References
- Y. Hu, G. Wang, M. Huang, K. Lin, Y. Yi, Z. Fang, P. Li,
K. Wang, Enhanced degradation of metronidazole by
heterogeneous sono-Fenton reaction coupled ultrasound using
Fe3O4 magnetic nanoparticles, Environ. Technol., (2017) 1–22,
doi: 10.1080/09593330.2017.1374470.
- S.R Wilkinson, C. Bot, J.M Kelly, B.S Hall, Trypanocidal activity
of nitroaromatic prodrugs: current treatments and future
perspectives, Curr. Top. Med. Chem., 11 (2011) 2072–2084.
- S. Patterson, S. Wyllie, Nitro drugs for the treatment of
trypanosomatid diseases: past, present, and future prospects,
Trends Parasitol., 30 (2014) 289–298.
- N. Nasseh, B. Barikbin, L. Taghavi, M.A. Nasseri, Adsorption
of metronidazole antibiotic using a new magnetic
nanocomposite from simulated wastewater (isotherm, kinetic
and thermodynamic studies), Compos. B. Eng., 159 (2019)
146–156.
- A. Mital, Synthetic nitroimidazoles: biological activities and
mutagenicity relationships, Sci. Pharm., 77 (2009) 497–520.
- C.F. Rediguieri, V. Porta, D.S. Nunes, T.M. Nunes,
H.E. Junginger, S. Kopp, K.K. Midha, V.P. Shah, S. Stavchansky,
J.B. Dressman, Biowaiver monographs for immediate release
solid oral dosage forms: metronidazole, J. Pharm. Sci., 100
(2011) 1618–1627.
- N. Okhovat, M. Hashemi, A. Golpayegani, Photocatalytic
decomposition of metronidazolein aqueous solutions using
titanium dioxide nanoparticles, J. Mater. Environ. Sci., 6 (2015)
792–799.
- H. Azarpira, Y. Mahdavi, O. Khaleghi, D. Balarak,
Thermodynamic studies on the removal of metronidazole
antibiotic by multi-walled carbon nanotubes, Der Pharmacia
Lettre, 8 (2016) 107–113.
- F. Azadbakht, A. Esrafili, M. Yeganeh Badi, J. Sajedifar,
M. Amiri, M. Gholami, Efficiency of persulfate-based advanced
oxidation process (UV/Na2S2O8) in removal of metronidazole
from aqueous solutions,
JMUMS, 27 (2017) 119–129.
- M. Kermani, A.F. Bahrami, A. Esrafili, M. Farzadkia,
A.S. Salahshur, Identification of oxidation intermediates
and investigation of toxicity changes in heterogenic catalytic
ozonation process in the presence of MgO nanoparticles for
metronidazole removal from aqueous solution, Health Syst.
Res., 13 (2016).
- D. Balarak, F.K. Mostafapour, Photocatalytic degradation of
amoxicillin using UV/synthesized NiO from pharmaceutical
wastewater, Indones. J. Chem., 19 (2019) 211–218.
- I. Nasseh, M. Khodadadi, R. Khosravi, A. Beirami, N. Nasseh,
Metronidazole removal methods from aquatic media: a
systematic review, Ann. Mil. Health Sci. Res., 14 (2016) e13756,
doi: 10.5812/amh.13756.
- B. Kamarehie, A. Jafari, R. Heydari, Study of the removal of
metronidazole from aqueous solutions using Electro/Fenton
process and graphite and iron electrodes, Yafte, 20 (2018)
41–51.
- T.J. Al-Musawi, P. Rajiv, N. Mengelizadeh, F. Sadat Arghavan,
D. Balarak, Photocatalytic efficiency of CuNiFe2O4 nanoparticles
loaded on multi-walled carbon nanotubes as a novel
photocatalyst for ampicillin degradation, J. Mol. Liq.,
337 (2021) 116470, doi: 10.1016/j.molliq.2021.116470.
