References
- J.L. Martinez, Environmental pollution by antibiotics and by
antibiotic resistance determinants, Environ. Pollut., 157 (2009)
2893–2902.
- M. Hoseini, G.H. Safari, H. Kamani, J. Jaafari, A. Mahvi,
Survey on removal of tetracycline antibiotic from aqueous
solutions by nano-sonochemical process and evaluation of
the influencing parameters, Iran. J. Health. Environ., 8 (2015)
141–152.
- M. Kamranifar, A. Allahresani, A. Naghizadeh, Synthesis and
characterizations of a novel CoFe2O4@CuS magnetic nanocomposite
and investigation of its efficiency for photocatalytic degradation
of penicillin G antibiotic in simulated wastewater, J.
Hazard. Mater., 366 (2019) 545–555.
- A. Gulkowska, H.W. Leung, M.K. So, S. Taniyasu, N. Yamashita,
L.W. Yeung, B.J. Richardson, A. Lei, J.P. Giesy, P.K. Lam,
Removal of antibiotics from wastewater by sewage treatment
facilities in Hong Kong and Shenzhen, China, Water. Res., 42
(2008) 395–403.
- M. Samadi, R. Shokohi, R. Harati, Comparison of heterogeneous
fenton process and adsorption process on magnetic
nanocomposite for ciprofloxacin removal from aqueous solutions,
J. Qazvin. Univ. Med. Sci., 20 (2016) 4–13.
- Q. Xian, L. Hu, H. Chen, Z. Chang, H. Zou, Removal of nutrients
and veterinary antibiotics from swine wastewater by
a constructed macrophyte floating bed system, J. Environ.
Manag., 91 (2010) 2657–2661.
- K.B. Holten, Appropriate prescribing of oral beta-lactam antibiotics,
Am. Fam. Physician, 62 (2000) 611–620.
- A. Bryskier, Antibiotics and antibacterial agents: classifications
and structure-activity relationship, in: Antimicrobial
Agents, American Society of Microbiology, 2005, pp. 13–38.
- A. Bryskier, Penicillins, in: Antimicrobial Agents, American
Society of Microbiology, 2005, pp. 113–162.
- M. Dehghani, M. Ahmadi, S. Nasseri, Photodegradation of
the antibiotic penicillin G in the aqueous solution using UV-A
radiation, Iran. J. Health. Sci., 1 (2013) 43–50.
- A. Watkinson, E. Murby, S. Costanzo, Removal of antibiotics
in conventional and advanced wastewater treatment: implications
for environmental discharge and wastewater recycling,
Water. Res., 41 (2007) 4164–4176.
- M.B. Ahmed, J.L. Zhou, H.H. Ngo, W. Guo, Adsorptive removal
of antibiotics from water and wastewater: Progress and challenges,
Sci. Total Environ., 532 (2015) 112–126.
- V. Homem, L. Santos, Degradation and removal methods
of antibiotics from aqueous matrices–a review, J. Environ.
Manag., 92 (2011) 2304–2347.
- G.H. Safari, M. Hoseini, M. Seyedsalehi, H. Kamani, J. Jaafari,
A.H. Mahvi, Photocatalytic degradation of tetracycline using
nanosized titanium dioxide in aqueous solution, Int. J. Environ.
Sci. Technol., 12 (2015) 603–616.
- M. Bailón-Pérez, A. García-Campaña, C. Cruces-Blanco, M.
del Olmo Iruela, Trace determination of β-lactam antibiotics
in environmental aqueous samples using off-line and on-line
preconcentration in capillary electrophoresis, J. Chromatogr.
A, 1185 (2008) 273–280.
- K. Rahmani, M.A. Faramarzi, A.H. Mahvi, M. Gholami, A.
Esrafili, H. Forootanfar, M. Farzadkia, Elimination and detoxification
of sulfathiazole and sulfamethoxazole assisted by
laccase immobilized on porous silica beads, Int. Biodeterior.
Biodegrad., 97 (2015) 107–114.
- S. Behzadi, M. Dehghani, M. Sekhavatjoo, H. Hashemi, Optimization
of Fenton process for total organic carbon removal from
aqueous solution includes amoxicillin antibiotic by using Taguchi
experimental design, J. Health. Syst. Res., 9 (2013) 1186–1200.
