References
- J. Akhtar, N.A.S. Amin, K. Shahzad, A review on removal
of pharmaceuticals from water by adsorption, Desal. Water
Treat., 57(27) (2016) 12842–12860.
- H. Fallou, N. Cimetière, S. Giraudet, D. Wolbert, P. Le Cloirec,
Adsorption of pharmaceuticals onto activated carbon fiber
cloths-Modeling and extrapolation of adsorption isotherms
at very low concentrations, J. Environ. Manage., 166 (2016)
544–555.
- M. Graouer-Bacart, S. Sayen, E. Guillon, Adsorption and co-adsorption
of diclofenac and Cu(II) on calcareous soils, Ecotoxicol.
Environ. Saf., 124 (2016) 386–392.
- T. Deblonde, C. Cossu-Leguille, P. Hartemann, Emerging pollutants
in wastewater, a review of the literature, Int. J. Hyg.
Environ. Health., 214 (2011) 442–448.
- Z. Hasan, N.A. Khan, S.H. Jhung, Adsorptive removal of
diclofenac sodium from water with Zr-based metal-organic
frameworks, Chem. Eng. J., 284 (2016) 1406–1413.
- H.R. Busar, T. Poiger, M.D. Müller, Occurrence and fate of the
pharmaceutical drug diclofenac in surface waters: rapid photodegradation
in a lake, Environ. Sci. Technol., 32 (1998) 3449–
3556.
- G.R. Boyda, H. Reemtsmaa, D.A. Grimmb, S. Mitrac, Pharmaceuticals
and personal care products (PPCPs) in surface and
treated waters of Louisiana, USA and Ontario, Canada, Sci.
Total Environ., 311 (2003) 135–149.
- A. Joss, S. Zabczynski, A. Göbel, B. Hoffmann, D. Löffler, C.S.
McArdell, T.A. Ternes, A. Thomsen, H. Siegrist, Biological degradation
of pharmaceuticals in municipal wastewater treatment:
proposing a classification scheme, Water Res., 40 (2006)
1686–1696.
- G.R. Boyd, S. Zhang, D.A. Grimm, Naproxen removal from
water by chlorination and biofilm processes, Water Res., 39
(2005) 668–676.
- S. Esplugas, D.M. Bila, L. Gustavo, T. Krause, M. Dezotti, Ozonation
and advanced oxidation technologies to remove endocrine
disrupting chemicals (EDCs) and pharmaceuticals and
personal care products (PPCPs) in water effluents, J. Hazard.
Mater., 149 (2007) 631–64.
- M. Klavarioti, D. Mantzavinos, D. Kassinos, Removal of residual
pharmaceuticals from aqueous systems by advanced oxidation
processes, Environ. Int., 35 (2009) 402–417.
- M. Antunes, V.I. Esteves, R. Guégan, J.S. Crespo, A.N. Fernandes,
M. Giovanela, Removal of diclofenac sodium from
aqueous solution by isabel grape bagasse, J. Chem. Eng., 192
(2012) 114–121.
- R. Baccar, M. Sarrà, J. Bouzid, M. Feki, P. Blánquez, Removal
of pharmaceutical compounds by activated carbon preparedfrom
agricultural by product, Chem. Eng. J., 211–212 (2012)
310– 317.
- F. Cavani, F. Trifiro`, A. Vaccari, Hydrotalcite-type anionic
clays: Preparation, properties and applications, Catal. Today,
11(2) (1991) 173–301.
- I.L. V, J. He, M. Wei, D.G. Evans, X. Duan, Factors influencing
the removal of fluoride from aqueous solution by calcined
Mg-Al-CO3 layered double hydroxides. J. Hazard. Mater., 133
(2006) 119–126.
- D. Carriazo, del. M. Arco, C. Martin, V. Rives, A comparative
study between chloride and calcined carbonate hydrotalcites
as adsorbents for Cr(VI), App. Clay. Sci., 37 (2007) 231–239.
- C. Geng, T. Xu, Y. Li, Z. Chang, X. Sun, X. Lei, Effect of synthesis
method on selective adsorption of thiosulfate by calcined
MgAl-layered double hydroxides, J. Chem. Eng., 232 (2013)
510–518.
- H. Zaghouane-Boudiaf, M. Boutahala, C. Tiar, L. Arab, F.
Garin, Treatment of 2,4,5 trichlorophenol by MgAl–SDBS organo-
layered double hydroxides: Kinetic and equilibrium studies,
J. Chem. Eng., 173 (2011) 36–41.
- H. Zaghouane-Boudiaf, M. Boutahala, L. Arab, Removal of
methyl orange from aqueous solution by uncalcined and calcined
MgNiAl Layered double hydroxides (LDHs), J. Chem.
Eng., 187 (2012) 142–149.