- Y. Ma, Q. Zhou, S. Zhou, W. Wang, J. Jin, J. Xie, A. Li, C. Shuang,
A bifunctional adsorbent with high surface area and cation
exchange property for synergistic removal of tetracycline
and Cu2+, Chem. Eng. J., 258 (2014) 26–33.
- H. Sayğılı, F. Güzel, Effective removal of tetracycline from
aqueous solution using activated carbon prepared from tomato
(Lycopersicon esculentum Mill.) industrial processing waste,
Ecotoxicol. Environ. Saf., 131 (2016) 22–29.
- N. Nasseh, F.S. Arghavan, S. Rodriguez-Couto, A. Hossein
Panahi, M. Esmati, T.J. A-Musawi, Preparation of activated
carbon@ZnO composite and its application as a novel catalyst
in catalytic ozonation process for metronidazole degradation,
Adv. Powder Technol., 31 (2020) 875–885.
- D. Balarak, F. Mostafapour, H. Azarpira, Adsorption isotherm
studies of tetracycline antibiotics from aqueous solutions by
maize stalks as a cheap biosorbent, Int. J. Pharm. Technol.,
8 (2016) 16664–16675.
- W. Liu, H. Xie, J. Zhang, C. Zhang, Sorption removal of
cephalexin by HNO3 and H2O2 oxidized activated carbons,
Sci. China Chem., 55 (2012) 1959–1967.
- A. Almasi, A. Dargahi, M. Mohamadi, H. Biglari, F. Amirian,
M. Raei, Removal of Penicillin G by combination of sonolysis
and photocatalytic (sonophotocatalytic) process from
aqueous solution: process optimization using RSM (Response
Surface Methodology), Electron. Physician, 8 (2016) 2878–2887,
doi: 10.19082/XX.
- I.C. Iakovides, I. Michael-Kordatou, N.F.F. Moreira, A.R. Ribeiro,
T. Fernandes, M.F.R. Pereira, O.C. Nunes, C.M. Manaia,
A.M.T. Silva, D. Fatta-Kassinos, Continuous ozonation
of urban wastewater: removal of antibiotics, antibioticresistant
Escherichia coli and antibiotic resistance genes and
phytotoxicity, Water Res., 159 (2019) 333–347.
- F.S. Arghavan, A. Hossein Panahi, N. Nasseh, M. Ghadirian,
Adsorption-photocatalytic processes for removal of pentachlorophenol
contaminant using FeNi3/SiO2/ZnO magnetic
nanocomposite under simulated solar light irradiation,
Environ. Sci. Pollut. Res., 28 (2021) 7462–7475.
- N. Nasseh, F.s. Arghavan, N. Daglioglu, A. Asadi, Fabrication
of novel magnetic CuS/Fe3O4/GO nanocomposite for organic
pollutant degradation under visible light irradiation, Environ.
Sci. Pollut. Res., (2021) 1–12, doi:10.1007/s11356-020-12066-3.
- D. Balarak, F. Mostafapour, E. Bazrafshan, T.A. Saleh, Studies on
the adsorption of amoxicillin on multi-wall carbon nanotubes,
Water Sci. Technol., 75 (2017) 1599–1606.
- N. Nasseh, L. Taghavi, B. Barikbin, M.A. Nasseri, Synthesis
and characterizations of a novel FeNi3/SiO2/CuS magnetic
nanocomposite for photocatalytic degradation of tetracycline
in simulated wastewater, J. Cleaner Prod., 179 (2018) 42–54.
- B. Barikbin, F.S. Arghavan, A. Othmani, A.H. Panahi, N. Nasseh,
Degradation of tetracycline in Fenton and heterogeneous
Fenton-like processes by using FeNi3 and FeNi3/SiO2 catalysts,
Desal. Water Treat., 200 (2020) 262–274.
- M. Khodadadi, T.J. Al-Musawi, M. Kamranifar, M.H. Saghi,
A. Hossein Panahi, A comparative study of using barberry stem
powder and ash as adsorbents for adsorption of humic acid,
Environ. Sci. Pollut. Res., 26 (2019) 26159–26169.