- H. Rahmani, M. Gholami, A.H. Mahvi, M. Ali-Mohammadi,
K. Rahmani, Tinidazol antibiotic degradation in aqueous solution
by zero valent iron nanoparticles and hydrogen peroxide
in the presence of ultrasound radiation, J. Water. Chem. Technol.,
36 (2014) 317–324.
- S.-F. Pan, M.-P. Zhu, J.P. Chen, Z.-H. Yuan, L.-B. Zhong, Y.-M.
Zheng, Separation of tetracycline from wastewater using forward
osmosis process with thin film composite membrane–Implications
for antibiotics recovery, Sep. Purif. Technol., 153 (2015) 76–83.
- T.A. Gad-Allah, M.E.M. Ali, M.I. Badawy, Photocatalytic oxidation
of ciprofloxacin under simulated sunlight, J. Hazard.
Mater., 186 (2011) 751–755.
- A. Javid, S. Nasseri, A. Mesdaghinia, A.h. Mahvi, M. Alimohammadi,
R.M. Aghdam, N. Rastkari, Performance of photocatalytic
oxidation of tetracycline in aqueous solution by TiO2
nanofibers, J. Environ. Health. Sci. Eng., 11 (2013) 1–6.
- E. Elmolla, M. Chaudhuri, Improvement of biodegradability of
antibiotics wastewater by photo Fenton process, World. Appl.
Sci. J., 5 (2008) 53–58.
- K.-J. Choi, S.-G. Kim, S.-H. Kim, Removal of antibiotics by
coagulation and granular activated carbon filtration, J. Hazard.
Mater., 151 (2008) 38–43.
- K.-J. Choi, H.-J. Son, S.-H. Kim, Ionic treatment for removal of
sulfonamide and tetracycline classes of antibiotic, Sci. Total
Environ., 387 (2007) 247–256.
- L.R. Rad, M. Irani, R. Barzegar, Adsorptive removal of acetaminophen
and diclofenac using NaX nanozeolites synthesized
by microwave method, Korean. J. Chem. Eng., 32 (2015)
1606–1612.
- S.D. Ashrafi, H. Kamani, J. Jaafari, A.H. Mahvi, Experimental
design and response surface modeling for optimization of fluoroquinolone
removal from aqueous solution by NaOH-modified
rice husk, Desal. Water Treat., 57 (2016) 16456–16465.
- M.T. Samadi, R. Shokoohi, M. Araghchian, M. Tarlani Azar,
Amoxicillin removal from aquatic solutions using multiwalled
carbon nanotubes, J. Mazandaran. Univ. Med. Sci., 24
(2014) 103–115.
- H. Jafari Mansoorian, A.H. Mahvi, F. Kord Mostafapoor, M.
Alizadeh, Equilibrium and synthetic studies of methylene
blue dye removal using ash of walnut shell, J. Health. Field, 1
(2013) 48–55.
- R. Crisafully, M.A.L. Milhome, R.M. Cavalcante, E.R. Silveira,
D. De Keukeleire, R.F. Nascimento, Removal of some polycyclic
aromatic hydrocarbons from petrochemical wastewater
using low-cost adsorbents of natural origin, Bioresour. Technol.,
99 (2008) 4515–4519.
- M. Amin, A. Alazba, U. Manzoor, A review of removal of pollutants
from water/wastewater using different types of nanomaterials,
Adv. Mater. Sci. Eng., 2014 (2014) 1–24.
- H. Lu, J. Wang, M. Stoller, T. Wang, Y. Bao, H. Hao, An overview
of nanomaterials for water and wastewater treatment,
Adv. Mater. Sci. Eng., 2016 (2016) 1–10.
- X. Hou, J. Feng, X. Liu, Y. Ren, Z. Fan, M. Zhang, Magnetic
and high rate adsorption properties of porous Mn1−xZnx-Fe2O4 (0≤x≤0.8) adsorbents, J. Colloid Interface Sci., 353 (2011)
524–529.
- B. Bapusaheb, T. Patil, Wastewater treatment using nanoparticles,
J. Adv. Chem. Eng., 5 (2015) 1–2.
- K.M. Batoo, D. Salah, G. Kumar, A. Kumar, M. Singh, M.A.
El-sadek, F.A. Mir, A. Imran, D.A. Jameel, Hyperfine interaction
and tuning of magnetic anisotropy of Cu doped
CoFe2O4 ferrite nanoparticles, J. Magn. Magn. Mater., 411
(2016) 91–97.
