References
- M. El Bouraie, W.S. El Din, Biodegradation of Reactive Black 5
by Aeromonas hydrophila strain isolated from dye-contaminated
textile wastewater, Sustain. Environ. Res., 26 (2016) 209–216.
- M. Rajasimman, S.V. Babu, N. Rajamohan, Biodegradation of
textile dyeing industry wastewater using modified anaerobic
sequential batch reactor – start-up, parameter optimization, J.
Taiwan Inst. Chem. Eng., 72 (2017) 1–11.
- T.K.F.S. Freitas, V.M. Oliveira, M.T.F. de Souza, H.C.L.
Geraldino, V.C. Almeida, S.L. Fávaro, J.C. Garcia, Optimization
of coagulation-flocculation process for treatment of industrial
textile wastewater using okra (A. esculentus) mucilage as natural
coagulant, Ind. Crops Prod., 76 (2015) 538–544.
- G. Han, C.Z. Liang, T.S. Chung, M. Weber, C. Staudt, C.
Maletzko, Combination of forward osmosis (FO) process with
coagulation/flocculation (CF) for potential treatment of textile
wastewater, Water Res., 91 (2016) 361–370.
- F. Duarte, V. Morais, F.J. Maldonado-Hódar, L.M. Madeira,
Treatment of textile effluents by the heterogeneous Fenton
process in a continuous packed-bed reactor using Fe/activated
carbon as catalyst, Chem. Eng. J., 232 (2013) 34–41.
- J.P. Guin, Y.K. Bhardwaj, L. Varshney, Mineralization and
biodegradability enhancement of Methyl Orange dye by an
effective advanced oxidation process, Appl. Radiat. Isot., 122
(2017) 153–157.
- M. Luan, G. Jing, Y. Piao, D. Liu, L. Jin, Treatment of refractory
organic pollutants in industrial wastewater by wet air oxidation,
Arab. J. Chem., 10 (2017) 769–776.
- A. Rodríguez, G. Ovejero, M.D. Romero, C. Díaz, M. Barreiro,
J. García, Catalytic wet air oxidation of textile industrial
wastewater using metal supported on carbon nanofibers, J.
Supercrit. Fluids, 46 (2008) 163–172.
- Sushma, A.K. Saroha, Treatment of industrial organic raffinate
containing pyridine and its derivatives by coupling of catalytic
wet air oxidation and biological processes, J. Clean. Prod., 162
(2017) 973–981.
- F. Torrades, J. García-Montaño, Using central composite
experimental design to optimize the degradation of real dye
wastewater by Fenton and photo-Fenton reactions, Dyes Pigm.,
100 (2014) 184–189.
- M.R. Taha, A.H. Ibrahim, COD removal from anaerobically
treated palm oil mill effluent (AT-POME) via aerated
heterogeneous Fenton process: optimization study, J. Water
Proc. Eng., 1 (2014) 8–16.
- Y. Yao, L. Wang, L. Sun, S. Zhu, Z. Huang, Y.M. WangyangLu,
W. Chen, Efficient removal of dyes using heterogeneous Fenton
catalysts based on activated carbon fibers with enhanced
activity, Chem. Eng. Sci., 101 (2013) 424–431.
- P.V. Nidheesh, Heterogeneous Fenton catalysts for the
abatement of organic pollutants from aqueous solution: a
review, RSC Adv., 5 (2015) 40552–40577.
- S. Cheng, L. Zhang, H. Xia, J. Peng, S. Zhang, S. Wang,
Preparation of high specific surface area activated carbon from
walnut shells by microwave-induced KOH activation, J. Porous
Mater., 22 (2015) 1527–1537.
- P.P. Gan, S.F.Y. Li, Efficient removal of Rhodamine B using a rice
hull-based silica supported iron catalyst by Fenton-like process,
Chem. Eng. J., 229 (2013) 351–363.
- Y. Zhang, J. Shang, Y. Song, C. Rong, Y. Wang, W. Huang, K. Yu,
Selective Fenton-like oxidation of methylene blue on modified
Fe-zeolites prepared via molecular imprinting technique, Water
Sci. Technol., 75 (2017) 659–669.
- W. Li, D. Wan, G. Wang, K. Chen, Q. Hu, L. Lu, Heterogeneous
Fenton degradation of Orange II by immobilization of Fe3O4
nanoparticles onto Al-Fe pillared bentonite, Korean J. Chem.
Eng., 33 (2016) 1557–1564.
- S.H. Yoo, D. Jang, H.-I. Joh, S. Lee, Iron oxide/porous carbon
as a heterogeneous Fenton catalyst for fast decomposition of
hydrogen peroxide and efficient removal of methylene blue, J.
