References
- M. Qiao, X. Zhao, X. Wei, Characterization and treatment
of landfill leachate membrane concentrate by Fe2+/NaClO
combined with advanced oxidation processes, Sci. Rep., 8 (2018)
12525,
doi: 10.1038/s41598-018-30917-5.
- H. Wang, X. Li, Z. Hao, Y. Sun, Y. Wang, W. Li, Y. Tsang,
Transformation of dissolved organic matter in concentrated
leachate from nanofiltration during ozone-based oxidation
processes
(O3, O3/H2O2 and O3/UV), J. Environ. Manage.,
191 (2017) 244–251.
- H. Wang, Y. Wang, X. Li, Y. Sun, H. Wu, D. Chen, Removal of
humic substances from reverse osmosis (RO) and nanofiltration
(NF) concentrated leachate using continuously ozone
generation-reaction treatment equipment, Waste Manage.,
56 (2016) 271–279.
- R. He, B. Tian, Q. Zhang, H. Zhang, Effect of Fenton oxidation
on biodegradability, biotoxicity and dissolved organic matter
distribution of concentrated landfill leachate derived from a
membrane process, Waste Manage., 38 (2015) 232–239.
- M. Saleem, A. Spagni, L. Alibardi, A. Bertucco, M.C. Lavagnolo,
Assessment of dynamic membrane filtration for biological
treatment of old landfill leachate, J. Environ. Manage.,
213 (2018) 27–35.
- P.S. Calabrò, E. Gentili, C. Meoni, S. Orsi, D. Komilis, Effect of
the recirculation of a reverse osmosis concentrate on leachate
generation: a case study in an Italian landfill, Waste Manage.,
76 (2018) 643–651.
- J. Hendrych, R. Hejralová, J. Kroužek, P. Špaček, J. Sobek,
Stabilisation/solidification of landfill leachate concentrate and
its residue obtained by partial evaporation, Waste Manage.,
95 (2019) 560–568.
- B. Yang, J. Yang, H. Yang, Y. Liu, X. Li, Q. Wang, X. Pan,
Co-bioevaporation treatment of concentrated landfill leachate
with addition of food waste, Biochem. Eng. J., 130 (2018) 76–82.
- Y. Long, J. Xu, D. Shen, Y. Du, H. Feng, Effective removal of
contaminants in landfill leachate membrane concentrates by
coagulation, Chemosphere, 167 (2017) 512–519.
- E. Kattel, M. Trapido, N. Dulova, Treatment of landfill leachate
by continuously reused ferric oxyhydroxide sludge-activated
hydrogen peroxide, Chem. Eng. J., 304 (2016) 646–654.
- S.Y. Guvenc, G. Varank, Degradation of refractory organics in
concentrated leachate by the Fenton process: central composite
design for process optimization, Front. Environ. Sci. Eng.,
2 (2021), doi: 10.1007/s11783-020-1294-1.
- A. Zhang, Z. Gu, W. Chen, Q. Li, G. Jiang, Removal of refractory
organic pollutants in reverse-osmosis concentrated leachate by
Microwave–Fenton process, Environ. Sci. Pollut. Res., 25 (2018)
28907–28916.
- J. Tejera, D. Hermosilla, R. Miranda, A. Gascó, V. Alonso,
C. Negro, Á. Blanco, Assessing an integral treatment for landfill
leachate reverse osmosis concentrate, Catalysts, 10 (2020) 1389,
doi: 10.3390/catal10121389.
- Y. Wang, G. Meng, M. Shan, D. Wang, Z. Bai, X. Zhou, Y. Lv,
J. Bai, Treatment of high-ammonia-nitrogen landfill leachate
nanofiltration concentrate using an Fe-loaded Ni-foam-based
electro-Fenton cathode, J. Environ. Chem. Eng., 8 (2020) 104243,
doi: 10.1016/j.jece.2020.104243.
- L. He, H. Chen, L. Wu, Z. Zhang, Y. Ma, J. Zhu, J. Liu, X. Yan,
H. Li, L. Yang, Synergistic heat/UV activated persulfate for
the treatment of nanofiltration concentrated leachate,
Ecotoxicol. Environ. Saf., 208 (2021) 111522, doi: 10.1016/j.
ecoenv.2020.111522.
