References
- M.E. Mahmoud, A.E. Abdou, A.K. Shehata, H.M. Header,
E.A. Hamed, Behavior of γ-Al2O3-bonded-3-chloropropyltrimethoxysilane
nanosorbent toward potential binding and
removal of 4-nitroaniline and 2-amino-3-nitro-pyridine from
water, J. Mol. Liq., 224 (2016) 1358–1369.
- M. Malakootian, M. Pournamdari, A. Asadipour,
H. Mahdizadeh, Degradation and removal of p-nitroaniline
from aqueous solutions using a novel semi-fluid Fe/charcoal
micro-electrolysis reactor, Korean J. Chem. Eng., 36 (2019)
217–225.
- A. Saupe, High-rate biodegradation of 3-and 4-nitroaniline,
Chemosphere, 39 (1999) 2325–2346.
- J.H. Sun, S.P. Sun, M.H. Fan, H.Q. Guo, L.P. Qiao, R.X. Sun,
A kinetic study on the degradation of p-nitroaniline by
Fenton oxidation process, J. Hazard. Mater., 148 (2007) 172–177.
- M. Malakootian, M.H. Ehrampoush, H. Mahdizadeh,
A. Golpayegani, Comparison studies of raw and oxidized
multi-walled carbon nanotubes H2SO4/HNO3 to remove
p-nitroaniline from aqueous solution, J. Water Chem. Technol.,
40 (2018) 327–333.
- M. Afsharnia, H. Biglari, A. Javid, F. Zabihi, Removal of
reactive black 5 dye from aqueous solutions by adsorption
onto activated carbon of grape seed, Iran. J. Health Sci., 5 (2017)
48–61.
- M. Malakootian, H. Mahdizadeh, M. Khavari, A. Nasiri,
M.A. Gharaghani, M. Khatami, E. Sahle-Demessie, R.S.Varma,
Efficiency of novel Fe/charcoal/ultrasonic micro-electrolysis
strategy in the removal of Acid Red 18 from aqueous solutions,
J. Environ. Chem. Eng., 8 (2020) 103553, doi: 10.1016/j.jece.2019.
103553.
- H. Mahdizadeh, M. Malakootian, Optimization of ciprofloxacin
removal from aqueous solutions by a novel semi-fluid Fe/charcoal micro-electrolysis reactor using response surface
methodology, Process Saf. Environ. Prot., 123 (2019) 299–308.
- M. Malakootian, K. Kannan, M.A. Gharaghani, A. Dehdarirad,
A. Nasiri, Y.D. Shahamat, H. Mahdizadeh, Removal of
metronidazole from wastewater by Fe/charcoal micro
electrolysis fluidized bed reactor, J. Environ. Chem. Eng.,
7 (2019) 103457, doi: 10.1016/j.jece.2019.103457.
- A. Khalid, M. Arshad, D.E. Crowley, Biodegradation
potential of pure and mixed bacterial cultures for removal
of 4-nitroaniline from textile dye wastewater, Water Res.,
43 (2009) 1110–1116.
- J. Mohamadiyan, G. Shams-Khoramabadi, S.A. Mousavi,
B. Kamarehie, Y. Dadban Shahamat, H. Godini, Aniline
degradation using advanced oxidation process by UV/Peroxy
disulfate from aqueous solution, Int. J. Eng., 30 (2017) 684–690.
- M. Malakootian, M. Khatami, H. Mahdizadeh, A. Nasiri,
M. Amiri Gharaghani, A study on the photocatalytic degradation
of p-nitroaniline on glass plates by thermo-immobilized
ZnO nanoparticle, Inorg. Nano-Metal Chem., 50 (2020) 124–135.
- A. Ikhlaq, H.M.S. Munir, A. Khan, F. Javed, K.S. Joya,
Comparative study of catalytic ozonation and Fenton-like
processes using iron-loaded rice husk ash as catalyst for the
removal of methylene blue in wastewater, Ozone Sci. Eng.,
41 (2019) 250–260.
