References
- M. Franica, K. Grzeja, S. Paszula, Evaluation of quality
parameters of selected composts, Arch. Waste Manage. Environ.
Prot., 20 (2018) 21–32.
- K. Różycki, H. Ropek, Statistical analyses of bioaerosol
concentration at municipal landfill site, Ecol. Chem. Eng. S,
21 (2014) 229–243.
- M. de Lima Elias, L.F. da Silva, L.S.M. dos Santos Lima,
V.R. Amorim, M.A.G. Hinojosa, A.L.F. Menescal Conde,
B. Ramalho Quintaes, J. Carbonelli Campos, Co-disposal of
sludge generated during landfill leachate treatment with
household solid waste, Desal. Water Treat., 159 (2019) 141–150.
- G.E. Blight, A.B. Fourie, J. Shamrock, C. Mbande, J.W.F. Morris,
The effect of waste composition on leachate and gas quality: a
study in South Africa, Waste Manage. Res., 17 (1999) 124–140.
- B.K. Mavakala, S. Le Faucheur, C.K. Mulaji, A. Laffite,
N. Devarajan, E.M. Biey, G. Giuliani, J.-P. Otamonga,
P. Kabatusuila, P.T. Mpiana, J. Poté, Leachates draining from
controlled municipal solid waste landfill: detailed geochemical
characterization and toxicity tests, Waste Manage., 55 (2016)
238–248.
- Ö. Apaydina, E. Özkan, Landfill leachate treatment with
electrocoagulation: optimization by using Taguchi method,
Desal. Water Treat., 173 (2020) 65–76.
- P. Kmet, EPA’s Water Balance Method — Its Use and Limitations,
Wisconsin DNR, Bureau of Solid Waste Management, Madison,
P. Kemt, Ed., Water Balance Method Use and Limitations,
Wisconsin Department of Natural Resources, Bureau of Solid
Waste Management, 1982.
- M. Gomez, F. Corona, M.D. Hidalgo, Variations in the
properties of leachate according to landfill age, Desal. Water
Treat., 159 (2019) 24–31.
- L. Gao, Y. Cao, L. Wang, A review on sustainable reuse
applications of Fenton sludge during wastewater
treatment, Front. Environ. Sci. Eng., 16 (2022), doi: 10.1007/s11783-021-1511-6.
- I. el Mrabet, B. Ihnssane, H. Valdes, H. Zaitan, Optimization
of Fenton process operating conditions for the treatment of
the landfill leachate of Fez city (Morocco), Int. J. Environ. Sci.
Technol., 19 (2022) 3323–3336.
- I. el Mrabet, M. Benzina, H. Valdes, H. Zaitan, Treatment of
landfill leachates from Fez city (Morocco) using a sequence
of aerobic and Fenton processes, Sci. Afr., 8 (2020) e00434,
doi: 10.1016/j.sciaf.2020.e00434.
- M.S. Mahtab, I.H. Farooqi, A. Khursheed, Optimization
of Fenton process for concurrent COD removal and lower
sludge production: process intensification and impact of
reagents dosing mode, J. Environ. Manage., 315 (2022) 115207,
doi: 10.1016/j.jenvman.2022.115207.
- A. Babuponnusami, K. Muthukumar, A review on Fenton and
improvements to the Fenton process for wastewater treatment,
J. Environ. Chem. Eng., 2 (2014) 557–572.
- A. Aygun, T. Yilmaz, B. Nas, A. Berktay, Effect of temperature
on Fenton oxidation of young landfill leachate: kinetic
assessment and sludge properties, Global NEST J., 14 (2012)
487–495.
- I. Skoczko, Decomposition of pesticides by the Fenton method
using MgO2, Rocznik Ochrona Środowiska, 15 (2013) 1460–1473
(in Polish).
- K. Barbusiński, Intensification of wastewater treatment
and stabilisation of excess sludge using Fenton’s reagent,
Politechnika Śląska, Zeszyty Naukowe nr 1603, Gliwice (2004)
(in Polish).
- L. Dąbek, E. Ozimina, A. Picheta-Oleś, Applying the combined
processes of sorption and oxidation to remove organic
compounds from an aqueous environment: using the example
of p-chlorophenol, Ecol. Chem. Eng. A, 19 (2012) 275–286.
- Y. Wu, S. Zhou, K. Zheng, X. Ye, F. Qin, Mathematical model
analysis of Fenton oxidation of landfill leachate, Waste Manage.,
31 (2011) 468–474.
