. J. Water Treat. Biol., 52 (2016) 93–104.
  6. A. Majumder, A.K. Gupta, P.S. Ghosal, M. Varma, A review on hospital wastewater treatment: a special emphasis on occurrence and removal of pharmaceutically active compounds, resistant microorganisms, and SARS-CoV-2, J. Environ. Chem. Eng., 9 (2021) 1–20, doi: 10.1016/j.jece.2020.104812.
  7. P. Verlicchi, M. Al Aukidy, E. Zambello, What have we learned from worldwide experiences on the management and treatment of hospital effluent? — An overview and a discussion on perspectives, Sci. Total Environ., 514 (2015) 467–491.
  8. H. Al Qarni, P. Collier, J. O’Keeffe, J. Akunna, Investigating the removal of some pharmaceutical compounds in hospital wastewater treatment plants operating in Saudi Arabia, Environ. Sci. Pollut. Res., 23 (2016) 13003–13014.
  9. M. Jain, A. Majumder, P.S. Ghosal, A.K. Gupta, A review on treatment of petroleum refinery and petrochemical plant wastewater: a special emphasis on constructed wetlands, J. Environ. Manage., 272 (2020) 1–21, doi:10.1016/j. jenvman.2020.111057.
  10. P. Seruga, M. Krzywonos, J. Pyżanowska, A. Urbanowska, H. Pawlak-Kruczek, L. Niedźwiecki, Removal of ammonia from the municipal waste treatment effluents using natural minerals, Molecules, 24 (2019) 1–13, doi: 10.3390/molecules24203633.
  11. X. Zhang, W. Li, E.R. Blatchley, X. Wang, P. Ren, UV/chlorine process for ammonia removal and disinfection by-product reduction: comparison with chlorination, Water Res., 68 (2015) 804–811.
  12. N. Segond, Y. Matsumura, K. Yamamoto, Determination of ammonia oxidation rate in sub- and supercritical water, Ind. Eng. Chem. Res., 41 (2002) 6020–6027.
  13. J.S. Sudarsan, K. Renganathan, C. Ann, Cost effective method for ammoniacal nitrogen removal using SBR coupled photobioreactor, Int. J. Environ. Res., 2 (2011) 68–72.
  14. M.K. Ghose, Complete physico-chemical treatment for coke plant effluents, Water Res., 36 (2002) 1127–1134.
  15. S.U. Demirer, G.N. Demirer, S. Chen, Ammonia removal from anaerobically digested dairy manure by struvite precipitation, Process Biochem., 40 (2005) 3667–3674.
  16. P. Vassileva, P. Tzvetkova, R. Nickolov, Removal of ammonium ions from aqueous solutions with coal-based activated carbons modified by oxidation, Fuel, 88 (2008) 387–390.
  17. G. Moussavi, S. Talebi, M. Farrokhi, R.M. Sabouti, The investigation of mechanism, kinetic and isotherm of ammonia and humic acid co-adsorption onto natural zeolite, Chem. Eng. J., 171 (2011) 1159–1169.
  18. A. Felani, M., Hamzah, Fitomremediation of tapioca industry liquid waste with water hyacinth, Buana Sains., 7 (2007) 11–20.
  19. T.H. Muster, J. Jermakka, Electrochemically-assisted ammonia recovery from wastewater using a floating electrode, Water Sci. Technol., 75 (2017) 1804–1811.
  20. P.H. Duong, C.M. Pham, N.H.T. Huynh, Y.S. Yoon, Removal of ammonia nitrogen in wastewater by indirect mechanism using electrochemical method with platinum electrode as anode, Nat. Environ. Pollut. Technol., 17 (2018) 1331–1338.
  21. U. Ghimire, M. Jang, S.P. Jung, D. Park, S.J. Park, H. Yu, S.E. Oh, Electrochemical removal of ammonium nitrogen and COD of domestic wastewater using platinum-coated titanium as an anode electrode, Energies, 12 (2019) 1–13.
  22. J. Shu, R. Liu, Z. Liu, J. Du, C. Tao, Manganese recovery and ammonia nitrogen removal from simulation wastewater by pulse electrolysis, Sep. Purif. Technol., 168 (2016) 107–113.
  23. L. Li, C. Song, Y. Huang, Y. Zhou, Enhanced electrolytic removal of ammonia from the aqueous phase with a zeolite-packed electrolysis reactor under a continuous mode, J. Environ. Eng., 141 (2015) 1–8.
  24. Y. Wang, X. Guo, J. Li, Y. Yang, Z. Lei, Z. Zhang, Efficient electrochemical removal of ammonia with various cathodes and Ti/RuO2-Pt anode, Open J. Appl. Sci., 2 (2012) 241–247.
  25. W.Y. Kim, D.J. Son, C.Y. Yun, D.G. Kim, D. Chang, Y. Sunwoo, K.H. Hong, Performance assessment of electrolysis using copper and catalyzed electrodes for enhanced nutrient removal from wastewater, J. Electrochem. Sci. Technol., 8 (2017) 124–132.
  26. L. Li, J. Yao, X. Fang, Y. Huang, Y. Mu, Electrolytic ammonia removal and current efficiency by a vermiculite-packed electrochemical reactor, Sci. Rep., 7 (2017) 41030.
  27. Y. Liu, L. Li, R. Goel, Kinetic study of electrolytic ammonia removal using Ti/IrO2 as anode under different experimental conditions, J. Hazard. Mater., 167 (2009) 959–965.
  28. Y. Zu, J. Wang, S. Chen, J. Hu, Effect of chloride ion on ammonia electrochemical oxidation, Chin. J. Environ. Eng., 7 (2013) 2619–2623.
  29. J. Chen, H. Shi, J. Lu, Electrochemical treatment of ammonia in wastewater by RuO2-IrO2-TiO2/Ti electrodes,
    J. Appl. Electrochem., 37 (2007) 1137–1144.
  30. K.W. Kim, Y.J. Kim, I.T. Kim, G.I. Park, E.H. Lee, Electrochemical conversion characteristics of ammonia to nitrogen, Water Res., 40 (2006) 1431–1441.
  31. R.B. Baird, A.D. Eaton, E.W. Rice, Standard Methods for the Examination of Water and Wastewater, 23rd ed., APHA (American Public Health Association), 2017.
  32. M. Cooper, G. G. Botte, Hydrogen production from the electrooxidation of ammonia catalyzed by platinum and rhodium on raney nickel substrate, J. Electrochem. Soc., 153 (2006) A1894.
  33. H. Liu, S. Grot, B. E. Logan, Electrochemically assisted microbial production of hydrogen from acetate, Environ. Sci. Technol., 39 (2005) 4317–4320.
  34. G. Vitse, F. Matt, C. Botte, On the use of electrolysis for hydrogen production, J. Power Sources, 142 (2005) 18–26.
  35. L. Zhou, Y. F. Cheng, Catalytic electrolysis of ammonia on platinum in alkaline solution for hydrogen generation, Int. J. Hydrogen Energy, 33 (2008) 5897–5904.