- T.J. Al-Musawi, P. Rajiv, N. Mengelizadeh, I.A. Mohammed,
D. Balarak, Development of sonophotocatalytic process for
degradation of acid orange 7 dye by using titanium dioxide
nanoparticles/graphene oxide nanocomposite as a catalyst,
J. Environ. Manage., 292 (2021) 112777, doi: 10.1016/j.
jenvman.2021.112777.
- N. Nasseh, T.J. Al-Musawi, M.R. Miri, S. Rodriguez-Couto,
A. Hossein Panahi, A comprehensive study on the application
of FeNi3@SiO2@ZnO magnetic nanocomposites as a novel
photo-catalyst for degradation of tamoxifen in the presence
of simulated sunlight, Environ. Pollut., 261 (2020) 114127,
doi: 10.1016/j.envpol.2020.114127.
- T. Xian, L. Di, X. Sun, H. Li, Y. Zhou, H. Yang, Photo-Fenton
degradation of AO7 and photocatalytic reduction of Cr(VI)
over CQD-decorated BiFeO3 nanoparticles under visible and
NIR light irradiation, Nanoscale Res. Lett., 14 (2019) 1–14.
- D. Balarak, H. Azarpira, F.K. Mostafapour, Study of the
adsorption mechanisms of cephalexin on to Azolla filiculoides,
Der Pharma Chemica, 8 (2016) 114–121.
- T.J. Al-Musawi, N. Mengelizadeh, O. Al Rawi, D. Balarak,
Capacity and modeling of Acid Blue 113 dye adsorption onto
chitosan magnetized by Fe2O3 nanoparticles, J. Polym. Environ.,
(2021), doi: 10.21203/rs.3.rs-334767/v1.
- N. Nasseh, F.S. Arghavan, S. Rodriguez-Couto, A. Hossein
Panahi, Synthesis of FeNi3/SiO2/CuS magnetic nanocomposite
as a novel adsorbent for Congo Red dye removal,
Int. J. Environ. Anal. Chem., (2020) 1–21, doi: 10.1080/03067319.2020.1754810.
- S.M. Rahimi, F.S. Arghavan, A. Othmani, N. Nasseh, Magnetically
recoverable nickel ferrite coated with CuS nanocomposite for
degradation of metronidazole in photocatalytic and photo
Fenton like processes, Int. J. Environ. Anal. Chem., (2020) 1–21,
doi: 10.1080/03067319.2020.1817420.
- M. Forouzesh, A. Ebadi, A. Aghaeinejad-Meybodi, Degradation
of metronidazole antibiotic in aqueous medium using activated
carbon as a persulfate activator, Sep. Purif. Technol., 210 (2019)
145–151.
- F.H. Kamar, A.C. Nechifor, G. Nechifor, T.J. Al-Musawi,
A.H. Mohammed, Aqueous phase biosorption of Pb(II), Cu(II),
and Cd(II) onto cabbage leaves powder, Int. J. Chem. React.
Eng., 15 (2017).
- F. Brouers, T.J. Al-Musawi, On the optimal use of isotherm
models for the characterization of biosorption of lead onto
algae, J. Mol. Liq., 212 (2015) 46–51.
- M.H. Alhassani, S.M. Al-Jubouri, H.A. Al-Jendeel, Stabilization
of phenol trapped by agricultural waste: a study of the influence
of ambient temperature on the adsorbed phenol, Desal. Water
Treat., 187 (2020) 266–276.
- A. Mohseni-Bandpei, A. Eslami, H. Kazemian, M. Zarrabi,
T.J. Al-Musawi, A high density 3-aminopropyltriethoxysilane
grafted pumice-derived silica aerogel as an efficient
adsorbent for ibuprofen: characterization and optimization
of the adsorption data using response surface methodology,
Environ. Technol. Innovation, 18 (2020) 100642, doi: 10.1016/j.
eti.2020.100642.
