References

  1. Z.R. Komy, A.M. Shaker, S.E.M. Heggy, M.E.A. El-Sayed, Kinetic study for copper adsorption onto soil minerals in the absence and presence of humic acid, Chemosphere, 99 (2014) 117–124.
  2. A. Willcock, M. Brewster, W. Tincher, Using electrochemical technology to treat textile wastewater, three case studies, Am. Dye Stuff Rep., (1992) 15–22.
  3. S.A. Abassi, N. Abassi, R. Soni, Heavy Metals in the Environment, Mittal Publications, New Delhi, 1997.
  4. N. Li, R. Bai, Copper adsorption on chitsan-cellulose hydrogel beads: behaviours and mechanisms, separation and purification technology, J. Appl Polym. Sci., 42 (2005) 237–245.
  5. S. Hasan, T.K. Ghosha, D.S. Viswanath, V.M. Boddub, Dispersion of chitosan on perlite for enhancement of copper (II) adsorption capacity, J. Hazard. Mater., 152 (2008) 826–837.
  6. A. Ola, Kinetic and isotherm studies of copper (II) removal from wastewater using various adsorbents, J. Egypt. Aquat. Res., 33 (2007) 125–143.
  7. G. Chen, Electrochemical technologies in wastewater treatment, Sep. Purif. Technol., 38 (2004) 11–41.
  8. H. Cheng, Cu (II) removal from lithium bromide refrigerant by chemical precipitation and electrocoagulation, Sep. Purif. Technol., 52 (2006) 191–195.
  9. J.F. Blais, S.G. Dufresne, State of the art of technologies for metal removal from industrial effluents, Rev. Sci. Eau, 12(4) (2000) 687–711.
  10. J.S. Do, M.L. Chen, Decolorization of dye-containing solutions by electrocoagulation, J. Appl. Electrochem., 24 (1994) 785–790.
  11. S. Khansorthong, M. Hunsom, Remediation of wastewater from pulp and paper mill industry by the electrochemical technique, Chem. Eng. J., 151 (2009) 228–234.
  12. N. Drouiche, N. Ghaffour, H. Lounici, M. Mameri, Electrocoagulation of chemical mechanical polishing wastewater, Desalination, 214 (2007) 31–37.
  13. M. Kobya, O.T. Can, M. Bayramoglu, Treatment of textile wastewaters by electrocoagulation using iron and aluminum electrodesaluminum, J. Hazard. Mater., 100 (2003) 163–178.
  14. J. Feng, Y. Sun, Z. Zheng, J. Zhang, S. Li, Y. Tian, Treatment of tannery wastewater by electrocoagulation, J. Environ. Sci., 19 (2007) 1409–1415.
  15. M. Kobya, E. Senturk, M. Bayramoğlu, Treatment of poultry slaughterhouse wastewaters by electrocoagulation, J. Hazard. Mater., B133 (2006) 172–176.
  16. K. Brahmi , W. Bouguerra, H. Belhsan, E. Elaloui, M. Loungou, Z. Tlili, B. Hamrouni, Use of electrocoagulation with aluminum electrodes to reduce hardness in tunisian phosphate mining process. Water Mine Water Environ., 35 (2016) 310–317.
  17. K. Brahmi, W. Bouguerra, K. Missaoui, Z. Tlili, E. Elaloui, M. Loungou, B. Hamrouni, Highly cost-effective and reuse-oriented treatment of cadmium-polluted mining wastewater by electrocoagulation process, J. Environ. Eng., 11 (2016) 142.
  18. J. Han, Z. Du, W. Zou, H. Li, C. Zhang. In-situ improved phenol adsorption at ions-enrichment interface of porous adsorbent for simultaneous removal of copper ions and phenol, Chem. Eng. J., 262 (2015) 571–578.
  19. G. Chen, Electrochemical technologies in wastewater treatment, Sep. Purif. Technol., 38 (2004) 11–41.
  20. B. Merzouka, B. Gourichb. A. Sekki, K. Madani, M. Chibaned, Removal turbidity and separation of heavy metals using electrocoagulation– electroflotation technique A case study, J. Hazard. Mater., 164 (2009) 215–222.
  21. F. Akbal, S. Camci, Copper, chromium and nickel removal from metal plating wastewater by electrocoagulation, Desalination, 269 (2011) 214–222.
  22. X.-s. Wang, Y. Qin, Equilibrium sorption isotherms for of Cu2+ on rice bran, Process Biochem., 40 (2005) 677–680.
  23. A.K. Golder, A.N. Samanta, S. Ray, Removal of Cr3+ by electrocoagulation with multiple electrodes: bipolar and monopolar configurations, J. Hazard. Mater., 141 (2007) 653–661.
  24. A. Lambert, P. Drogui, R. Daghrir, F. Zaviska, M. Benzaazoua, Removal of copper in leachate from mining residues using electrochemical technology, J. Environ. Manage., 133 (2014) 78–85.
  25. M. Bayramoglu, M. Eyvaz, M. Kobya, Treatment of the textile wastewater by electrocoagulation: economical evaluation, Chem. Eng. J., 128 (2007) 155–161.
  26. M. Saleem, A.A. Bukhari, M.N. Akram, Electrocoagulation for the treatment of wastewater for reuse in irrigation and plantation, J. Basic Appl. Sci., 7(1) (2011) 11–20.
  27. M. Malakootian, H.J. Mansoorian, M. Moosazadeh, Performance evaluation of electrocoagulation process using ironrod electrodes for removing hardness from drinking water, Desalination, 255 (2010) 67–71.
  28. V. Khandegar, Anil K. Saroha, Electrocoagulation for the treatment of textile industry effluent – A review, J. Environ. Manage., 128 (2013) 949–963.
  29. N. Modirshahla, M.A. Behnajady, Mohammadi-Aghdam, Investigation of the effect of different electrodes and their connections on the removal efficiency of 4-nitrophenol from aqueous solution by electrocoagulation, J. Hazard. Mater., 154 (2008) 778–786.
  30. M. Kobya, F. Ulu, U. Gebologlu, E. Demirbas, M.S. Oncel, Treatment of potable water containing low concentration of arsenic with electrocoagulation: different connection modes and FeeAl electrodes, Sep. Purif. Technol., 77(3) (2011) 283–293.
  31. D.A. Glatstein, F.M. Francisca, Influence of pH and ionic strength on Cd, Cu and Pb removal from water by adsorption in Na-bentonite, Appl. Clay Sci., 118 (2015) 61–67.
  32. H. Zare, H. Heydarzade, M. Rahimnejad, A. Tardast, M. Seyfi, S.M. Peyghambarzadeh, Dried activated sludge as an appropriate biosorbent for removal of copper (II) ions, Arab. J. Chem., 8 (2015) 858–864.
  33. M.M. Dubinin, L.V. Radushkevich, Equation of the characteristic curve of activated charcoal, Chem. Zentr., 1 (1947) 875–889.
  34. W. Bouguerra, M. Ben Sik Ali, B. Hamrouni, M. Dhahbi, Equilibrium and kietic studies of adsorption of silica onto activated alumina, Desalination, 206 (2007) 141–146.
  35. S. Karahan, M. Yurdakov, Y. Seki, K. Turdakoc, Removal of boron from aqueous solution by clays and modified clays, J. Colloid Interface Sci., 293 (2005) 36–42.
  36. D.A. Glatstein, F.M. Francisca, Influence of pH and ionic strength on Cd, Cu and Pb removal from water by adsorption in Na-bentonite, Appl. Clay Sci., 118 (2015) 61–67.