References
- T. Garoma, S.H. Umamaheshwar, A. Mumper, Removal of
sulfadiazine, sulfamethizole, sulfamethoxazole, and sulfathiazole
from aqueous solution by ozonation, Chemosphere,
79 (2010) 814–820.
- R. Alexy, T. Kumpel, K. Kummerer, Assessment of degradation
of 18 antibiotics in the closed bottle test, Chemosphere,
57 (2004) 505–512.
- K.J. Choi, S.G. Kim, S.H. Kim, Removal of antibiotics by
coagulation and granular activated carbon filtration, J. Hazard.
Mater., 151 (2008) 338–343.
- D. Balarak, F.K. Mostafapour, Photocatalytic degradation of
amoxicillin using UV/Synthesized NiO from pharmaceutical
wastewater, Indonesia J. Chem., 19 (2019) 211–218.
- D. Balarak, F.K. 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.
- D. Balarak, F.K. Mostafapour, E. Bazrafshan, T.A. Saleh,
Studies on the adsorption of amoxicillin on multi-wall carbon
nanotubes, Water Sci. Technol., 75 (2017) 1599–1606.
- S.K. Behera, S.Y. Oh, H.S. Park, Sorptive removal of ibuprofen
from water using selected soil minerals and activated carbon,
Int. J. Environ. Sci. Technol., 9 (2012) 85–94.
- L.H. Heckmann, A.C. Helen, L. Hooper, R. Connon,
T.H. Hutchinson, S.J. Maund, R.M. Sibly, Chronic toxicity of
ibuprofen to Daphnia magna: effects on life history traits and
population dynamics, Toxicol. Lett., 172 (2007) 137–145.
- M. Melillo, V.M. Gun’ko, S.R. Tennison, L.I. Mikhalovska,
G.J. Phillips, J.G. Davies, Structural characteristics of activated
carbons and ibuprofen adsorption affected by Bovine serum
albumin, Langmuir, 20 (2004) 2837–2851.
- A.S. Mestre, J. Pires, J.M.F. Nogueira, A.P. Carvalho, Activated
carbons for the adsorption of ibuprofen, Carbon, 45 (2007)
1979–1988.
- A.S. Mestre, J. Pires, J.M.F. Nogueira, J.B. Parra, Waste-derived
activated carbons for removal of ibuprofen from solution: role
of surface chemistry and pore structure, Bioresour. Technol.,
100 (2007) 1720–1726.
- R. Rostamian, H. Behnejad, A comparative adsorption study
of sulfamethoxazole onto graphene and graphene oxide
nanosheets through equilibrium, kinetic and thermodynamic
modeling, Proc. Saf. Environ. Prot., 102 (2016) 20–29.
- A.H. Mahvi, F.K. Mostafapour, Biosorption of tetracycline from
aqueous solution by Azolla filiculoides: equilibrium kinetic and
thermodynamics studies, Fresenius Environ. Bull., 27 (2018)
5759–5767.
- X.D. Zhu, Y.J. Wang, R.J. Sun, D.M. Zhou, Photocatalytic
degradation of tetracycline in aqueous solution by nanosized
TiO2, Chemosphere, 92 (2013) 925–932.
- M.E. Parolo, M.C. Savini, J.M. Vallés, M.T. Baschini, M.J. Avena,
Tetracycline adsorption on montmorillonite: pH and ionic
strength effects, Appl. Clay Sci., 40 (2008) 179–186.
- D. Balarak, H. Azarpira, F.K. Mostafapour, Study of the
adsorption mechanisms of cephalexin on to Azolla filiculoides,
Pharm. Chem., 8 (2016) 114–121.
- L. Ji, W. Chen, L. Duan, D. Zhu, Mechanisms for strong
adsorption of tetracycline to carbon nanotubes: a comparative
study using activated carbon and graphite as adsorbents,
Environ. Sci. Technol., 43 (2009) 2322–2327.