- D. Chebli, A. Bouguettoucha, A. Reffas, C. Tiar, M. Boutahala,
H. Gulyas, A. Amrane, Removal of the anionic dye Biebrich
scarlet from water by adsorption to calcined and non-calcined
Mg–Al layered double hydroxides, Desal. Water Treat., 57(46)
(2016) 22061–22073.
- L. Arab, M. Boutahala, B. Djellouli, T. Dintzer, V. Pitchon,
Characteristics of gold supported on nickel-containing hydrotalcite
catalysts in CO oxidation, Appl. Catal. A., 475 (2014)
446–460.
- L. Arab, M. Boutahala, B. Djellouli, Etude de l’élimination du
Cr(VI) par l’oxyde mixte obtenu par calcination de l’hydroxyde
double lamellaire MgAl, C. R. Chim., 17 (2014) 860–868.
- W.T. Reichle, Synthesis of anionic clay minerals (mixed metal
hydroxides hydrotalcite), Solid State Ionics, 22 (1986) 135–141.
- S. Brunauer, P.H. Emmett, E. Teller, Adsorption of gases in
multimolecular layers, J. Am. Chem. Soc., 60 (1938) 309–319.
- E.P. Barrett, L.G. Joyner, P.H. Halenda, The determination of
pore volume and area distributions in porous substances. I.
Computations from nitrogen isotherms, J. Am. Chem. Soc., 73
(1951) 373–380.
- K. El Hassani, B.H. Beakou, D. Kalnina, E. Oukani, A. Anouar,
Effect of morphological properties of layered double hydroxides
on adsorption of azo dye Methyl Orange: A comparative
study, Appl. Clay Sci., 140 (2017)124–131.
- C. Tiar, M. Boutahala, A. Benhouria, H. Zaghouane-Boudiaf,
Synthesis and physicochemical characterization of ZnMg-
NiAl-CO3-layered double hydroxide and evaluation of its
sodium dodecylbenzenesulfonate removal efficiency, Desal.
Water Treat., 57(28) (2016) 13132–13143.
- S. Xia, R. Nie, X. Lu, L. Wang, P. Chen, Z. Hou, Hydrogenolysis
of glycerol over Cu0.4/Zn5.6-xMgxAl2O8.6 catalysts: The role of
basicity and hydrogen spillover, J. Catal., 296 (2012) 1–13.
- C. Forano, U. Costantino, C. Taviot-Gueho, Handbook of clay
science, In: Bergaya, F. Lagaly, G. (Eds,), Developments in Clay
Science. Elsevier, Amsterdam, pp. 745–782.
- N. Benselka-Hadj Abdelkader, A. Bentouami, Z. Derriche, N.
Bettahar, L.-C. deMénorval, Synthesis and characterization of
Mg-Fe layer double hydroxides and its application on adsorption
of orange G from aqueous solution, Chem. Eng. J., 169,
(2011) 231–238.
- M.J. Hernandez-Moreno, M.A. Ulibarri, J.L. Rendon, C.J. Serna,
IR characteristics of hydrotalcite-like compounds, Phys. Chem.
Miner., 12 (1985) 34–38.
- J.T. Kloprogge, R.L. Frost, Fourier transform infrared and
Raman spectroscopic study of the local structure of Mg, Ni,
and Co-Hydrotalcites, Phys. Chem. Miner., 146 (1999) 506–515.
- O.P. Ferreira, O.L. Alves, D.X. Gouveia, A.G.S. Filho, J.A.C. de
Paiva, J.M. Filho, Thermal decomposition and structural reconstruction
effect on Mg–Fe based hydrotalcite compounds, J.
Solid State Chem., 177 (2004) 3058–3069.
- M.K. Titulaer, J.B.H. Jansen, J.W. Geus, The quantity of reduced
nickel in synthetic takovite: effects of preparation conditions
and calcinations temperature, Clays Clay Miner., 42 (1994)
249–258.
- F. Caoa, Y. Wanga, Q. Ping, Z. Liao, Zn–Al–NO3-layered double
hydroxides with intercalated diclofenac for ocular delivery,
Int. J. Pharm., 404 (2011) 250–256.
- J. Zhou, S. Yang, J. Yu, Z. Shu, Novel hollow microspheres of
hierarchical zinc–aluminum layered double hydroxides and
their enhanced adsorption capacity for phosphate in water, J.
Hazard. Mater., 192 (2011) 1114–1121.
- Z. Yu, D. Chen, M. Ronning, V. Torbjorn, E. Ochoa-Fernandez,
A. Holmen, Large scale synthesis of carbon nanofibers on Ni–
Fe–Al hydrotalcite derived catalysts. I. Preparation and characterization
of the Ni–Fe–Al hydrotalcites and their derived
catalysts, Appl. Catal. A., 338 (2008) 136–146.
- H. Wei, S. Deng, Q. Huang, Y. Nie, B. Wang, J. Huang, G. Yu,
Regenerable granular carbon nanotubes/alumina hybrid
adsorbents for diclofenac sodium and carbamazepine removal
from aqueous solution, Water Res., 47 (2013) 4139–4147.