Mater. Chem. A, 5 (2017) 748–755.
- C. Yaman, G. Gündüz, A parametric study on the decolorization
and mineralization of C.I. Reactive Red 141 in water by
heterogeneous Fenton-like oxidation over FeZSM-5 zeolite, J.
Environ. Health Sci. Eng., 13 (2015) 1–12.
- A. Khataee, F. Salahpour, M. Fathinia, B. Seyyedi, B. Vahid, Iron
rich laterite soil with mesoporous structure for heterogeneous
Fenton-like degradation of an azo dye under visible light, J. Ind.
Eng. Chem., 26 (2015) 129–135.
- X. Hou, X. Huang, F. Jia, Z. Ai, J. Zhao, L. Zhang, Hydroxylamine
promoted goethite surface Fenton degradation of organic
pollutants, Environ. Sci. Technol., 51 (2017) 5118–5126.
- H. Guedidi, L. Reinert, Y. Soneda, N. Bellakhal, L. Duclaux,
Adsorption of ibuprofen from aqueous solution on chemically
surface-modified activated carbon cloths, Arabian J. Chem., 10
(2017) S3584–S3594.
- M. Jaouadi, S. Hbaieb, H. Guedidi, L. Reinert, N. Amdouni,
L. Duclaux, Preparation and characterization of carbons from
β-cyclodextrin dehydration and from olive pomace activation
and their application for boron adsorption, J. Saudi Chem. Soc.,
21 (2017) 822–829.
- F.G. de Mendonça, M.G. Rosmaninho, P.X. da Fonseca, R.R.
Soares, J.D. Ardisson, J.C. Tristão, R.M. Lago, Use of iron and
bio-oil wastes to produce highly dispersed Fe/C composites for
the photo-Fenton reaction, Environ. Sci. Pollut. Res., 24 (2017)
6151–6156.
- M. Ahmadi, B. Kakavandi, S. Jorfi, M. Azizi, Oxidative
degradation of aniline and benzotriazole over PAC@FeIIFe2
IIIO4:
a recyclable catalyst in a heterogeneous photo-Fenton-like
system, J. Photochem. Photobiol., A, 336 (2017) 42–53.
- C.S. Castro, M.C. Guerreiro, L.C. a Oliveira, M. Gonçalves, a.S.
Anastácio, M. Nazzarro, Iron oxide dispersed over activated
carbon: support influence on the oxidation of the model
molecule methylene blue, Appl. Catal. A, 367 (2009) 53–58.
- B. Kakavandi, A.A. Babaei, Heterogeneous Fenton-like
oxidation of petrochemical wastewater using a magnetically
separable catalyst (MNPs@C): process optimization, reaction
kinetics and degradation mechanisms, RSC Adv., 6 (2016)
84999–85011.
- Y. Kan, Q. Yue, D. Li, Y. Wu, B. Gao, Preparation and
characterization of activated carbons from waste tea by H3PO4
activation in different atmospheres for oxytetracycline removal,
J. Taiwan Inst. Chem. Eng., 71 (2017) 494–500.
- L. Wang, Q. Yang, D. Wang, X. Li, G. Zeng, Z. Li, Y. Deng, J. Liu,
K. Yi, Advanced landfill leachate treatment using iron-carbon
microelectrolysis-Fenton process: process optimization and
column experiments, J. Hazard. Mater., 318 (2016) 460–467.
- B. Yang, Z. Tian, L. Zhang, Y. Guo, S. Yan, Enhanced
heterogeneous Fenton degradation of Methylene Blue by
nanoscale zero valent iron (nZVI) assembled on magnetic Fe3O4/reduced graphene oxide, J. Water Proc. Eng., 5 (2015) 101–111.
- S. Cheng, J. Wu, H. Xia, J. Peng, S. Wang, L. Zhang, Microwaveassisted
regeneration of spent activated carbon from paracetamol
wastewater plant using response surface methodology, Desal.
Wat. Treat., 57 (2016) 18981–18991.
- K. Salehi, A. Bahmani, B. Shahmoradi, M.A. Pordel, S. Kohzadi,
Y. Gong, H. Guo, H.P. Shivaraju, R. Rezaee, R.R. Pawar, S.-M.
Lee, Response surface methodology (RSM) optimization
approach for degradation of Direct Blue 71 dye using CuO-ZnO
nanocomposite, Int. J. Environ. Sci. Technol., 14 (2017)
2067–2076.
- N. Biglarijoo, S.A. Mirbagheri, M. Ehteshami, S.M. Ghaznavi,
Optimization of Fenton process using response surface
methodology and analytic hierarchy process for landfill leachate
treatment, Process. Saf. Environ. Prot., 104 (2016) 150–160.