- L. Zhang, X. Song, X. Liu, L. Yang, F. Pan, Studies on the
removal of tetracycline by multi-walled carbon nanotubes,
Chem. Eng. J., 178 (2011) 26–33.
- M. Kamranifar, F. Safari, A. Naghizadeh, Mechanism, kinetics
and thermodynamic of Penicillin G antibiotic removal by
silica nanoparticles from simulated hospital wastewater,
Desal. Water Treat., 169 (2019) 333–341.
- M. Kamranifar, A. Allahresani, A. Naghizadeh, Application of
CoFe2O4@CuS magnetic nanocomposite as a novel adsorbent
for removal of Penicillin G from aqueous solutions: isotherm,
kinetic and thermodynamic study, Desal. Water Treat.,
148 (2019) 363–373.
- 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.
- R. Kamaraj, S. Vasudevan, Decontamination of selenate from
aqueous solution by oxidized multi-walled carbon nanotubes,
Powder Technol., 274 (2015) 268–275.
- P. Ganesan, R. Kamaraj, G. Sozhan, S. Vasudevan, Oxidized
multi-walled carbon nanotubes as adsorbent for the removal
of manganese from aqueous solution, Environ. Sci. Pollut. Res.,
20 (2013) 987–996.
- R. Kamaraj, P. Pandiarajan, G.A. Shibayama, S. Vasudevan,
Eco-friendly and easily prepared graphene nanosheets for
safe drinking water: removal of chloro-phenoxyacetic acid
herbicides, ChemistrySelect, 2 (2017) 342–355.
- A. Carabineiro, T. Thavorn-Amornsri, F. Pereira, L. Figueiredo,
Adsorption of ciprofloxacin on surface modified carbon
materials, Water Res., 145 (2011) 4583–4591.
- L. Huang, M. Wang, C. Shi, J. Huang, B. Zhang, Adsorption of
tetracycline and ciprofloxacin on activated carbon prepared
from lignin with H3PO4 activation, Desal. Water Treat., 52 (2014)
2678–2687.
- J.A. Muthanna, M.J. Ahmed, S.K. Theydan, Adsorption of
cephalexin onto activated carbons from Albizia lebbeck seed
pods by microwave-induced KOH and K2CO3 activations,
Chem. Eng. J., 211 (2012) 200–207.
- R.A. Diyanati, Z. Yousefi, J.Y. Cherati, The ability of Azolla and
Lemna minor biomass for adsorption of phenol from aqueous
solutions, J. Mazandaran Univ. Med. Sci., 23 (2013) 17–23.
- R.A. Diyanati, J. Yazdani, Effect of sorbitol on phenol removal
rate by Lemna minor, J. Mazandaran Univ. Med. Sci., 22 (2013)
58–64.
- Y. Uysal, Removal of chromium ions from wastewater by
duckweed, Lemna minor L. by using a pilot system with
continuous flow Y, J. Hazard. Mater., 263 (2013) 486–492.
- D. Balarak, F.K. Mostafapour, H. Azarpira, Adsorption kinetics
and equilibrium of ciprofloxacin from aqueous solutions
using corylusavellana (hazelnut) activated carbon, Br. J. Pharm.
Res., 13 (2016) 1–14.
- E.K. Putra, R. Pranowoa, J. Sunarsob, N. Indraswatia,
S. Ismadjia, Performance of activated carbon and bentonite
for adsorption of amoxicillin from wastewater: mechanisms,
isotherms and kinetics, Water Res., 43 (2009) 2419–2430.
- X. Peng, F. Hu, H. Dai, Q. Xiong, Study of the adsorption
mechanism of ciprofloxacin antibiotics onto graphitic
ordered mesoporous carbons, J. Taiwan Inst. Chem. Eng.,
8 (2016) 1–10.
- Y. Gao, Y. Li, L. Zhang, H. Huang, J. Hu, Adsorption and
removal of tetracycline antibiotics from aqueous solution
by graphene oxide, J. Colloid Interface Sci., 368 (2012)
540–546.