- A. Ikhlaq, F. Javed, A. Akram, A. Rehman, F. Qi, M. Javed,
M.J. Mehdi, F. Waheed, S. Naveed, H.A. Aziz, et al., Synergic
catalytic ozonation and electroflocculation process for the
treatment of veterinary pharmaceutical wastewater in a hybrid
reactor, J. Water Process Eng., 38 (2020) 101597, doi: 10.1016/j.
jwpe.2020.101597.
- Y. Dadban Shahamat, M. Farzadkia, S. Nasseri, A.H. Mahvi,
M. Gholami, A. Esrafili, Magnetic heterogeneous catalytic
ozonation: a new removal method for phenol in industrial
wastewater, J. Environ. Health Sci. Eng., 12 (2014) 1–12,
doi: 10.1186/2052-336X-12-50.
- Y. Dadban Shahamat, M.A. Zazouli, M.R. Zare, N. Mengelizadeh,
Catalytic degradation of diclofenac from aqueous solutions
using peroxymonosulfate activated by magnetic MWCNTs-CoFe3O4 nanoparticles, RSC Adv., 9 (2019) 16496–16508.
- C. Gottschalk, J.A. Libra, A. Saupe, Ozonation of Water and
Waste Water: A Practical Guide to Understanding Ozone
and its Applications, John Wiley & Sons, Germany, 2009.
- K. Ikehata, Y. Li, Chapter 5 - Ozone-Based Processes, S.C. Ameta,
R. Ameta, Eds., Advanced Oxidation Processes for Wastewater
Treatment, Elsevier S&T Book, Academic Press, Cambridge,
MA, ISBN: 978-0-128104996, 2018, pp. 115–134.
- M. Malakootian, M. Amiri Gharaghani, A. Dehdarirad,
M. Khatami, M. Ahmadian, M.R. Heidari, H. Mahdizadeh,
ZnO nanoparticles immobilized on the surface of stones to
study the removal efficiency of 4-nitroaniline by the hybrid
advanced oxidation process (UV/ZnO/O3), J. Mol. Struct.,
1176 (2019) 766–776.
- A. Ikhlaq, M. Anis, F. Javed, H. Ghani, H.M.S. Munir, K. Ijaz,
Catalytic ozonation for the treatment of municipal wastewater
by iron loaded zeolite A, Desal. Water Treat., 152 (2019) 108–115.
- H. Mahdizadeh, A. Nasiri, M.A. Gharaghani, G. Yazdanpanah,
Hybrid UV/COP advanced oxidation process using ZnO as
a catalyst immobilized on a stone surface for degradation
of acid red 18 dye, MethodsX, 7 (2020) 101118, doi: 10.1016/j.
mex.2020.101118.
- M. Kermani, F. Bahrami Asl, M. Farzadkia, A. Esrafili,
S. Salahshour Arian, M. Khazaei, Y.D. Shahamat, D. Zeynalzadeh,
Heterogeneous catalytic ozonation by Nano-MgO is
better than sole ozonation for metronidazole degradation,
toxicity reduction, and biodegradability improvement, Des.
Water Treat., 57 (2016) 16435–16444.
- K. El Hassani, D. Kalnina, M. Turks, B.H. Beakou, A. Anouar,
Enhanced degradation of an azo dye by catalytic ozonation
over Ni-containing layered double hydroxide nanocatalyst,
Sep. Purif. Technol., 210 (2019) 764–774.
- Y. Qi, C. Guo, X. Xu, B. Gao, Q. Yue, B. Jiang, Z. Qian, C. Wang,
Y. Zhang, Co/Fe and Co/Al layered double oxides ozone
catalyst for the deep degradation of aniline: preparation,
characterization and kinetic model, Sci. Total Environ.,
715 (2020) 136982, doi: 10.1016/j.scitotenv.2020.136982.
