References

  1. J. Surmacz-Górska, Degradation of Organic Compounds Contained in the Leachate From Landfills, Monograph No. 5, Lublin, 2001. (in Polish)
  2. S. Renou, J.G. Givaudan, F. Dirassouyan, P. Moulin, Landfill leachate treatment: review and opportunity, J. Hazard. Mater., 150 (2008) 468–493.
  3. D. Trebouet, J.P. Schlumpf, P. Jaouen, F. Quemeneur, Stabilized landfill leachate treatment by combined physicochemicalnanofiltration processes, Water Res., 3 (2001) 2935–2942.
  4. K. Szymański, Lead and chromium compounds in the natural environment and wastes, Annu. Set Environ. Prot., 11 (2009) 173–182.
  5. A. Jemec, T. Tišler, A. Žgajnar-Gotvajn, Assessment of landfill leachate toxicity reduction after biological treatment, Arch. Environ. Contam. Toxicol., 62 (2012) 210–221.
  6. A. Lipniacka-Piaskowska, Operation of Landfills with Leachate Recirculation, Ph.D. Dissertation, Faculty of Chemical Technology and Engineering, West Pomeranian University of Technology in Szczecin, Szczecin, 2010. (in Polish)
  7. J. Długosz, Characteristics of the composition and quantity of leachate from municipal landfills – a review, Arch. Waste Manage. Environ. Prot., 14 (2012) 19–30.
  8. T.A. Kurniawan, W.H. Lo, G.Y.S. Chan, Physico-chemical treatments for removal of recalcitrant contaminants from landfill leachate, J. Hazard. Mater., B, 129 (2006) 80–100.
  9. A.A. Tatsi, A.I. Zouboulis, A field investigation of the quantity and quality of leachate from a municipal solid waste landfill in Mediterranean climate (Thesaloniki, Greece), Adv. Environ. Res., 6 (2002) 207–219.
  10. C. Rosik-Dulewska, Basics of Waste Management, PWN, Warsaw, 2002. (in Polish)
  11. S. Fudala-Książek, The Impact of Landfill Leachate Discharge on the Efficiency of Urban Sewage Treatment Plant Operation, Ph.D. Dissertation, Gdansk University of Technology, Gdansk, 2011. (in Polish)
  12. D. Kulikowska, E. Klimiuk, The effect of landfill age on municipal leachate composition, Bioresour. Technol., 99 (2008) 5981–5985.
  13. K. Szymański, R. Nowak, Transformations of leachate as a result of technical treatment at municipal waste landfills, Annu. Set Environ. Prot., 14 (2012) 337–350. (in Polish)
  14. I.A. Tałałaj, Release of heavy metals from waste into leachate in active solid waste landfill, Environ. Prot. Eng., 41 (2015) 83–93.
  15. A.B. Yahmed, N. Saidi, I. Trabelsi, F. Murano, T. Dhaifallah, L. Bousselmi, A. Ghrabi, Microbial characterization during aerobic biological treatment of landfill leachate, Desalination, 246 (2009) 378–388.
  16. S. Theepharaksapan, C. Chiemchaisri, W. Chiemchaisri, K. Yamamoto, Removal of pollutants and reduction of bio-toxicity in a full scale chemical coagulation and reverse osmosis leachate treatment system, Bioresour. Technol., 102 (2011) 5381–5388.
  17. F.N. Ahmed, Ch.Q. Lan, Treatment of landfill leachate using membrane bioreactors: a review, Desalination, 287 (2012) 41–45.
  18. E. Rezaie, M. Sadeghi, G.S. Khoramabadi, Removal of organic materials and hexavalent chromium from landfill leachate using a combination of electrochemical and photocatalytic processes, Desal. Wat. Treat., 85 (2017) 264–270.
  19. M. Sadeghi, A. Fadaei, M. Tadrisi, A. Bay, A. Naghizadeh, Performance evaluation of a biological landfill leachate treatment plant and effluent treatment by electrocoagulation, Desal. Wat. Treat., 115 (2018) 82–87.
  20. A. Serdarevic, Landfill Leachate Management - Control and Treatment, M. Hadžikadić, S. Avdaković, Eds., Advanced Technologies, Systems, and Applications II. Lecture Notes in Networks and Systems, Springer, Cham, 2017.
  21. H. Omar, S. Rohani, Treatment of landfill waste, leachate and landfill gas: a review, Front. Chem. Sci. Eng., 9 (2015) 15–32.
