References

  1. J.L. de Morais, P.P. Zamora, Use of advanced oxidation processes to improve the biodegradability of mature landfill leachates, J. Hazard. Mater., 123 (2005) 181–186.
  2. N.M. Ghazi, A.A. Lastra, M.J. Watts, Hydroxyl radical (OH) scavenging in young and mature landfill leachates, Water Res., 56 (2014) 148–155.
  3. Z. Youcai, Chapter 2: Physical and Chemical Treatment Processes for Leachate, Z. Youcai, Ed., Pollution Control Technology for Leachate from Municipal Solid Waste, Matthew Deans, Elsevier, 2018, pp. 31–183, https://doi.org/10.1016/ B978-0-12-815813-5.00002-4.
  4. Z.-Y. Han, D. Liu, Q.-B. Li, A removal mechanism for organics and nitrogen in treating leachate using a semi-aerobic aged refuse biofilter, J. Environ. Manage., 114 (2013) 336–342.
  5. Z.-Y. Han, D. Liu, Q.-B. Li, G.-Z. Li, Z.-Y. Yin, X. Chen, J.-N. Chen, A novel technique of semi-aerobic aged refuse biofilter for leachate treatment, Waste Manage., 31 (2011) 1827–1832.
  6. L. Yang, X.-H. Wang, S. Cui, Y.-X. Ren, J. Yu, N. Chen, Q. Xiao, L.-K. Guo, R.-H. Wang, Simultaneous removal of nitrogen and phosphorous by heterotrophic nitrification-aerobic denitrification of a metal resistant bacterium Pseudomonas putida strain NP5, Bioresour. Technol., 285 (2019) 121360, https://doi. org/10.1016/j.biortech.2019.121360.
  7. J. Liu, Z. Tian, P. Zhang, G. Qiu, Y. Wu, H. Zhang, R. Xu, W. Fang, J. Ye, Y. Song, G. Zeng, Influence of reflux ratio on two-stage anoxic/oxic with MBR for leachate treatment: performance and microbial community structure, Bioresour. Technol., 256 (2018) 69–76.
  8. M.J.K. Bashir, H.A. Aziz, S.S.A. Amr, S.a.p. Sethupathi, C.A. Ng, J.W. Lim, The competency of various applied strategies in treating tropical municipal landfill leachate, Desal. Water Treat., 54 (2015) 2382–2395.
  9. S.M.A. Abuabdou, W. Ahmad, N.C. Aun, M.J.K. Bashir, A review of anaerobic membrane bioreactors (AnMBR) for the treatment of highly contaminated landfill leachate and biogas production: effectiveness, limitations and future perspectives, J. Cleaner Prod., 255 (2020) 120215, https://doi. org/10.1016/j.jclepro.2020.120215.
  10. Z. Gu, W. Chen, F. Wang, Q. Li, A pilot-scale comparative study of bioreactor landfills for leachate decontamination and municipal solid waste stabilization, Waste Manage., 103 (2020) 113–121.
  11. L. Bilińska, K. Blus, M. Gmurek, S. Ledakowicz, Coupling of electrocoagulation and ozone treatment for textile wastewater reuse, Chem. Eng. J., 358 (2019) 992–1001.
  12. N. Amaral-Silva, R.C. Martins, S. Castro-Silva, R.M. Quinta- Ferreira, Ozonation and perozonation on the biodegradability improvement of a landfill leachate, J. Environ. Chem. Eng., 4 (2016) 527–533.
  13. M. Bourgin, B. Beck, M. Boehler, E. Borowska, J. Fleiner, E. Salhi, R. Teichler, U. von Gunten, H. Siegrist, C.S. McArdell, Evaluation of a full-scale wastewater treatment plant upgraded with ozonation and biological post-treatments: abatement of micropollutants, formation of transformation products and oxidation by-products, Water Res., 129 (2018) 486–498.
  14. W. Chen, Z. Gu, P. Wen, Q. Li, Degradation of refractory organic contaminants in membrane concentrates from landfill leachate by a combined coagulation-ozonation process, Chemosphere, 217 (2019) 411–422.
  15. W. Chen, A. Zhang, G. Jiang, Q. Li, Transformation and degradation mechanism of landfill leachates in a combined process of SAARB and ozonation, Waste Manage., 85 (2019) 283–294.
  16. Q. Dai, L. Chen, W. Chen, J. Chen, Degradation and kinetics of phenoxyacetic acid in aqueous solution by ozonation, Sep. Purif. Technol., 142 (2015) 287–292.
  17. A. Zhang, Z. Gu, W. Chen, Q. Li, G. Jiang, Removal of refractory organic pollutants in reverse-osmosis concentrated leachate by microwave–Fenton process, Environ. Sci. Pollut. Res., 25 (2018) 28907–28916.
  18. G. Zhang, L. Qin, Q. Meng, Z. Fan, D. Wu, Aerobic SMBR/ reverse osmosis system enhanced by Fenton oxidation for advanced treatment of old municipal landfill leachate, Bioresour. Technol., 142 (2013) 261–268.
