References
- O.M. Rodriguez-Narvaez, J.M. Peralta-Hernandez, A. Goonetilleke,
E.R. Bandala, Treatment technologies for emerging
contaminants in water: a review, Chem. Eng. J., 323 (2017)
361–380.
- T. Dvořáková Březinova, J. Vymazal, M. Koželuh, L. Kule,
Occurrence and removal of ibuprofen and its metabolites in
full-scale constructed wetlands treating municipal wastewater,
Ecol. Eng., 120 (2018) 1–5.
- M. Tejada-Tovar, C. Quiñonez, M. Peña, Contaminantes
emergentes en aguas: metabolitos de fármacos, Una revisión,
Rev. Fac. Ciencias Básicas, 10 (2014) 80–101.
- G. Abbas, I. Javed, M. Iqbal, R. Haider, F. Hussain, N. Qureshi,
Adsorption of non-steroidal anti-inflammatory drugs (diclofenac
and ibuprofen) from aqueous medium onto activated
onion skin, Desal. Water Treat., 95 (2017) 274–285.
- T.D. Ding, M.T. Yang, J.M. Zhang, B. Yang, K.D. Lin, J.Y. Li,
J. Gan, Toxicity, degradation and metabolic fate of ibuprofen
on freshwater diatom Navicula sp., J. Hazard. Mater., 330 (2017)
127–134.
- S. Afshin, Y. Rashtbari, M. Shirmardi, M. Vosoughi, A. Hamzehzadeh,
Adsorption of basic violet 16 dye from aqueous
solution onto mucilaginous seeds of Salvia sclarea: kinetics and
isotherms studies, Desal. Water Treat., 161 (2019) 365–375.
- S. Santaeufemia, E. Torres, J. Abalde, Biosorption of ibuprofen
from aqueous solution using living and dead biomass of the
microalga Phaeodactylum tricornutum, J. Appl. Phycol., 30 (2018)
471–482.
- H. Zeng, M.L. Gao, T. Shen, F. Ding, Organo silica nanosheets
with gemini surfactants for rapid adsorption of ibuprofen
from aqueous solutions, J. Taiwan Inst. Chem. Eng., 93 (2018)
329–335.
- H. Guedidi, I. Lakehal, L. Reinert, J.-M. Lévêque, N. Bellakhal,
L. Duclaux, Removal of ionic liquids and ibuprofen by
adsorption on a microporous activated carbon: kinetics,
isotherms, and pore sites, Arabian J. Chem., 13 (2020) 258–270.
- C.P. Silva, G. Jaria, M. Otero, V.I. Esteves, V. Calisto, Adsorption
of pharmaceuticals from biologically treated municipal
wastewater using paper mill sludge-based activated carbon,
Environ. Sci. Pollut. Res., 26 (2019) 13173–13184.
- 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., 97 (2015) 135–144.
- R.A. Reza, M. Ahmaruzzaman, A facile approach for elimination
of ibuprofen from wastewater: an experimental and theoretical
study, Water Environ. J., (2019), https://doi.org/10.1111/wej.
12543.
- H. Nourmoradi, K.F. Moghadam, A. Jafari, B. Kamarehie,
Removal of acetaminophen and ibuprofen from aqueous
solutions by activated carbon derived from Quercus Brantii
(Oak) acorn as a low-cost biosorbent, J. Environ. Chem. Eng.,
6 (2018) 6807–6815.
- O.S. Bello, O.C. Alao, T.C. Alagbada, A.M. Olatunde, Biosorption
of ibuprofen using functionalized bean husks, Sustainable
Chem. Pharm., 13 (2019) 100151.
- S. Mondal, K. Bobde, K. Aikat, G. Halder, Biosorptive uptake
of ibuprofen by steam activated biochar derived from mung
bean husk: equilibrium, kinetics, thermodynamics, modeling
and eco-toxicological studies, J. Environ. Manage., 182 (2016)
581–594.
- J.D. Martínez-Ángel, R.A. Villamizar-Gallardo, O.O. Ortíz-
Rodríguez, Characterization and evaluation of cocoa (Theobroma
cacao L.) pod husk as a renewable energy source, Agrociencia,
49 (2015) 329–345.
- A. Hernández-Rodríguez, Y. Ruíz-Beltrán, Y. Acebo-Guerrero,
Y. Miguélez-Sierra, M. Heydrich-Pérez, Antagonistas
microbianos para el manejo de la pudrición negra del fruto en
Theobroma cacao L: estado actual y perspectivas de uso en Cuba,
Rev. Protección Veg., 29 (2014) 11–19.