  22. M. Dudziak, M. Bodzek, A study of selected phytoestrogens retention by reverse osmosis and nanofiltration membranes – the role of fouling and scaling, Chem. Pap., 64 (2010) 139–146.
  23. R. Rautenbach, Membrane Processes, Publisher of Science and Technology, Warsaw, 1996. (in Polish)
  24. M. Smol, M. Włodarczyk-Makuła, Effectiveness in the removal of organic compounds from municipal landfill leachate in integrated membrane systems: coagulation – NF/RO, Polycyclic Aromat. Compd., 37 (2016) 1–19.
  25. M. Smol, M. Włodarczyk-Makuła, K. Mielczarek, J. Bohdziewicz, D. Włóka, The use of reverse osmosis in the removal of pahs from municipal landfill leachate, Polycyclic Aromat. Compd., 36 (2016) 20–39.
  26. S.S. Shenvi, A.M. Isloor, A.F. Ismail, A review on RO membrane technology: developments and challenges, Desalination, 368 (2015) 10–26.
  27. M. Smol, M. Włodarczyk-Makuła, K. Mielczarek, J. Bohdziewicz, Comparison of the retention of selected PAHs from municipal landfill leachate by RO and UF processes, Desal. Wat. Treat., 52 (2014) 3889–3897.
  28. Q.-Q. Zhang, B.-H. Tian, X. Zhang, A. Ghulam, C.-R. Fang, R. He, Investigation on characteristic of leachate and concentrated leachate in three landfill leachate treatment plants, Waste Manage., 33 (2013) 2277–2286.
  29. Y.S. Hunce, D. Akgul, G. Demir, B. Mertoglu, Solodification/stabilization of landfill leachate concentrate using different aggregate materials, Waste Manage., 32 (2012) 1394–1400.
  30. J. Bohdziewicz, A. Kwarciak, The application of hybrid system UASB reactor – RO in landfill leachate treatment, Desalination, 222 (2008) 128–134.
  31. A.H. Robinson, Landfill leachate treatment, Membr. Technol., 6 (2005) 6–12.
  32. W.Y. Ahn, M.S. Kang, S.K. Yim, K.H. Choi, Advanced landfill leachate treatment using an integrated membrane process, Desalination, 149 (2002) 109–114.
  33. M. Šir, M. Podhola, T. Patočka, Z. Nonzajková, M. Kocurek, M. Kubal, M. Kuraš, The effect of humic acids on the reverse osmosis treatment of hazardous landfill leachate, J. Hazard. Mater., 207–208 (2012) 86–90.
  34. A. Chianese, R. Ranauro, N. Verdone, Treatment of landfill leachate by reverse osmosis, Water Res., 33 (1999) 647–652.
  35. E.W. Rice, F.B. Baird, A.D. Eaton, L.S. Clesceri, Standard Methods for the Examination of Water and Wastewater, 22nd ed., American Public Health Association, American Water Works Association, Water Environment Federation, Washington D.C., 2012.
  36. Membrane Filtration, Guidance Manual, United states Environmental Protection Agency, Office of Water, EPA 815-R- 06–009, 2005.
  37. E.-E. Chang, S.-Y. Yang, C.-P. Huang, P.-C. Chiang, Assessing the fouling mechanism of high pressure nanofiltration membrane using the modified Hermia model and the resistance-in-seriesmodel, Sep. Purif. Technol., 79 (2011) 329–336.
  38. M. Kabsch-Korbutowicz, K. Majewska-Nowak, Ultrafiltration removal of humus acids from aqueous solutions in the presence of mineral salts, Environ. Prot., 1 (1996) 31–34. (in Polish)
  39. S.K. Singh, T.G. Townsend, T.H. Boyer, Evaluation of coagulation (FeCl3) and anion exchange (MIEX) for stabilized landfill leachate treatment and high-pressure membrane pretreatment, Sep. Purif. Technol., 96 (2012) 98–106.
  40. K. Košutić, D. Dolar, T. Strmecky, Treatment of landfill leachate by membrane processes of nanofiltration and reverse osmosis, Desal. Wat. Treat., 55 (2015) 2680–2689.
  41. Y. Peng, Perspectives on technology for landfill leachate treatment, Arab. J. Chem., 10 (2017) 2567–2574.
  42. S. Lee, W.S. Ang, M. Elimelech, Fouling of reverse osmosis membranes by hydrophilic organic matter: implications for water reuse, Desalination, 187 (2006) 313–321.