- D. Tiwari, C. Lalhriatpuia, S.M. Lee, Hybrid materials in the
removal of diclofenac sodium from aqueous solutions: Batch
and column studies, J. Ind. Eng. Chem., 30 (2015) 167–173.
- S. Sahnoun, M. Boutahala, H. Boudiaf, L. Zerroual, Trichlorophenol
removal from aqueous solutions by modified halloysite:
Kinetic and equilibrium, Desal. Water. Treat., 57(34)
(2016) 15941–15951.
- X. Lu, Y. Shao, N. Gao, J. Chen, Y. Zhang, Q. Wang, Y. Lu,
Adsorption and removal of clofibric acid and diclofenac from
water with MIEX resin, Chemosphere, 161 (2016) 400–411.
- A. Benhouria, Md.A. Islam, H. Zaghouane-Boudiaf, M.
Boutahala, B.H. Hameed, Calcium alginate-bentonite-activated
carbon composite beads as highly effective adsorbent
for methylene blue, Chem. Eng. J, 270 (2015) 621–630.
- S.Y. Lagergren, Zurtheorie der sogenannten adsorption geloesterstoffe
(On the theory of so-called adsorption of solutes), K.
Sven. Vetenskapsakad. Handl., 24 (1898) 1–39.
- Y.S. Ho, G. McKay, Pseudo-second-order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- N. Suriyanon, P. Punyapalakul, C. Ngamcharussrivichai,
Mechanistic study of diclofenac and carbamazepine adsorption
on functionalized Silica-based porous materials, J. Chem.
Eng., 214 (2013) 2018–218.
- S.A. Torrellas, A.R. Rodriguez, G.O. Escudero, J.M.G. Martin,
J.G. Rodriguez, Comparative evaluation of adsorption kinetics
of diclofenac and isoproturon by activated carbon, J. Environ.
Sci. Health A: Tox. Hazard. Subst. Environ. Eng., 50 (2015)
1241– 12489.
- N. Boukhalfa, M. Boutahala, N. Djebri, Synthesis and characterization
of ZnAl-layered double hydroxide and organo-K10
montmorillonite for the removal of diclofenac from aqueous
solution, Adsorpt. Sci. Technol., 35(1–2) (2017) 20–36.
- W.J. Weber, J.C. Morris, Kinetics of adsorption on carbon from
solution, J. Sanitary Eng. Div., 89 (1963) 31–60.
- G.E. Boyd, A.W. Adamson, LS. Myers, The exchange adsorption
of ions from aqueous solutions by organic zeolites, II.
Kinetics, J. Am. Chem. Soc., 69 (1947) 2836–2848.
- I. Langmuir, The constitution and fundamental properties of
solids and liquids, J. Am. Chem. Soc., 38 (1916) 2221–2295.
- H.M.F. Freundlich, Uber die adsorption in loesungen, Z. Phys.
Chem. 57 (1906) 385–470.
- R. Sips, Combined form of Langmuir and Freundlich equations.
J. Chem. Phys., 16 (1948) 490–495.
- N. Suriyanon, P. Punyapalakul, C. Ngamcharussrivichai,
Mechanistic study of diclofenac and carbamazepine adsorption
on functionalized Silica-based porous materials, J. Chem.
Eng., 214 (2013) 2018–218.
- M.X. Zhu, Y.P. Li, M. Xie, H.Z. Xin, Sorption of an anionic dye
by uncalcined and calcined layered double hydroxides: A case
study, J. Hazard. Mater., 120 (2005) 163–1741.
- S. Larous, A.H. Meniai, Adsorption of diclofenac from aqueous
solution using activated carbon prepared from olive stones,
Int. J. Hydrogen Energy, 41(24) (2016) 10380–10390.
- H. Mabrouki, D.E. Akreche, Diclofenac potassium removal
from water by adsorption on natural and pillared clay, Desal.
Water Treat., 57(13) (2016) 6033–6043.
- C. Saucier, M.A. Adebayo, E.C. Lima, R. Cataluna, P.S. Thue,
L.D.T. Prola, M.J. Puchana-Rosero, F.M. Machado, F.A. Pavan,
G. Dotto, Microwave-assisted activated carbon from cocoa
shell as adsorbent for removal of sodium diclofenac and nimesulide
from aqueous effluents, J. Hazard. Mater., 289 (2015)
18–27.
- D. Krajisnika, A. Dakovic, M. Milojevic, A. Malenovic, M.
Kragovic, D.B. Bogdanovic, V. Dondur, J. Milic, Properties of
diclofenac sodium sorption onto natural zeolite modified with
cetylpyridinium chloride, Colloids Surf. B: Biointerfaces, 83
(2011) 165–172.
- J. Janicijevic, Modified local diatomite as potential functional
drug carrier-A model study for diclofenac sodium, Int. J.
Pharm., 496 (2015) 466–474.