- M. Ahmadian, S. Reshadat, N. Yousefi, S.H. Mirhossieni,
M.R. Zare, S.R. Ghasemi, N.R. Gilan, R. Khamutian, A. Fatehizadech,
Municipal leachate treatment by Fenton process: effect
of some variable and kinetics, J. Environ. Public Health,
2013 (2013) 169682, doi: 10.1155/2013/169682.
- H. Zhang, H.J. Choi, C.-P. Huang, Optimization of Fenton
process for the treatment of landfill leachate, J. Hazard. Mater.,
B, 125 (2005) 166–174.
- S.K. Singh, W.Z. Tang, Statistical analysis of optimum
Fenton oxidation conditions for landfill leachate treatment,
Waste Manage., 33 (2013) 81–88.
- S.H. Lin, C.C. Lo, Fenton process for treatment of desizing
wastewater, Water Res., 31 (1997) 2050–2056.
- Y.W. Kang, K.-Y. Hwang, Effects of reaction conditions on the
oxidation efficiency in the Fenton process, Water Res., 34 (2000)
2786–2790.
- K. Barbusiński, B. Pieczykolan, COD removal from landfill
leachate using Fenton oxidation and coagulation, Arch. Civ.
Eng. Environ., 4 (2010) 93–100.
- J. Gawdzik, J. Muszyńska, M. Sikorski, Effect of H2O2
sequential dosing in the Fenton process on leachate treatment,
Desal. Water Treat., 134 (2018) 310–315.
- A.C. Crispim, D.M. de Araujo, C.A. Martinez-Huitle, F.L. Souza,
E.V. Dos Santos, Application of electro-Fenton and photoelectro-
Fenton processes for the degradation of contaminants in
landfill leachate, Environ. Res., 213 (2022) 113–552.
- D. Hermosilla, M. Cortijo, C.P. Huang, Optimizing the treatment
of landfill leachate by conventional Fenton and photo-Fenton
processes, Sci. Total Environ., 407 (2009) 3473–3481.
- S. Li, Y. Yang, H. Zheng, Y. Zheng, T. Jing, J. Ma, J. Nan,
Y. Kit Leong, J.-S. Chang, Advanced oxidation process based
on hydroxyl and sulfate radicals to degrade refractory organic
pollutants in landfill leachate, Chemosphere, 297 (2022) 134214,
doi: 10.1016/j.chemosphere.2022.134214.
- I. el Mrabet, M. Benzina, H. Zaitan, Treatment of landfill
leachate from Fez City by combined Fenton and adsorption
processes using Moroccan bentonite clay, Desal. Water Treat.,
225 (2021) 402–412.
- A.P.F. Santos, F. Gozzi, A.E. de Carvalho, K.R. Ferreira de
Oliveira, A.R.L. Caires, R.P. Cavalcante, R.F. Cunha, D.A. da
Silva, D.R. Vieira Guelfi, L. de Melo da Silva, T. Ferreira da Silva,
G.A. Casagrande, S.C. de Oliveira, A. Machulek Jr., Leachate
degradation using solar photo-Fenton like process: influence
of coagulation–flocculation as a pre-treatment step, Sep. Purif.
Technol., 289 (2022) 120712, doi: 10.1016/j.seppur.2022.120712.
- D. Liu, Y. Yuan, Y. Wei, H. Zhang, Y. Si, F. Zhang, Removal
of refractory organics and heavy metals in landfill leachate
concentrate by peroxi-coagulation process, J. Environ. Sci.,
116 (2022) 43–51.
- C.A. dos Santos Vaz, G. Lamas Samanamud, R. Soares da Silva,
A. Boscaro Franca, C.M. Finzi Quintao, A.P. Urzedo, M. Borges
Silva, J.C. Bosch Neto, M. Souza Amaral, C.C.A. Loures,
L.L. Rezende Naves, F.L. Naves, Modeling and optimization of
hybrid leachate treatment processes and scale-up of the process:
review, J. Cleaner Prod., 312 (2021) 127732, doi: 10.1016/j.jclepro.2021.127732.
- J. Muszyńska, Ł. Bąk, J. Górski, K. Górska, A. Sałata, J. Gawdzik,
Fenton process optimization with landfill leachate in Janczyce
as an example, Pol. J. Environ. Stud., 30 (2021) 3769–3775.