- Z. 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.
- M. Jafari, S.F. Aghamiri, G. Khaghanic, Batch adsorption of
cephalosporins antibiotics from aqueous solution by means of
multi-walled carbon nanotubes, World Appl. Sci. J., 14 (2011)
1642–1650.
- R. Al-Khalisy, A. Al-Haidary, A. Al-Dujaili, Aqueous phase
adsorption of cephalexin onto bentonite and activated carbon,
Sep. Sci. Technol., 45 (2010) 1286–1294.
- A. Ghauch, A. Tuqan, H.A. Assi, Elimination of amoxicillin
and ampicillin by micro scale and nano scale iron particles,
Environ. Pollut., 157 (2009) 1626–1635.
- S. Ahmadi, A. Banach, F.K. Mostafapour, Study survey of cupric
oxide nanoparticles in removal efficiency of ciprofloxacin
antibiotic from aqueous solution: adsorption isotherm study,
Desal. Water Treat., 89 (2017) 297–303.
- M. Malakootian, Y. Mahdavi, S.H. Sadeghi, N. Amirmahani,
Removal of antibiotics from wastewater by Azolla filiculoides:
kinetic and equilibrium studies, Int. J. Anal. Pharm. Biomed.
Sci., 4 (2015) 105–113.
- H. Azarpira, Y. Mahdavi, O. Khaleghi, Thermodynamic studies
on the removal of metronidazole antibiotic by multi-walled
carbon nanotubes, Pharm. Lett., 8 (2016) 107–113.
- W. Chih-Jen, L. Zhaohui, J. Wei-Teh, Adsorption of ciprofloxacin
on 2:1 dioctahedral clay minerals, Appl. Clay Sci.,
53 (2011) 723–728.
- M. Erşan, E. Bağd, Investigation of kinetic and thermodynamic
characteristics of removal of tetracycline with sponge
like, tannin based cryogels, Colloids Surf., B, 104 (2013) 75–82.
- D. Balarak, H. Azarpira, Rice husk as a biosorbent for antibiotic
metronidazole removal: isotherm studies and model validation,
Int. J. ChemTech. Res., 9 (2016) 566–573.
- S.E. Moradi, Highly efficient removal of amoxicillin from
water by magnetic graphene oxide adsorbent, Chem. Bull.
Politehnica Univ. Timisoara, 60 (2015) 41–48.
- S. Vasudevan, J. Lakshmi, The adsorption of phosphate by
graphene from aqueous solution, RSC Adv., 2 (2012) 5234–5242.
- S. Vasudevan, J. Lakshmi, G. Sozhan, Studies relating to removal
of arsenate by electrochemical coagulation: optimization,
kinetics, coagulant characterization, Sep. Sci. Technol., 45 (2010)
1313–1325.
- S.X. Zha, Y. Zhou, X. Jin, Z. Chen, The removal of amoxicillin
from wastewater using organobentonite, J. Environ. Manage.,
129 (2013) 569–576.
- B. Kakavandi, R. Kalantary, A. Jonidi Jafari, A. Esrafily,
A. Gholizadeh, A. Azari, Efficiency of powder activated carbon
magnetized by Fe3O4 nanoparticles for amoxicillin removal
from aqueous solutions: equilibrium and kinetic studies
of adsorption process, Iran. J. Health Environ., 7 (2014) 21–34.
- A. Fakhri, S. Rashidi, M. Asif, I. Tyagi, S. Agarwal, V.K. Gupta,
Dynamic adsorption behavior and mechanism of cefotaxime,
cefradine and cefazolin antibiotics on CdS-MWCNT
nanocomposites, J. Mol. Liq., 215 (2016) 269–275.
- G. Nazari, H. Abolghasemi, M. Esmaieli, Batch adsorption of
cephalexin antibiotic from aqueous solution by walnut shellbased
activated carbon, J. Taiwan Inst. Chem. Eng., 58 (2016)
357–365.