- M.O. Saeed, K. Azizli, M.H. Isa, M.J.K. Bashir, Application
of CCD in RSM to obtain optimize treatment of POME using
Fenton oxidation process, J. Water Proc. Eng., 8 (2015) 7–16.
- P. Sugumaran, V.P. Susan, P. Ravichandran, S. Seshadri,
Production and characterization of activated carbon from
banana empty fruit bunch and Delonix regia fruit pod, J.
Sustain. Energy Environ., 3 (2012) 125–132.
- T. Kuokkanen, P. Vähäoja, I. Välimäki, R. Lauhanen, Suitability
of the respirometric Bod oxitop method for determining the
biodegradability of oils in ground water using forestry hydraulic
oils as model compounds, Int. J. Environ. Anal. Chem., 84 (2004)
677–689.
- T.D. Nguyen, N.H. Phan, M.H. Do, K.T. Ngo, Magnetic Fe2MO4
(M:Fe, Mn) activated carbons: Fabrication, characterization and
heterogeneous Fenton oxidation of methyl orange, J. Hazard.
Mater., 185 (2011) 653–661.
- T. Van Thuan, B.T.P. Quynh, T.D. Nguyen, V.T.T. Ho, L.G. Bach,
Response surface methodology approach for optimization of
Cu2+, Ni2+ and Pb2+ adsorption using KOH-activated carbon
from banana peel, Surf. Interfaces, 6 (2017) 209–217.
- M. Gao, D. Zhang, W. Li, J. Chang, Q. Lin, D. Xu, H. Ma,
Degradation of methylene blue in a heterogeneous Fenton
reaction catalyzed by chitosan crosslinked ferrous complex, J.
Taiwan Inst. Chem. Eng., 67 (2016) 355–361.
- J.H. Ramirez, F.J. Maldonado-Hódar, A.F. Pérez-Cadenas, C.
Moreno-Castilla, C.A. Costa, L.M. Madeira, Azo-dye Orange
II degradation by heterogeneous Fenton-like reaction using
carbon-Fe catalysts, Appl. Catal., B, 75 (2007) 312–323.
- L. Núñez, J.A. García-Hortal, F. Torrades, Study of kinetic
parameters related to the decolourization and mineralization
of reactive dyes from textile dyeing using Fenton and photo-
Fenton processes, Dyes Pigm., 75 (2007) 647–652.
- F. Torrades, S. Saiz, J.A. García-Hortal, Using central composite
experimental design to optimize the degradation of black liquor
by Fenton reagent, Desalination, 268 (2011) 97–102.
- H. Aghdasinia, R. Bagheri, B. Vahid, A. Khataee, Central
composite design optimization of pilot plant fluidized-bed
heterogeneous Fenton process for degradation of an azo dye,
Environ. Technol. (United Kingdom), 37 (2016) 2703–2712.
- J.R. Domínguez, T. González, P. Palo, E.M. Cuerda-Correa,
Fenton + Fenton-like integrated process for carbamazepine
degradation: optimizing the system, Ind. Eng. Chem. Res., 51
(2012) 2531–2538.
- K.S.W. Sing, D.H. Everett, R.A.W. Haul, L. Moscou, R.S. Pierotti,
J. Rouquerol, T. Siemieniewska, International Union of Pure
Commission on Colloid and Surface Chemistry Including
Catalysis-Reporting physisorption data for gas/solid systems
with special reference to the determination of surface area and
porosity, Pure Appl. Chem., 57 (1985) 603–619.
- M. Delarmelina, S.J. Greco, J.W. d. M. Carneiro, Single step
mechanism for nucleophilic substitution of 2,3-dichloro
naphthoquinone using nitrogen, oxygen and sulfur nucleophiles:
a DFT approach, Tetrahedron, 73 (2017) 4363–4370.
- S. Bhattacharya, R. Rahaman, S. Chatterjee, T.K. Paine, Aliphatic
C−C bond cleavage in α-hydroxy ketones by a dioxygenderived
nucleophilic iron–oxygen oxidant, Chem. Eur. J., 23
(2017) 3815–3818.
- P. Maneechakr, S. Karnjanakom, Adsorption behaviour of Fe(II)
and Cr(VI) on activated carbon: surface chemistry, isotherm,
kinetic and thermodynamic studies, J. Chem. Thermodyn., 106
(2017) 104–112.
- O. Beswick, I. Yuranov, D.T.L. Alexander, L. Kiwi-Minsker,
Iron oxide nanoparticles supported on activated carbon fibers
catalyze chemoselective reduction of nitroarenes under mild
conditions, Catal. Today, 249 (2015) 45–51.