  19. Z. Zhao, Z. Liu, H. Wang, W. Dong, W. Wang, Sequential application of Fenton and ozone-based oxidation process for the abatement of Ni-EDTA containing nickel plating effluents, Chemosphere, 202 (2018) 238–245.
  20. S.S. Abu Amr, H.A. Aziz, M.N. Adlan, M.J.K. Bashir, Optimization of semi-aerobic stabilized leachate treatment using ozone/Fenton’s reagent in the advanced oxidation process, J. Environ. Sci. Health, Part A, 48 (2013) 720–729.
  21. C. von Sonntag, U. von Gunten, Chemistry of Ozone in Water and Wastewater Treatment: From Basic Principles to Applications, IWA Publishing, London, UK, 2012.
  22. S. Lim, C.S. McArdell, U. von Gunten, Reactions of aliphatic amines with ozone: kinetics and mechanisms, Water Res., 157 (2019) 514–528.
  23. A. El-Ghenymy, S. Garcia-Segura, R.M. Rodríguez, E. Brillas, M.S. El Begrani, B.A. Abdelouahid, Optimization of the electro-Fenton and solar photoelectro-Fenton treatments of sulfanilic acid solutions using a pre-pilot flow plant by response surface methodology, J. Hazard. Mater., 221–222 (2012) 288–297.
  24. M. Verma, A.K. Haritash, Degradation of amoxicillin by Fenton and Fenton-integrated hybrid oxidation processes, J. Environ. Chem. Eng., 7 (2019) 102886, https://doi. org/10.1016/j.jece.2019.102886.
  25. M.-h. Zhang, H. Dong, L. Zhao, D.-x. Wang, D. Meng, A review on Fenton process for organic wastewater treatment based on optimization perspective, Sci. Total Environ., 670 (2019) 110–121.
  26. T. Sruthi, R. Gandhimathi, S.T. Ramesh, P.V. Nidheesh, Stabilized landfill leachate treatment using heterogeneous Fenton and electro-Fenton processes, Chemosphere, 210 (2018) 38–43.
  27. S.S. Abu Amr, H.A. Aziz, New treatment of stabilized leachate by ozone/Fenton in the advanced oxidation process, Waste Manage., 32 (2012) 1693–1698.
  28. Z. Wang, J. Li, W. Tan, X. Wu, H. Lin, H. Zhang, Removal of COD from landfill leachate by advanced Fenton process combined with electrolysis, Sep. Purif. Technol., 208 (2019) 3–11.
  29. P.H. Nakhate, H.G. Patil, K.V. Marathe, Intensification of landfill leachate treatment by advanced Fenton process using classical and statistical approach, Chem. Eng. Process. Process Intensif., 133 (2018) 148–159.
  30. X. Ruan, Y. Sun, W. Du, Y. Tang, Q. Liu, Z. Zhang, W. Doherty, R.L. Frost, G. Qian, D.C.W. Tsang, Formation, characteristics, and applications of environmentally persistent free radicals in biochars: a review, Bioresour. Technol., 281 (2019) 457–468.
  31. C. Chen, H. Feng, Y. Deng, Re-evaluation of sulfate radical based–advanced oxidation processes (SR-AOPs) for treatment of raw municipal landfill leachate, Water Res., 153 (2019) 100–107.
  32. X. Gao, C. Leng, G. Zeng, D. Fu, Y. Zhang, Y. Liu, Ozone initiated heterogeneous oxidation of unsaturated carboxylic acids by ATR-FTIR spectroscopy, Spectrochim. Acta, Part A, 214 (2019) 177–183.
  33. N. Panda, H. Sahoo, S. Mohapatra, Decolourization of Methyl Orange using Fenton-like mesoporous Fe2O3–SiO2 composite, J. Hazard. Mater., 185 (2011) 359–365.
  34. Y. Deng, C. Jung, R. Zhao, K. Torrens, L. Wu, Adsorption of UV-quenching substances (UVQS) from landfill leachate with activated carbon, Chem. Eng. J., 350 (2018) 739–746.
  35. A. Gupta, R. Zhao, J.T. Novak, C. Douglas Goldsmith, Application of Fenton’s reagent as a polishing step for removal of UV quenching organic constituents in biologically treated landfill leachates, Chemosphere, 105 (2014) 82–86.
  36. W. Chen, A. Zhang, Z. Gu, Q. Li, Enhanced degradation of refractory organics in concentrated landfill leachate by Fe0/H2O2 coupled with microwave irradiation, Chem. Eng. J., 354 (2018) 680–691.
  37. S. Huo, B. Xi, H. Yu, L. He, S. Fan, H. Liu, Characteristics of dissolved organic matter (DOM) in leachate with different landfill ages, J. Environ. Sci., 20 (2008) 492–498.
  38. S. Cortez, P. Teixeira, R. Oliveira, M. Mota, Ozonation as polishing treatment of mature landfill leachate, J. Hazard. Mater., 182 (2010) 730–734.