References

  1. C.K. Jain, I. Ali, Arsenic: occurrence, toxicity and speciation techniques, Water Res., 34 (2000) 4304–4312.
  2. M. Kwon, S. Kim, Y. Jung, T.M. Hwang, M.I. Stefan, J.W. Kang, The impact of natural variation of OH radical demand of drinking water sources on the optimum operation of the UV/H2O2 process, Environ. Sci. Technol., 53 (2019) 3177–3186.
  3. M.K. Li, W.T. Li, Z.M. Qiang, E.R. Blatchley, On-site determination and monitoring of real-time fluence delivery for an operating UV reactor based on a true fluence rate detector, Environ. Sci. Technol., 51 (2017) 8094–8100.
  4. B.B. Shao, H.Y. Dong, B. Sun, X.H. Guan, Role of ferrate(IV) and ferrate(V) in activating ferrate(VI) by calcium sulfite for enhanced oxidation of organic contaminants, Environ. Sci. Technol., 53 (2019) 894–902.
  5. J. Biswakarma, K. Kang, S.C. Borowski, W.D.C. Schenkeveld, S.M. Kraemer, J.G. Hering, S.J. Hug, Fe(II)-catalyzed ligandcontrolled dissolution of iron(hydr)oxides, Environ. Sci. Technol., 53 (2019) 88–97.
  6. X.J. Peng, W.Y. Dou, L.H. Kong, X.Y. Hu, X.L. Wang, Removal of chloride ions from strongly acidic wastewater using Cu(0)/Cu(II): efficiency enhancement by UV irradiation and the mechanism for chloride ions removal, Environ. Sci. Technol., 53 (2019) 383–389.
  7. D.D. Wu, Y. Bai, W. Wang, H.L. Xia, F.T. Tan, S.H. Zhang, B. Su, X.Y. Wang, X.L. Qiao, P.K. Wong, Highly pure MgO2 nanoparticles as robust solid oxidant for enhanced Fentonlike degradation of organic contaminant, J. Hazard. Mater., 374 (2019) 319–328.
  8. F. Gholami, H. Mosmeri, M. Shavandi, S.M.M. Dastgheib, M.A. Amoozegar, Application of encapsulated magnesium peroxide (MgO2) nanoparticles in permeable reactive barrier (PRB) for naphthalene and toluene bioremediation from groundwater, Sci. Total Environ., 655 (2019) 633–640.
  9. T.R. Esch, T. Bredow, Bulk and surface properties of magnesium peroxide MgO2, Appl. Surf. Sci., 389 (2016) 1202–1207.
  10. A.I. Zárate-Guzmán, L.V. González-Gutiérrez, L.A. Godínez, A. Medel-Reyes, F. Carrasco-Marín, L.A. Romero-Cano, Towards understanding of heterogeneous Fenton reaction using carbon-Fe catalysts coupled to in-situ H2O2 electro-generation as clean technology for wastewater treatment, Chemosphere, 224 (2019) 698–706.
  11. Y.S. Pan, X. Li, K. Fu, H.P. Deng, J. Shi, Degradation of metronidazole by UV/chlorine treatment: efficiency, mechanism, pathways and DBPs formation, Chemosphere, 224 (2019) 228–236.
  12. X.D. Zhang, D.Y. Shi, X. Li, Y.J. Zhang, J.J. Wang, J. Fan, Nanoscale dispersing of zero-valent iron on CaCO3 and their significant synergistic effect in high performance removal of lead, Chemosphere, 224 (2019) 390–397.
  13. J. Zou, H.H. Cai, D.Y. Wang, J.Y. Xiao, Z.M. Zhou, B.L. Yuan, Spectrophotometric determination of trace hydrogen peroxide via the oxidative coloration of DPD using a Fenton system, Chemosphere, 224 (2019) 646–652.
  14. Y.X. Huang, A.A. Keller, EDTA functionalized magnetic nanoparticle sorbents for cadmium and lead contaminated water treatment, Water Res., 80 (2015) 159–168.
  15. A. Dura, C.B. Breslin, Electrocoagulation using stainless steel anodes: simultaneous removal of phosphates, Orange II and zinc ions, J. Hazard. Mater., 374 (2019) 152–158.
  16. Z.J. Wen, A.M. Wang, Y.Y. Zhang, S.Y. Ren, X.J. Tian, J.Y. Li, Mineralization of cefoperazone in acid medium by the microwave discharge electrodeless lamp irradiated photoelectro-Fenton using a RuO2/Ti or boron-doped diamond anode, J. Hazard. Mater., 374 (2019) 186–194.
  17. H.Y. Liang, K. Xiao, L.Y. Wei, B. Yang, G. Yu, S.B. Deng, H.B. Duan, C.Z. Zhu, J.Y. Li, J.M. Zhang, Decomplexation removal of Ni(II)-citrate complexes through heterogeneous Fenton-like process using novel CuO-CeO2-CoOx composite nanocatalyst, J. Hazard. Mater., 374 (2019) 167–176.
  18. Z.L. Li, C.S. Guo, J.C. Lyu, Z. Hu, M. Ge, Tetracycline degradation by persulfate activated with magnetic Cu/CuFe2O4 composite: efficiency, stability, mechanism and degradation pathway, J. Hazard. Mater., 373 (2019) 85–96.
  19. H.L. Wiegand, C.T. Orths, K. Kerpen, H.V. Lutze, T.C. Schmidt, Investigation of the iron-peroxo complex in the fenton reaction: kinetic indication, decay kinetics, and hydroxyl radical yields, Environ. Sci. Technol., 51 (2017) 14321–14329.
  20. W. Stumn, J.J. Morgan, Aquatic Chemistry, Beijing Science Press, Beijing, 1987 (in Chinese).
  21. Q.Y. Zhou, S.F. Wang, Environmental Engineering Microbiology, Higher Education Press, 2008 (in Chinese).