- B. Kakavandi, A. Takdastan, N. Jaafarzadeh, M. Azizi,
A. Mirzaei, A. Azari, Application of Fe3O4@C catalyzing
heterogeneous UV-Fenton system for tetracycline removal
with a focus on optimization by a response surface method, J.
Photochem. Photobiol., A, 314 (2016) 178–188.
- S. Gota, E. Guiot, M. Henriot, M. Gautier-Soyer, Atomic-oxygenassisted
MBE growth of α-Fe2O3 on α-Al2O3(0001): Metastable
FeO(111)-like phase at subnanometer thicknesses, Phys. Rev. B,
60 (1999) 14387–14395.
- W. Han, S. Huang, T. Cheng, H. Tang, Y. Li, H. Liu, Promotion of Nb2O5 on the wustite-based iron
catalyst for ammonia synthesis, Appl. Surf. Sci., 353 (2015) 17–23.
- I. Sapkaite, E. Barrado, F. Fdz-Polanco, S.I. Pérez-Elvira,
Optimization of a thermal hydrolysis process for sludge pretreatment,
J. Environ. Manage., 192 (2017) 25–30.
- 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.
- M.A. Rauf, N. Marzouki, B.K. Körbahti, Photolytic decolorization
of Rose Bengal by UV/H2O2 and data optimization using
response surface method, J. Hazard. Mater., 159 (2008) 602–609.
- T. Xu, Y. Liu, F. Ge, L. Liu, Y. Ouyang, Application of response
surface methodology for optimization of azocarmine B removal
by heterogeneous photo-Fenton process using hydroxyiron-aluminum pillared bentonite, Appl. Surf. Sci., 280 (2013)
926–932.
- A.A. Babaei, B. Kakavandi, M. Rafiee, F.K. Kalantar Hormozi,
I. Purkaram, E. Ahmadi, S. Esmaeili, Comparative treatment
of textile wastewater by adsorption, Fenton, UV-Fenton and
US-Fenton using magnetic nanoparticles-functionalized carbon
(MNPs@C), J. Ind. Eng. Chem., 56 (2017) 163–174.
- O.B. Ayodele, H.S. Auta, N. Md Nor, Artificial neural
networks, optimization and kinetic modeling of amoxicillin
degradation in photo-fenton process using aluminum pillared
montmorillonite-supported ferrioxalate catalyst, Ind. Eng.
Chem. Res., 51 (2012) 16311–16319.
- A. Jonidi Jafari, B. Kakavandi, N. Jaafarzadeh, R. Rezaei
Kalantary, M. Ahmadi, A. Akbar Babaei, Fenton-like catalytic
oxidation of tetracycline by AC@Fe3O4 as a heterogeneous
persulfate activator: adsorption and degradation studies, J. Ind.
Eng. Chem., 45 (2017) 323–333.
- X. Liu, H. Yin, A. Lin, Z. Guo, Effective removal of phenol
by using activated carbon supported iron prepared under
microwave irradiation as a reusable heterogeneous Fenton-like
catalyst, J. Environ. Chem. Eng., 5 (2017) 870–876.
- J.A. Zazo, J.A. Casas, A.F. Mohedano, J.J. Rodríguez, Catalytic
wet peroxide oxidation of phenol with a Fe/active carbon
catalyst, Appl. Catal., B, 65 (2006) 261-268.
- N. Barhoumi, H. Olvera-Vargas, N. Oturan, D. Huguenot, A.
Gadri, S. Ammar, E. Brillas, M.A. Oturan, Kinetics of oxidative
degradation/mineralization pathways of the antibiotic
tetracycline by the novel heterogeneous electro-Fenton process
with solid catalyst chalcopyrite, Appl. Catal., B, 209 (2017)
637–647.
- T.L.P. Dantas, V.P. Mendonça, H.J. José, A.E. Rodrigues, R.F.P.M.
Moreira, Treatment of textile wastewater by heterogeneous
Fenton process using a new composite Fe2O3/carbon, Chem.
Eng. J., 118 (2006) 77–82.
- M. Ahmadi, B. Kakavandi, N. Jaafarzadeh, A. Akbar Babaei,
Catalytic ozonation of high saline petrochemical wastewater
using PAC@FeIIFe2IIIO4: Optimization, mechanisms and
biodegradability studies, Sep. Purif. Technol., 177 (2017)
293–303.
- B.S. Souza, F.C. Moreira, M.W.C. Dezotti, V.J.P. Vilar, R.A.R.
Boaventura, Application of biological oxidation and solar
driven advanced oxidation processes to remediation of winery
wastewater, Catal. Today, 209 (2013) 201–208.