- Z. Huang, Z. Gu, Y. Wang, A. Zhang, Improved oxidation
of refractory organics in concentrated leachate by a Fe2+-enhanced O3/H2O2 process, Environ. Sci. Pollut. Res., 26 (2019)
35797–35806.
- Q. Wu, H. Ji, N. Wei, W. Wang, Optimization of coagulation
treatment process for the removal of refractory organics from
leachate concentrate, Desal. Water. Treat., 195 (2020) 128–136.
- L. Wei, H. Zhu, X. Mao, F. Gan, Electrochemical oxidation
process combined with UV photolysis for the mineralization of
nitrophenol in saline wastewater, Sep. Purif. Technol., 77 (2011)
18–25.
- B. Kakoi, J.W. Kaluli, P. Ndiba, G. Thiong’o, Optimization of
Maerua decumbent bio-coagulant in paint industry wastewater
treatment with response surface methodology, J. Cleaner Prod.,
164 (2017) 1124–1134.
- J. Xu, Y. Long, D. Shen, H. Feng, T. Chen, Optimization of
Fenton treatment process for degradation of refractory organics
in pre-coagulated leachate membrane concentrates, J. Hazard.
Mater., 323 (2017) 674–680.
- H. Zhang, H.J. Choi, C.P. Huang, Optimization of Fenton
process for the treatment of landfill leachate, J. Hazard. Mater.,
125 (2005) 166–174.
- APHA, Standard Methods for the Examination of Water and
Wastewater, 21st ed., American Public Health Association,
Washington, DC, 2005.
- C. Tizaoui, L. Bouselmi, L. Mansouri, A. Ghrabi, Landfill
leachate treatment with ozone and ozone/hydrogen peroxide
systems, J. Hazard. Mater., 140 (2007) 316–324.
- B. Lai, H. Qin, X. Zhou, C. Pang, J. Xu, Y. Lian, S. Zhang, J. Zhou,
Rapid detection of the degradation of the typical pollutants from
ABS wastewater using Fourier transform infrared spectroscopy,
Acta Opt. Sin., 2 (2011) 268–273.
- A. Baker, D. Ward, S.H. Lieten, R. Periera, E.C. Simpson,
M. Slater, Measurement of protein-like fluorescence in river and
wastewater using a handled spectrophotometer, Water Res.,
38 (2004) 2934–2938.
- G. Wang, G. Lu, P. Yin, L. Zhao, Q. Yu, Genotoxicity assessment
of membrane concentrates of landfill leachate treated with
Fenton reagent and UV-Fenton reagent using human hepatoma
cell line, J. Hazard. Mater., 307 (2016) 154–162.
- I. Gulkaya, G.A. Surucu, F.B. Dliek, Importance of H2O3/Fe2+
radio in Fenton’s treatment of a carpet dyeing wastewater,
J. Hazard. Mater., 136 (2006) 763–769.
- G.V. Buxton, C.L. Greenstock, W.P. Helman, A.B. Ross, Critical
review of rate constants for reactions of hydrated electrons,
hydrogen-atoms and hydroxyl radicals (•OH/•O–) in aqueous solution,
J. Phys. Chem., 17 (1988) 513–886.
- C. Pulgarin, J. Kiwi, Overview on photocatalytic and
electrocatalytic pretreatment of industrial
non-biodegradable
pollutants and pesticides, Chimia, 50 (1996) 50–55.
- S. Giannakis, K.A. Lin, F. Ghanbari, A review of the recent
advances on the treatment of industrial wastewaters by Sulfate
Radical-based Advanced Oxidation Processes (SR-AOPs),
Chem. Eng. J., 406 (2021) 127083, doi: 10.1016/j.cej.2020.127083.
- J. Kiwi, C. Pulgarin, P. Peringer, M. Gratzel, Beneficial effects
of homogeneous photo-Fenton pretreatment upon the
biodegradation of anthraquinone sulfonate in waste-water
treatment, Appl. Catal., B, 3 (1993) 85–99.