- J. Wang, G. Liu, T. Li, C. Zhou, Physicochemical studies toward
the removal of Zn(II) and Pb(II) ions through adsorption on
montmorillonite-supported zero-valent iron nanoparticles,
RSC Adv., 5 (2015) 29859–29871.
- M. Farzadkia, A. Esrafili, M.A. Baghapour, Y.D. Shahamat,
N. Okhovat, Degradation of metronidazole in aqueous solution
by nano-ZnO/UV photocatalytic process, Desal. Water Treat.,
52 (2014) 4947–4952.
- D. Carrales-Alvarado, R. Ocampo-Pérez, R. Leyva-Ramos,
J. Rivera-Utrilla, Removal of the antibiotic metronidazole by
adsorption on various carbon materials from aqueous phase,
J. Colloid Interface Sci., 436 (2014) 276–285.
- H.B. Ammar, Sono-Fenton process for metronidazole
degradation in aqueous solution: effect of acoustic cavitation
and peroxydisulfate anion, Ultrason. Sonochem., 33 (2016)
164–169.
- Z. Rahmatinia, M. Rahmatinia, Removal of the metronidazole
from aqueous solution by heterogeneous electro-Fenton process
using nano-Fe3O4, Data Brief, 19 (2018) 2139–2145.
- E.M. Kalhori, T.J. Al-Musawi, E. Ghahramani, H. Kazemian,
M. Zarrabi, Enhancement of the adsorption capacity of
the light-weight expanded clay aggregate surface for the
metronidazole antibiotic by coating with MgO nanoparticles:
studies on the kinetic, isotherm, and effects of environmental
parameters, Chemosphere, 175 (2017) 8–20.
- A. Habibi, L.S. Belaroui, A. Bengueddach, A.L. Galindo,
C.I.S. Díaz, A. Peña, Adsorption of metronidazole and
spiramycin by an Algerian palygorskite. Effect of modification
with tin, Microporous Mesoporous Mater., 268 (2018) 293–302.
- R. Nosrati, A. Olad, R. Maramifar, Degradation of ampicillin
antibiotic in aqueous solution by ZnO/polyaniline
nanocomposite as photocatalyst under sunlight irradiation,
Environ. Sci. Pollut. Res., 19 (2012) 2291–2299.
- N. Nasseh, L. Taghavi, B. Barikbin, M.A. Nasseri, A. Allahresani,
FeNi3/SiO2 magnetic nanocomposite as an efficient and
recyclable heterogeneous Fenton-like catalyst for the oxidation
of metronidazole in neutral environments: adsorption and
degradation studies, Compos. B. Eng., 166 (2018) 328–340.
- 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.
- G. Prados-Joya, M. Sánchez-Polo, J. Rivera-Utrilla, M. Ferro-Garcia, Photodegradation of the antibiotics nitroimidazoles
in aqueous solution by ultraviolet radiation, Water Res.,
45 (2011) 393–403.
- T.J. Al-Musawi, H. Kamani, E. Bazrafshan, A.H. Panahi,
M.F. Silva, G. Abi, Optimization the effects of physicochemical
parameters on the degradation of cephalexin in sono-Fenton reactor by using Box-Behnken response surface
methodology, Catal. Lett., 149 (2019) 1186–1196.
- D. Balarak, N. Mengelizadeh, P. Rajiv, K. Chandrika,
Photocatalytic degradation of amoxicillin from aqueous
solutions by titanium dioxide nanoparticles loaded on
graphene oxide, Environ. Sci. Pollut. Res. Int., (2021),
doi: 10.1007/s11356-021-13525-1.
- P. Rajiv, N. Mengelizadeh, G. McKay, D. Balarak, Photocatalytic
degradation of ciprofloxacin with Fe2O3 nanoparticles loaded
on graphitic carbon nitride: mineralisation, degradation
mechanism and toxicity assessment, Int. J Environ. Anal.
Chem., (2021) 1–15, doi: 10.1080/03067319.2021.1890059.