- Y. Huang, T. Yang, M. Liang, Y. Wang, Z. Xu, D. Zhang,
L. Li, Ni-Fe layered double hydroxides catalized ozonation of
synthetic wastewater containing Bisphenol A and municipal
secondary effluent, Chemosphere, 235 (2019) 143–152.
- M. Afsharnia, M. Shams, M. Ghasemi, H. Biglar, S. Salari,
A. Moteallemi, Modeling and optimization of fluoride
adsorption from aqueous samples by ammonium aluminium
sulfate using response surface methodology (RSM), Res. Rep.
Fluoride, 52 (2019) 299–318.
- A. Aghaeinejad-Meybodi, A. Ebadi, S. Shafiei, A.R. Khataee,
M. Rostampour, Modeling and optimization of antidepressant
drug fluoxetine removal in aqueous media by ozone/H2O2
process: comparison of central composite design and artificial
neural network approaches, J. Taiwan Inst. Chem. Eng.,
48 (2015) 40–48.
- A.A. Salarian, Z. Hami, N. Mirzaei, S.M. Mohseni, A. Asadi,
H. Bahrami, M. Vosoughi, A. Alinejad, M.-R. Zareh, N-doped
TiO2 nanosheets for photocatalytic degradation and
mineralization of diazinon under simulated solar irradiation:
optimization and modeling using a response surface
methodology, J. Mol. Liq., 220 (2016) 183–191.
- M. Zhang, B. Gao, Y. Yao, M. Inyang, Phosphate removal ability
of biochar/MgAl-LDH ultra-fine composites prepared by
liquid-phase deposition, Chemosphere, 92 (2013) 1042–1047.
- B. Zhu, L. Chen, T. Yan, J. Xu, Y. Wang, M. Chen, H. Jiang,
Fabrication of Fe3O4/MgAl-layered double hydroxide magnetic
composites for the effective removal of Orange II from
wastewater, Water Sci. Technol., 78 (2018) 1179–1188.
- C.M. Birdsall, A.C. Jenkins, E. Spadinger, Iodometric
determination of ozone, Anal. Chem., 24 (1952) 662–664.
- M.H. Dehghani, R.R. Karri, Z.T. Yeganeh, A.H. Mahvi,
H. Nourmoradi, M. Salari, A. Zarei, M. Sillanpää, Statistical
modelling of endocrine disrupting compounds adsorption onto
activated carbon prepared from wood using CCD-RSM and
DE hybrid evolutionary optimization framework: comparison
of linear vs non-linear isotherm and kinetic parameters,
J. Mol. Liq., 302 (2020) 112526, doi: 10.1016/j.molliq.2020.112526.
- J. Ma, N.J.D. Graham, Degradation of atrazine by manganesecatalysed
ozonation—influence of radical scavengers, Water
Res., 34 (2000) 3822–3828.
- Y.S. Zhao, C. Sun, J.Q. Sun, R. Zhou, Kinetic modeling and
efficiency of sulfate radical-based oxidation to remove
p-nitroaniline from wastewater by persulfate/Fe3O4 nanoparticles
process, Sep. Purif. Technol., 142 (2015) 182–188.
- A.D. Eaton, M.A.H. Franson, American Water Works
Association, Water Environment Federation, Standard Methods
for the Examination of Water and Wastewater, American
Public Health Association, 2005.
- D. Datta, Ö. Kerkez Kuyumcu, Ş.S. Bayazit, M. Abdel Salam,
Adsorptive removal of malachite green and Rhodamine B
dyes on Fe3O4/activated carbon composite, J. Dispersion Sci.
Technol., 38 (2017) 1556–1562.
- M. Malakootian, A. Nasiri, H. Mahdizadeh, Preparation
of CoFe2O4/activated carbon@chitosan as a new magnetic
nanobiocomposite for adsorption of ciprofloxacin in aqueous
solutions, Water Sci. Technol., 78 (2018) 2158–2170.