- C.N. Tejada-Tovar, A. Villabona-Ortíz, G. Alvarez-Bajaire,
L. Attin-Torres, C. Granados-Conde, Influencia de la altura del
lecho sobre el comportamiento dinámico de columna de lecho
fijo en la biosorción de mercurio, TecnoLógicas, 20 (2017) 71–81.
- C. Tejada-Tovar, D. Almanza, A. Villabona-Ortíz, F. Colpas,
C. Granados, Characterization of activated carbon synthesized
at low temperature from cocoa shell (Theobroma cacao) for
adsorbing amoxicillin, Ing. Compet., 19 (2017) 45–54.
- K. Hussaro, Preparation of activated carbon from palm oil shell
by chemical activation with Na2CO3 and ZnCl2 as imprenated
agents for H2S adsorption, Am. J. Environ. Sci., 4 (2014) 336–346.
- P. Chakraborty, S. Show, W. Ur Rahman, G. Halder, Linearity
and non-linearity analysis of isotherms and kinetics for
ibuprofen remotion using superheated steam and acid modified
biochar, Process Saf. Environ. Prot., 126 (2019) 193–204.
- N.A. Salem, S.M. Yakoot, Non-steroidal anti-inflammatory
drug, ibuprofen adsorption using rice straw based biochar,
Int. J. Pharmacol., 12 (2016) 729–736.
- S. Álvarez-Torrellas, A. Rodríguez, G. Ovejero, J. García,
Comparative adsorption performance of ibuprofen and
tetracycline from aqueous solution by carbonaceous materials,
Chem. Eng. J., 283 (2016) 936–947.
- L.B.L. Lim, N. Priyantha, Y.C. Lu, N.A.H. Mohamad Zaidi,
Adsorption of heavy metal lead using Citrus grandis (Pomelo)
leaves as low-cost adsorbent, Desal. Water Treat., 166 (2019)
44–52.
- F. Mansour, M. Al-Hindi, R. Yahfoufi, G.M. Ayoub, M.N. Ahmad,
The use of activated carbon for the removal of pharmaceuticals
from aqueous solutions: a review, Rev. Environ. Sci. Biotechnol.,
17 (2018) 109–145.
- 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.
- S. Mondal, K. Aikat, G. Halder, Biosorptive uptake of ibuprofen
by chemically modified Parthenium hysterophorus derived
biochar: equilibrium, kinetics, thermodynamics and modeling,
Ecol. Eng., 92 (2016) 158–172.
- H. Mansouri, R.J. Carmona, A. Gomis-Berenguer, S. Souissi-
Najar, A. Ouederni, C.O. Ania, Competitive adsorption of
ibuprofen and amoxicillin mixtures from aqueous solution on
activated carbons, J. Colloid Interface Sci., 449 (2015) 252–260.
- K. Jedynak, B. Szczepanik, N. Redzia, P. Slomkiewicz,
A. Kolbus, P. Rogala, Ordered mesoporous carbons for
adsorption of paracetamol and non-steroidal anti-inflammatory
drugs: ibuprofen and naproxen from aqueous solutions,
Water (Switzerland), 11 (2019) 1–21, https://doi.org/10.3390/
w11051099.
- J.Y. Song, Q.L. He, X.L. Hu, W. Zhang, C.Y. Wang, R.F. Chen,
H.Y. Wang, A. Mosa, Highly efficient removal of Cr(VI) and
Cu(II) by biochar derived from Artemisia argyi stem, Environ.
Sci. Pollut. Res., 26 (2019) 13221–13234.
- J. Martín, M. del Mar Orta, S. Medina-Carrasco, J.L. Santos,
I. Aparicio, E. Alonso, Evaluation of a modified mica and
montmorillonite for the adsorption of ibuprofen from aqueous
media, Appl. Clay Sci., 171 (2019) 29–37.
- M. Ulfa, Y. Iswanti, Ibuprofen adsorption study by Langmuir,
Freundlich, Temkin and Dubinin–Radushkevich models
using nano zinc oxide from mild hydrothermal condition, IOP
Conf. Ser.: Mater. Sci. Eng., 833 (2020) 012096.
- H. Kaur, A. Bansiwal, G. Hippargi, G.R. Pophali, Effect of
hydrophobicity of pharmaceuticals and personal care products
for adsorption on activated carbon: adsorption isotherms,
kinetics and mechanism, Environ. Sci. Pollut. Res., 25 (2018)
20473–20485.
- A.C. Fröhlich, R. Ocampo-Pérez, V. Diaz-Blancas, N.P.G. Salau,
G.L. Dotto, Three-dimensional mass transfer modeling of
ibuprofen adsorption on activated carbon prepared by sonication,
Chem. Eng. J., 341 (2018) 65–74.