- C.L. Hsueh, Y. Huang, C. Wang, C. Chen, Photoassisted Fenton
removal of nonbiodegradable azo-dye (Reactive Black 5) over a
novel supported iron oxide catalyst at neutral pH, J. Mol. Catal.
A. Chem., 245 (2006) 78–86.
- A. Eslami, F. Mehdipour, K.A. Lin, H.S. Maleksari, F. Mirzaei,
F. Ghanbari, Sono-photo activation of percarbonate for the
degradation of organic dye: the effect of water matrix and
identification of by-products, J. Water Process Eng., 33 (2020)
100998, doi: 10.1016/j.jwpe.2019.100998.
- W. Tang, C. Huang, Stoichiometry of Fenton’s reagent in the
oxidation of chlorinated aliphatic organic pollutants, Environ.
Technol., 18 (1997) 13–23.
- A.G. Gutierrez-Mata, S. Velazquez-Martínez, A. Álvarez-Gallegos, M. Ahmadi, J.A. Hernández-Pérez, F. Ghanbari,
S. Silva-Martínez, Recent overview of solar photocatalysis and
solar photo-Fenton processes for wastewater treatment, Int. J.
Photoenergy, 2017 (2017) 8528063, doi: 10.1155/2017/8528063.
- M. Ahmadian, S. Reshadat, N. Yousefi, S.H. Mirhossieni,
M.R. Zare, S.R. Ghasemi, N.R. Gilan, R. Khamutian,
A. Fatehizadeh, Municipal leachate treatment by Fenton
process: effect of some variable and kinetics, J. Environ. Public
Health, 3 (2013) 169682, doi: 10.1155/2013/169682.
- G. Varank, S.Y. Guvenc, K. Dincer, A. Demir, Concentrated
leachate treatment by electro-Fenton and
electro-persulfate
processes using central composite design, Int. J. Environ. Res.,
14 (2020) 439–461.
- M. Rajasimman, P. Karthic, Application of response surface
methodology for the extraction of chromium(VI) by emulsion
liquid membrane, J. Taiwan Inst. Chem. Eng., 41 (2010) 105–110.
- M. Moradi, F. Ghanbari, E. Minaee Tabrizi, Removal of acid
yellow 36 using Box–Behnken designed photoelectro-Fenton:
a study on removal mechanisms, Toxicol. Environ. Chem.,
97 (2015) 700–709.
- M. Ahmadi, F. Ghanbari, S. Madihi-Bidgoli, Photoperoxicoagulation
using activated carbon fiber cathode as an efficient
method for benzotriazole removal from aqueous solutions:
modeling, optimization and mechanism,
J. Photochem.
Photobiol., A, 322 (2016) 85–94.
- S.S. Kavurmaci, M. Bekbolet, Specific UV-vis absorbance
changes of humic acid in the presence of clay particles during
photocatalytic oxidation, Desal. Water. Treat., 52 (2014)
1903–1910.
- X. Guo, B. Xi, H. Yu, W. Ma, X. He, The structure and origin of
dissolved organic matter studied by UV-Vis spectroscopy and
fluorescence spectroscopy in lake in arid and semi-arid region,
Water Sci. Technol., 63 (2011) 1010–1017.
- F.J. Rodríguez, P. Schlenger, M. Garcíavalverde, Monitoring
changes in the structure and properties of humic substances
following ozonation using UV–Vis, FT-IR and 1H NMR
techniques, Sci. Total Environ., 541 (2016) 623–637.
- V. Kanokkantapong, T. Marhaba, B. Panyapinyophol,
P. Pavasant, FT-IR evaluation of functional groups involved in
the formation of haloacetic acids during the chlorination of raw
water, J. Hazard. Mater., 136 (2006) 188–196.
- W. Chen, P. Westerhoff, J.A. Leenheer, K. Booksh, Fluorescence
excitation-emission matrix regional integration to quantify
spectra for dissolved organic matter, Environ. Sci. Technol.,
37 (2003) 5701–5710.
- C. Teng, K. Zhou, Z. Zhang, C. Peng, W. Chen, Elucidating
the structural variation of membrane concentrated landfill
leachate during Fenton oxidation process using spectroscopic
analyses, Environ. Pollut., 256 (2020) 113467, doi: 10.1016/j.
envpol.2019.113467.