- A. Fakhri, S. Adami, Adsorption and thermodynamic study of
Cephalosporins antibiotics from aqueous solution onto MgO
nanoparticles, J. Taiwan Inst. Chem. Eng., 45 (2014) 1001–1006.
- B. Zhang, H. Zhang, X. Li, X. Lei, C. Li, D. Yin, Synthesis of
BSA/Fe3O4 magnetic composite microspheres for adsorption
of antibiotics, Mater. Sci. Eng., 33 (2013) 4401–4408.
- O. Kerkez-Kuyumcu, S.S. Bayazit, M.A. Salam, Antibiotic
amoxicillin removal from aqueous solution using magnetically
modified graphene nanoplatelets, J. Ind. Eng. Chem., 35 (2016)
225–234.
- M.J. Ahmed, S.K. Theydan, Fluoroquinolones antibiotics
adsorption onto microporous activated carbon from lignocellulosic
biomass by microwave pyrolysis, J. Taiwan Inst.
Chem. Eng., 45 (2014) 219–226.
- H. Azarpira, Y. Mahdavi, Removal of Cd(II) by adsorption
on agricultural waste biomass, Pharm. Chem., 8 (2016) 61–67.
- S.H. Kim, H.K. Shon, H.H. Ngo, Adsorption characteristics of
antibiotics trimethoprim on powdered and granular activated
carbon, J. Ind. Eng. Chem., 16 (2010) 344–349.
- R. Baccar, M. Sarrà, J. Bouzid, M. Feki, P. Blánquez, Removal
of pharmaceutical compounds by activated carbon prepared
from agricultural by-product, Chem. Eng. J., 211 (2012)
310–317.
- G.Z. Kyzas, E.A. Deliyanni, Modified activated carbons from
potato peels as green environmental-friendly adsorbents for
the treatment of pharmaceutical effluents, Chem. Eng. Res.
Des., 25 (2014) 19–26.
- L. Hai, W. Ning, P. Cheng, J. Zhang, Y. Wang, Evaluation of
animal hairs-based activated carbon for sorption of norfloxacin
and acetaminophen by comparing with cattail fiber-based
activated carbon, J. Anal. Appl. Pyrolysis, 101 (2013) 156–165.
- H. Liu, W. Liu, J. Zhang, C. Zhang, L. Ren, Y. Li, Removal of
cephalexin from aqueous solution by original and Cu(II)/Fe(III)
impregnated activated carbons developed from lotus stalks
kinetics and equilibrium studies, J. Hazard. Mater., 185 (2011)
1528–1535.
- L. Xu, J. Pan, J. Dai, X. Li, H. Hang, Z. Cao, Y. Yan, Preparation of
thermal-responsive magnetic molecularly imprinted polymers
for selective removal of antibiotics from aqueous solution,
J. Hazard. Mater., 233–234 (2012) 48–56.
- S. Vasudevan, J. Lakshmi, G. Sozhan, Optimization of the
process parameters for the removal of phosphate from drinking
water by electrocoagulation, Desal. Water Treat., 12 (2009)
407–414.
- J.W. Peterson, L.J. Petrasky, M.D. Seymourc, Adsorption and
breakdown of penicillin antibiotic in the presence of titanium
oxide nanoparticles in water, Chemosphere, 87 (2012) 911–917.
- F. Yu, Y. Li, S. Han, M. Jie, Adsorptive removal of antibiotics
from aqueous solution using carbon materials, Chemosphere,
153 (2016) 365–385.
- S. Vasudevan, J. Lakshmi, Electrochemical removal of boron
from water: adsorption and thermodynamic studies, Can.
J. Chem. Eng., 90 (2012) 1017–1026.
- D. Balarak, F.K. Mostafapour, A. Joghataei, Adsorption of Acid
Blue 225 dye by multi walled carbon nanotubes: determination
of equilibrium and kinetics parameters, Pharm. Chem., 8 (2016)
138–145.