References
- S.S.A. Amr, H.A. Aziz, M.J. Bashir, Application of response
surface methodology (RSM) for optimization of semi-aerobic
landfill leachate treatment using ozone, Appl. Water Sci., 4
(2014) 231–239.
- B.O. Clarke, T. Anumol, M. Barlaz, S.A. Snyder, Investigating
landfill leachate as a source of trace organic pollutants,
Chemosphere, 127 (2015) 269–275.
- 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.
- H. Sari, K. Yetilmezsoy, F. Ilhan, S. Yazici, U. Kurt, O. Apaydin,
Fuzzy-logic modeling of Fenton’s strong chemical oxidation
process treating three types of landfill leachates, Environ. Sci.
Pollut. Res., 20 (2013) 4235–4253.
- T.M. Alslaibi, Y.K. Mogheir, S. Afifi, Analysis of landfill
components in estimating the percolated leachate to
groundwater using the HELP model, Water Sci. Technol., 62
(2010) 1727–1734.
- T.H. Christensen, P. Kjeldsen, P.L. Bjerg, D.L. Jensen,
J.B. Christensen, A. Baun, H.-J. Albrechtsen, G. Heron,
Biogeochemistry of landfill leachate plumes, Appl. Geochem.,
16 (2001) 659–718.
- G. Schrab, K. Brown, K. Donnelly, Acute and genetic toxicity of
municipal landfill leachate, Water Air Soil Pollut., 69 (1993) 99–112.
- G. Percheron, N. Bernet, R. Moletta, Start-up of anaerobic
digestion of sulfate wastewater, Bioresour. Technol., 61 (1997)
21–27.
- O.N. Ağdağ, D.T. Sponza, Anaerobic/aerobic treatment of
municipal landfill leachate in sequential two-stage up-flow
anaerobic sludge blanket reactor (UASB)/completely stirred
tank reactor (CSTR) systems, Process Biochem., 40 (2005)
895–902.
- J. Derco, A.Ž. Gotvajn, J. Zagorc-Končan, B. Almásiová, A.
Kassai, Pretreatment of landfill leachate by chemical oxidation
processes, Chem. Pap., 64 (2010) 237–245.
- F. Ilhan, U. Kurt, O. Apaydin, M.T. Gonullu, Treatment of
leachate by electrocoagulation using aluminum and iron
electrodes, J. Hazard. Mater., 154 (2008) 381–389.
- D. Trebouet, J. Schlumpf, P. Jaouen, F. Quemeneur, Stabilized
landfill leachate treatment by combined physicochemical–
nanofiltration processes, Water Res., 35 (2001) 2935–2942.
- T. Yilmaz, A. Aygün, A. Berktay, B. Nas, Removal of COD
and colour from young municipal landfill leachate by Fenton
process, Environ. Technol., 31 (2010) 1635–1640.
- D.M. Bila, A.F. Montalvao, A.C. Silva, M. Dezotti, Ozonation
of a landfill leachate: evaluation of toxicity removal and
biodegradability improvement, J. Hazard. Mater., 117 (2005)
235–242.
- A. Goi, Y. Veressinina, M. Trapido, Combination of ozonation
and the Fenton processes for landfill leachate treatment:
evaluation of treatment efficiency, Ozone Sci. Eng., 31 (2009)
28–36.
- S. Huang, V. Diyamandoglu, J. Fillos, Ozonation of leachates
from aged domestic landfills, Ozone Sci. Eng., 15 (1993) 433–444.
- R.G. Rice, Applications of ozone for industrial wastewater
treatment—a review, Ozone Sci. Eng., 18 (1996) 477–515.
- D.-H. Ahn, W.-S. Chang, T.-I. Yoon, Dyestuff wastewater
treatment using chemical oxidation, physical adsorption and
fixed bed biofilm process, Process Biochem., 34 (1999) 429–439.
- K. Ikehata, M.G. El-Din, Aqueous pesticide degradation by
hydrogen peroxide/ultraviolet irradiation and Fenton-type
advanced oxidation processes: a review, J. Environ. Eng. Sci., 5
(2006) 81–135.
- E. Neyens, J. Baeyens, A review of classic Fenton’s peroxidation
as an advanced oxidation technique, J. Hazard. Mater., 98 (2003)
33–50.
- A. Aygün, Tekstil endüstrisi reaktif ve dispers boya banyo
atıksularının elektrokoagülasyon prosesi ile arıtımı: Yanıt
yüzey yöntemi ile optimizasyon, Selçuk Univeristy Science
Institute, 2012.
- P. Sudamalla, S. Pichiah, M. Manickam, Responses of surface
modeling and optimization of Brilliant Green adsorption by
adsorbent prepared from Citrus limetta peel, Desal. Wat. Treat.,
50 (2012) 367–375.
- American Public Health Association, Standard Methods for
the Examination of Water and Wastewater, 21th ed., APHA,
Washington, 2005.
- A. Lopez, M. Pagano, A. Volpe, A.C. Di Pinto, Fenton’s pretreatment
of mature landfill leachate, Chemosphere, 54 (2004)
1005–1010.
- M.E. Argun, M. Karatas, Application of Fenton process for
decolorization of reactive black 5 from synthetic wastewater:
kinetics and thermodynamics, Environ. Prog. Sustain. Energy,
30 (2011) 540–548.
- E. Basturk, M. Karatas, Advanced oxidation of Reactive Blue
181 solution: a comparison between Fenton and Sono-Fenton
Process, Ultrason. Sonochem., 21 (2014) 1881–1885.
- Y.W. Kang, M.-J. Cho, K.-Y. Hwang, Correction of hydrogen
peroxide interference on standard chemical oxygen demand
test, Water Res., 33 (1999) 1247–1251.
- I. Gulkaya, G.A. Surucu, F.B. Dilek, Importance of H2O2/Fe2+
ratio in Fenton’s treatment of a carpet dyeing wastewater, J.
Hazard. Mater., 136 (2006) 763–769.
- P. Bautista, A. Mohedano, M. Gilarranz, J. Casas, J. Rodriguez,
Application of Fenton oxidation to cosmetic wastewaters
treatment, J. Hazard. Mater., 143 (2007) 128–134.
- D. Baş, İ.H. Boyacı, Modeling and optimization I: usability of
response surface methodology, J. Food Eng., 78 (2007) 836–845.
- S. Ghafari, H.A. Aziz, M.H. Isa, A.A. Zinatizadeh, Application of
response surface methodology (RSM) to optimize coagulation–flocculation treatment of leachate using poly-aluminum
chloride (PAC) and alum, J. Hazard. Mater., 163 (2009) 650–656.
- P. Kirmizakis, C. Tsamoutsoglou, B. Kayan, D. Kalderis,
Subcritical water treatment of landfill leachate: application of
response surface methodology, J. Environ. Manage., 146 (2014)
9–15.
- A. Amiri, M.R. Sabour, Multi-response optimization of Fenton
process for applicability assessment in landfill leachate
treatment, Waste Manage., 34 (2014) 2528–2536.
- H. Li, S. Zhou, Y. Sun, J. Lv, Application of response surface
methodology to the advanced treatment of biologically
stabilized landfill leachate using Fenton’s reagent, Waste
Manage., 30 (2010) 2122–2129.