- J. Saffari, D. Ghanbari, N. Mir, K. Khandan-Barani, Sonochemical
synthesis of CoFe2O4 nanoparticles and their application in
magnetic polystyrene nanocomposites, J. Ind. Eng. Chem., 20
(2014) 4119–4123.
- M.H. Beyki, M. Shirkhodaie, F. Shemirani, Polyol route synthesis
of a Fe3O4@CuS nanohybrid for fast preconcentration of
gold ions, Anal. Methods, 8 (2016) 1351–1358.
- H.R. Pouretedal, N. Sadegh, Effective removal of Amoxicillin,
Cephalexin, Tetracycline and Penicillin G from aqueous solutions
using activated carbon nanoparticles prepared from vine
wood, J. Water. Process. Eng., 1 (2014) 64–73.
- A. Norouzian Baghani, A.H. Mahvi, M. Gholami, N. Rastkari,
M. Delikhoon, One-Pot synthesis, characterization
and adsorption studies of amine-functionalized magnetite
nanoparticles for removal of Cr (VI) and Ni (II) ions from aqueous
solution: kinetic, isotherm and thermodynamic studies, J.
Environ. Health. Sci. Eng., 14 (2016) 11.
- A.N. Baghani, A.H. Mahvi, N. Rastkari, M. Delikhoon, S.S.
Hosseini, R. Sheikhi, Synthesis and characterization of amino-functionalized magnetic nanocomposite (Fe3O4–NH2) for
fluoride removal from aqueous solution, Desal. Water Treat.,
65 (2017) 367–374.
- O. Moradi, A. Fakhri, S. Adami, S. Adami, Isotherm, thermodynamic,
kinetics, and adsorption mechanism studies of
Ethidium bromide by single-walled carbon nanotube and carboxylate
group functionalized single-walled carbon nanotube,
J. Colloid Interface Sci., 395 (2013) 224–229.
- K.Y. Foo, B.H. Hameed, Insights into the modeling of adsorption
isotherm systems, Chem. Eng. J., 156 (2010) 2–10.
- X.-H. Li, C.-L. Xu, X.-H. Han, L. Qiao, T. Wang, F.-S. Li, Synthesis
and magnetic properties of nearly monodisperse CoFe2O444
nanoparticles through a simple hydrothermal condition,
Nanoscale. Res. Lett., 5 (2010) 1039–1044.
- Y. Huang, W. Wang, Q. Feng, F. Dong, Preparation of magnetic
clinoptilolite/CoFe2O4 composites for removal of Sr2+ from
aqueous solutions: Kinetic, equilibrium, and thermodynamic
studies, J. Saudi Chem. Soc., 21 (2017) 58–66.
- S. Riyaz, A. Parveen, A. Azam, Microstructural and optical
properties of CuS nanoparticles prepared by sol–gel route,
Perspec. Sci., 8 (2016) 632–635.
- M.A. Gabal, S.S. Ata-Allah, Effect of diamagnetic substitution
on the structural, electrical and magnetic properties of
CoFe2O4, Mater. Chem. Phys., 85 (2004) 104–112.
- X. Li, W. Zhang, Y. Feng, W. Li, P. Peng, J. Yao, M. Li, C. Jiang,
Ultrafine CoSe nano-crystallites confined in leaf-like N-doped
carbon for long-cyclic and fast sodium ion storage, Electrochim.
Acta, 294 (2019) 173–182.
- M.R. Samarghandi, T.J. Al-Musawi, A. Mohseni-Bandpi, M.
Zarrabi, Adsorption of cephalexin from aqueous solution
using natural zeolite and zeolite coated with manganese oxide
nanoparticles, J. Mol. Liq., 211 (2015) 431–441.
- M. Ghaemi, G. Absalan, L. Sheikhian, Adsorption characteristics
of Titan yellow and Congo red on CoFe2O4 magnetic
nanoparticles, J. Iran. Chem. Soc., 11 (2014) 1759–1766.
- M.M. Hossain, J. Dean, Extraction of penicillin G from aqueous
solutions: Analysis of reaction equilibrium and mass transfer,
Sep. Purif. Technol., 62 (2008) 437–443.
- Z. Aksu, Ö. Tunç, Application of biosorption for penicillin G
removal: comparison with activated carbon, Process Biochem.,
40 (2005) 831–847.
- S. Moussavi, M. Ehrampoush, A. Mahvi, M. Ahmadian, S.
Rahimi, Adsorption of humic acid from aqueous solution on
single-walled carbon nanotubes, Asian J. Chem., 25 (2013)
5319–5324.
