References
- R. Jotin, S. Ibrahim, N. Halimoon, Electro coagulation for
removal of chemical oxygen demand in sanitary landfill leachate,
Int. J. Environ. Sci., 3(2012) 921–930.
- T. Elisabetta, G. Apostolos, C. Raffaello, E. Gidarakos, D. Mantzavinos,
K. Alexandros, Electrochemical oxidation of stabilized
landfill leachate on DSA electrodes, J. Hazard. Mater., 190
(2011) 460–465.
- U. Welander, T. Henrysson, T. Welander, Biological nitrogen
removal from municipal landfill leachate in a pilot scale suspended
carrier biofilm process, Water Res., 32 (1998) 1564–1570.
- K. Tabet, Moulin Ph, J.D. Vilomet, A. Amberto, F. Charbit, Purification
of landfill leachate eighth membrane processes, Preliminary
studies for an industrial plant, Separ. Sci. Technol., 37
(2002) 1041–1063.
- J.J. Wu, C.C. Wu, H.W. Ma, C.C. Chang, Treatment of landfill
leachate by ozone-based advanced oxidation processes, Chemosphere,
54 (2004) 997–1003.
- A. Amokrane, C. Comel, J. Veron, Landfill leachate pretreatment
by coagulation-flocculation, Water Res., 31 (1997) 2775–2782.
- T. Mæhlum, Treatment of landfill leachate in on-site lagoons
and constructed wetlands. Water Sci. Technol., 32 (1995) 129–135.
- L. Etiegni, B.O. Orori, K. Senelwa, M.M. Mwamburi, Bekuta K.
Balozi, K. Justin, Maghang, Ash leachate used as supporting
electrolyte during wastewater treatment by electrocoagulation,
Geophys. Res. Abstr., 13 (2011) 1–2.
- D. Bhagawan, P. Saritha, G. Shankaraiah, V. Himabindu, S.
Vidyavathi, Treatment of the petroleum refinery wastewater
using combined electrochemical methods, Desal. Wat. Treat.,
57 (2016) 3387–3394.
- D. Norma, A. Fernandes, M.J. Pacheco, L. Ciriacoand, A. Lopes,
Electrocoagulation and anodic oxidation integrated process to
treat leachate from a Portuguese sanitary landfill, Portugal.
Electrochim. Acta, 30 (2012) 221–234.
- D. Bhagawan, P. Saritha, P. Tulasiram, D. Srinivasulu, G. Shankaraiah,
M. Yamuna Rani, V. Himabindu, S. Vidyavathi, Effect
of operational parameters on heavy metal removal by electrocoagulation,
Environ. Sci. Pollut. Res., 21 14166–14173. DOI:10.1007/s11356-014-3331-8.
- H. Zhang, D. Zhang, J. Zhou, Removal of COD from landfill
leachate by electro-Fenton method. J. Hazard. Mater., B135
(2005) 106–111.
- E. Bazafshan, A.H. Mahvim, S. Nasseri, A.R. Mesdaghinia, F.
Vaezi, S.H. Nazmara, Removal of cadmium from industrial
effluents by electrocoagulation process using iron electrodes,
Iran. J. Environ. Health. Sci. Eng., 3 (2006) 261–266.
- S. Sadeghi, M. Reza Alavi Moghaddam, M. Arami, Improvement
of electrocoagulation process on hexavalent chromium
removal with the use of polyaluminum chloride as coagulant,
Desal. Wat. Treat., 52 (2014) 4818–4829.
- X. Li, J. Song, J. Guo, Z. Wang, Q. Feng, Landfill leachate treatment
using electrocoagulation, Procedia Environ. Sci., 10
(2011) 1159–1164.
- A.K. Golder, A.N. Samanta, S. Ray, Removal of trivalent chromium
by electrocoagulation, Separat. Sci. Technol., 53 (2007)
33–41.
- F. Akbal, S. Camci, Copper, chromium and nickel removal
from metal plating wastewater by electrocoagulation, Desalination,
269 (2011) 214–222.
- X. Zhao, B. Zhang, H. Liu, J. Qu, Simultaneous removal of arsenite
and fluoride via an integrated electro-oxidation and electrocoagulation
process, Chemosphere, 83 (2011) 726–729.
- C. Ashok Kumar, A.K. Sharma, Removal of turbidity, COD and
BOD from secondarily treated sewage water by electrolytic
treatment, Appl Water Sci., 3 (2013) 125–132.
- D. Ghosh, C.R. Medhi, H. Solanki, M.K. Purkait, Copper, chromium
and nickel removal from metal plating wastewater by
electrocoagulation, J. Environ. Prot. Sci., 2 (2008) 25–35.
- M.O. Orkun, A. Kuleyin, Treatment performance evaluation of
chemical oxygen demand from landfill leachate by electro-coagulation
and electro-Fenton technique, Environ. Prog. Sus.
Ener., 31 (2010) 59–67.
- D. Venu, R. Gandhimathi, P.V. Nidheesh, S.T. Ramesh, Treatment
of stabilized landfill leachate using peroxicoagulation
process, Separat. Sci. Technol., 129 (2014) 64–70.
- M.L. Singh, Z.A. Wahid, Treatment of sewage by electrocoagulation
and the effect of high current density, Ener. Environ.
Eng. J., 1 (2012) 27–31.