References

  1. J. Zhang, S. Chen, Y. Zhang, X. Quan, H.M. Zhao, Y.B. Zhang, Reduction of acute toxicity and genotoxicity of dye effluent using Fenton-coagulation process, J. Hazard. Mater., 274 (2014) 198–204.
  2. C.Z. Sun, Q.Y. Yue, B.Y. Gao, B.C. Cao, R.M. Mu, Synthesis and floc properties of polymeric ferric aluminum chloride- polydimethyl diallylammonium chloride coagulant in coagulating humic acid-kaolin synthetic water, Chem. Eng. J., 185 (2012) 29–34.
  3. H. Park, H.I. Kim, G.H. Moon, W. Choi, Photoinduced charge transfer processes in solar photocatalysis based on modified TiO2, Energ. Environ. Sci., 9 (2016) 411–433.
  4. L.Q. Ye, Y.R. Su, X.L. Jin, H.Q. Xie, C. Zhang, Recent advances in BiOX (X= Cl, Br and I) photocatalysts: synthesis, modification, facet effects and mechanisms, Environ. Sci. Nano., 1 (2014) 90–112.
  5. C.Y. Wang, X. Zhang, H.B. Qiu, W.K. Wang, G.X. Huang, Photocatalytic degradation of bisphenol A byoxygen-rich and highly visible-light responsive Bi12O17Cl2 nanobelts, Appl. Catal. B-Environ., 200 (2017) 659–665.
  6. J.Y. Li, L. Zhao, L.L. Qin, X.J. Tian, A.M. Wang, Removal of refractory organics in nanofiltration concentrates of municipal solid waste leachate treatment plants by combined Fentonoxidative- coagulation with photo-Fenton processes, Chemosphere, 146 (2016) 442–449.
  7. L.F. Guerreiro, C.S. Rodrigues, R.M. Duda, R.A. de Oliveira, R.A. Boaventura, Treatment of sugarcane vinasse by combination of coagulation/flocculation and Fenton’s oxidation, J. Environ. Manage., 181 (2016) 237–248.
  8. Y.F. Wang, K.F. Chen, L.H. Mo, J. Li, J. Xu, Optimization of coagulation-flocculation process for paper making-reconstituted tobacco slice wastewater treatment using response surface methodology, J. Ind. Eng. Chem., 20 (2014) 391–396.
  9. S. Giannakis, M. Jovic, N. Gasilova, M.P. Gelabert, S. Schindelholz, Iohexol degradation in wastewater and urine by UV-based Advanced Oxidation Processes (AOPs): Process modeling and by-products identification, J. Environ. Manage., 195 (2017) 174–185.
  10. C. Amor, E.D. Torres-Socías, J.A. Peres, M.I. Maldonado, Mature landfill leachate treatment by coagulation/flocculation combined with Fenton and solar photo-Fenton processes, J. Hazard. Mater., 286 (2015) 261–268.
  11. A.J. Expósito, J.M. Monteagudo, A. Durán, A. Fernandez, Dynamic behavior of hydroxyl radical in sono-photo-Fenton mineralization of synthetic municipal wastewater effluent containing antipyrine, Ultraso. Sonochem., 35 (2017) 185–195.
  12. J. Bolobajev, E. Kattel, M. Viisimaa, A. Goi, M. Trapido, Reuse of ferric sludge as an iron source for the Fenton-based process in wastewater treatment, Chem. Eng. J., 255 (2014) 8–13.
  13. J. Rodríguez-Chueca, C. Amor, J.R. Fernandes, P.B. Tavares, M.S. Lucas, Treatment of crystallized-fruit wastewater by UV-A LED photo-Fenton and coagulation-flocculation, Chemosphere, 145 (2016)351–359.
  14. R.X. Huang, Z.Q. Fang, X.M. Yan, W. Cheng, Heterogeneous sono-Fenton catalytic degradation of bisphenol A by Fe3O4 magnetic nanoparticles under neutral condition, Chem. Eng. J., 197 (2012) 242–249.
  15. C.K. Wang, Y.H. Shih, Degradation and detoxification of diazinon by sono-Fenton and sono-Fenton-like processes, Sep. Purif. Technol., 140 (2015) 6–12.
  16. D.R. Manenti, P.A. Soares, A.N. Módenes, F.R. Espinoza-Quinones, Insights into solar photo-Fenton process using iron(III)–organic ligand complexes applied to real textile wastewater treatment, Chem. Eng. J., 266 (2015) 203–212.
  17. W.Y. Huang, M. Brigante, F. Wu, K. Hanna, G. Mailhot, Development of a new homogenous photo-Fenton process using Fe(III)-EDDS complexes, J. Photoch. Photobio. A., 239 (2012) 17–23.
  18. P. Piste, Cysteine-master antioxidant, Inter. J. Pharm. Chem. Biol. Sci., 3 (2013) 143–149.
  19. E.W. Iyamu, H. Perdew, G.M. Woods, Cysteine-iron promotes arginase activity by driving the Fenton reaction, Biochem. Biophys. Res. Commun., 76 (2008) 116–120.