- S. Wu, X. Zhao, Y. Li, Q. Du, J. Sun, Y. Wang, X. Wang, Y. Xia,
Z. Wang, L. Xia, Adsorption properties of doxorubicin hydrochloride
onto graphene oxide: equilibrium, kinetic and thermodynamic
studies, Materials, 6 (2013) 2026–2042.
- D. Balarak, F.K. Mostafapour, A. Joghataei, Experimental and
kinetic studies on Penicillin G adsorption by Lemna minor, Br.
J. Pharm. Res., 9 (2016) 1–10.
- S. Wu, X. Zhao, Y. Li, C. Zhao, Q. Du, J. Sun, Y. Wang, X. Peng,
Y. Xia, Z. Wang, L. Xia, Adsorption of ciprofloxacin onto biocomposite
fibers of graphene oxide/calcium alginate, Chem.
Eng. J., 230 (2013) 389–395.
- D. Balarak, F.K. Mostafapour, H. Akbari, A. Joghtaei, Adsorption
of amoxicillin antibiotic from pharmaceutical wastewater
by activated carbon prepared from Azolla filiculoides, Br. J.
Pharm. Res., 18 (2017) 1–13.
- C. Dong, W. Chen, C. Liu, Preparation of novel magnetic chitosan
nanoparticle and its application for removal of humic
acid from aqueous solution, Appl. Surf. Sci., 292 (2014) 1067–1076.
- S. Gueu, B. Yao, K. Adouby, G. Ado, Kinetics and thermodynamics
study of lead adsorption on to activated carbons from
coconut and seed hull of the palm tree, Int. J. Environ. Sci.
Technol., 4 (2007) 11–17.
- K.Z. Elwakeel, Removal of Reactive Black 5 from aqueous solutions
using magnetic chitosan resins, J. Hazard. Mater., 167
(2009) 383–392.
- S. Banerjee, M.C. Chattopadhyaya, Adsorption characteristics
for the removal of a toxic dye, tartrazine from aqueous solutions
by a low cost agricultural by-product, Arabian J. Chem.,
10 (2017) S1629–S1638.
- A. Mahvi, A. Maleki, A. Eslami, Potential of rice husk and rice
husk ash for phenol removal in aqueous systems, Am. J. Appl.
Sci., 1 (2004) 321–326.
- A. Sheikh Mohammadi, M. Sardar, The removal of penicillin
G from aqueous solutions using chestnut shell modified with
H2SO4: Isotherm and kinetic study, Iran. J. Health. Environ., 5
(2013) 497–508.
- M. Malakootian, L. Ranandeh Kalankesh, Assessing the performance
of silicon nanoparticles in adsorption of humic acid
in water, Iran. J. Health. Environ., 6 (2014) 535–544.
- H. Chen, J. Zhao, J. Wu, G. Dai, Isotherm, thermodynamic,
kinetics and adsorption mechanism studies of methyl orange
by surfactant modified silkworm exuviae, J. Hazard. Mater.,
192 (2011) 246–254.
- B.H. Hameed, A.L. Ahmad, K.N.A. Latiff, Adsorption of basic
dye (methylene blue) onto activated carbon prepared from rattan
sawdust, Dyes Pigm., 75 (2007) 143–149.
- A. Dada, A. Olalekan, A. Olatunya, O. Dada, Langmuir, Freundlich,
Temkin and Dubinin–Radushkevich isotherms studies
of equilibrium sorption of Zn2+ unto phosphoric acid modified
rice husk, IOSR J. Appl. Chem., 3 (2012) 38–45.
- H. Abdoallahzadeh, B. Alizadeh, R. Khosravi, M. Fazlzadeh,
Efficiency of EDTA modified nanoclay in removal of humic
acid from aquatic solutions, J. Mazandaran. Univ. Med. Sci., 26
(2016) 111–125.
- E. Bulut, M. Özacar, İ.A. Şengil, Adsorption of malachite green
onto bentonite: equilibrium and kinetic studies and process
design, Microporous Mesoporous Mater., 115 (2008) 234–246.
- A. Ziapour, Y. Hamzeh, A. Abyaz, Application of soybean
waste as adsorbent of Acid Orange 7 from aqueous solution, J.
Sep. Sci. Eng., 2 (2012) 29–38.
- Y.-S. Ho, Review of second-order models for adsorption systems,
J. Hazard. Mater., 136 (2006) 681–689.