- R-r. Shan, L.-g. Yan, K. Yang, S.-y. Yu, Y.-f. Hao, H.-q. Yu, B. Du,
Magnetic Fe3O4/MgAl-LDH composite for effective removal of
three red dyes from aqueous solution, Chem. Eng. J., 252 (2014)
38–46.
- Y. Huang, M. Luo, Z. Xu, D. Zhang, L. Li, Catalytic ozonation of
organic contaminants in petrochemical wastewater with ironnickel
foam as catalyst, Sep. Purif. Technol., 211 (2019) 269–278.
- H. Zhang, Y. He, L. Lai, G. Yao, B. Lai, Catalytic ozonation of
Bisphenol A in aqueous solution by Fe3O4–MnO2 magnetic
composites: performance, transformation pathways and
mechanism, Sep. Purif. Technol., 245 (2020) 116449, doi: 10.1016/
j.seppur.2019.116449.
- H. Chen, J. Wang, Catalytic ozonation of sulfamethoxazole over
Fe3O4/Co3O4 composites, Chemosphere, 234 (2019) 14–24.
- P. Yan, J. Shen, L. Yuan, J. Kang, B. Wang, S. Zhao, Z. Chen,
Catalytic ozonation by Si-doped α-Fe2O3 for the removal
of nitrobenzene in aqueous solution, Sep. Purif. Technol.,
228 (2019) 115766, doi: 10.1016/j.seppur.2019.115766.
- M. Farzadkia, Y. Dadban Shahamat, S. Nasseri, A.H. Mahvi,
M. Gholami, A. Shahryari, Catalytic ozonation of phenolic
wastewater: identification and toxicity of intermediates, J. Eng.,
2014 (2014) 1–11, doi: 10.1155/2014/520929.
- A. Ikhlaq, F. Javed, R. Sohail, M. Kazmi, A. Rehman, F. Qi,
Solar photo-catalytic ozonation on γ-alumina for the removal
of dyes in wastewater, Int. J. Environ. Sci. Technol., (2020) 1–8,
doi: 10.1007/s13762-020-02940-5.
- A. Rey, D.H. Quinones, P.M. Álvarez, F.J. Beltrán, P.K. Plucinski,
Simulated solar-light assisted photocatalytic ozonation of
metoprolol over titania-coated magnetic activated carbon,
Appl. Catal., B, 111 (2012) 246–253.
- Y. Dadban Shahamat, M. Sadeghi, A. Shahryari, N. Okhovat,
F. Bahrami Asl, M.M. Baneshi, Heterogeneous catalytic
ozonation of 2, 4-dinitrophenol in aqueous solution by
magnetic carbonaceous nanocomposite: catalytic activity and
mechanism, Desal. Water Treat., 57 (2016) 20447–2056.
- A. Alinejad, H. Akbari, M. Ghaderpoori, A.K. Jeihooni,
A. Adibzadeh, Catalytic ozonation process using a MgO nanocatalyst
to degrade methotrexate from aqueous solutions and
cytotoxicity studies in human lung epithelial cells (A549)
after treatment, RSC Adv., 9 (2019) 8204–8214.
- Y. Wang, H. Cao, C. Chen, Y. Xie, H. Sun, X. Duan, S. Wang,
Metal-free catalytic ozonation on surface-engineered graphene:
microwave reduction and heteroatom doping, Chem. Eng. J.,
355 (2019) 118–129.
- A. Ikhlaq, D.R. Brown, B. Kasprzyk-Hordern, Catalytic
ozonation for the removal of organic contaminants in water on
alumina, Appl. Catal., B, 165 (2015) 408–418.
- A.G. Gonçalves, J.J.M. Órfão, M.F.R. Pereira, Catalytic ozonation
of sulphamethoxazole in the presence of carbon materials:
catalytic performance and reaction pathways, J. Hazard. Mater.,
239 (2012) 167–174.