  20. T. Li, Z.W. Zhao, Q. Wang, P.F. Xie, J.H. Ma, Strongly enhanced Fenton degradation of organic pollutants by cysteine: An aliphatic amino acid accelerator outweighs hydroquinone analogues, Water Res., 105 (2016) 479–486.
  21. L.S. Luo, Y.Y. Yao, F. Gong, Z.F. Huang, W.Y. Lu, Drastic enhancement on Fenton oxidation of organic contaminants by accelerating Fe(II)/Fe(III) cycle with L-cysteine, RSC. Adv., 6 (2016) 47661–47668.
  22. A.R. Yazdanbakhsh, A.S. Mohammadi, M. Sardar, H. Godini, M. Almasian, COD removal from synthetic wastewater containing azithromycin using combined coagulation and a Fenton-like process, Environ. Eng. Manag. J., 13 (2014) 2929–2936.
  23. A.R. Yazdanbakhsh, A.S. Mohammadi, A.A. Alinejad, G. Hassani, S. Golmohammadi, S.M. Mohseni, M. Sardar, V. Sarsangi, Reduction of non-Betalactamantibiotics COD by combined coagulation and advanced oxidation processes, Water. Environ. Res., 88 (2016) 2121–2131.
  24. X.J. Ma, H.L. Xia, Treatment of water-based printing ink wastewater by Fenton process combined with coagulation, J. Hazard. Mater., 162 (2009) 386–390.
  25. J. Zhang, S. Chen, Y. Zhang, X. Quan, H.M. Zhao, Reduction of acute toxicity and genotoxicity of dye effluent using Fenton-coagulation process, J. Hazard. Mater., 274 (2014) 198–204.
  26. L.H. Ai, C.H. Zhang, L.L. Li, J. Jiang, Iron terephthalate metal-organic framework: Revealing the effective activation of hydrogen peroxide for the degradation of organic dye under visible light irradiation, Appl. Catal. B-Environ., 148–149 (2014) 191–200.
  27. R. Li, C. He, Y.L. He, Preparation and characterization of poly-silicic-cation coagulants by synchronous-polymerization and co-polymerization, Chem. Eng. J., 223 (2013) 869–874.
  28. F. Ying, S.L. Yu, C.W. Han, Morphology and coagulation performance during preparation of poly-silicic-ferric (PSF) coagulant, Chem. Eng. J., 149 (2009) 1–10.
  29. T. Sun, C.H. Sun, G.L. Zhu, X.J. Miao, C.C. Wu, Preparation and coagulation performance of poly-ferric-aluminum-silicate- sulfate from fly ash, Desalination, 268 (2011) 270–275.
  30. N.D. Tzoupanos, A.I. Zouboulis, Novel inorganic-organic composite coagulants based on aluminum, Desal. Water Treat., 13 (2010) 340–347.
  31. A.M. Al-lbrahim, Seawater desalination: the strategic choice for Saudi Arabia, Desal. Water Treat., 51 (2013) 1–4.
  32. Y. Fu, S.L. Yu, Y.Z. Yu, L.P. Qiu, B. Hui, Reaction mode between Si and Fe and evaluation of optimal species in poly-silicic-ferric coagulant, J. Environ. Sci., 19 (2007) 678–688.
  33. Y.M. Fang, X.D. Zhao, X.L. Zhang, Study on the Image, structure and coagulation behavior of polysilicate-aluminum ferric, Ind. Saf. Environ. Prot., 33 (2007) 22–24.
  34. S. Zinatlooajabshir, S. Mortazaviderazkola, M. Salavatiniasari, Simple sonochemical synthesis of HO2O3-SiO2 nanocomposites as an effective photocatalyst for degradation and removal of organic contaminant, Ultrason. Sonochem., 39 (2017) 452–460.
  35. K. Chen, Z. Bao, J. Shen, G. Wu, B. Zhou, Freestanding monolithic silicon aerogels, J. Mater. Chem., 22 (2012) 16196–16200.
  36. R.F. Jameson, W. Linert, Complex formation followed by internal electron transfer: The reaction between cysteine and iron(III), Monatsh. Chem., 122 (1991) 887–906.
  37. P.P. Gan, S.F.Y. Li, Efficient removal of Rhodamine B using a rice hull-based silica supported iron catalyst by Fenton-like process, Chem. Eng. J., 229 (2013) 351–363.
  38. X.L. Liang, Y.H. Zhong, H.P. He, P. Yuan, J.X. Zhu, The application of chromium substituted magnetite as heterogeneous Fenton catalyst for the degradation of aqueous cationic and anionic dyes, Chem. Eng. J., 191 (2012) 177–184.
  39. M.A. Behnajady, N. Modirshahla, F. Ghanbary, A kinetic model for the decolorization of C.I. Acid Yellow 23 by Fenton process, J. Hazard. Mater., 148 (2007) 98–102.
  40. M. Tamimi, S. Qourzal, N. Barka, A. Assabbane, Y. Ait-Ichou, Methomyl degradation in aqueous solutions by Fenton’s reagent and the photo-Fenton system, Sep. Purif. Technol., 61 (2008) 103–108.
  41. A. Amirbahman, L. Sigg, U. Gunten, Reductive dissolution of Fe(III) (hydr)oxides by cysteine: kinetics and mechanism, J. Colloid. Interf. Sci., 194 (1997) 194–206.