References
- C. Galindo, P. Jacques, A. Kalt, Photochemical and photocatalytic
degradation of an indigo dye: a case study of acid blue 74(AB74),
J. Photochem. Photobiol., A, 141 (2001) 47–56.
- H. Hou, R. Zhou, P. Wu, L. Wu, Removal of Congo red dye from
aqueous solution with hydroxyapatite/chitosan composite,
Chem. Eng. J., 211 (2012) 336–342.
- B. Pare, S.B. Jonnalagadda, H. Tomar, P. Singh, V.W. Bhagwat,
ZnO assisted photocatalytic degradation of acridine orange
in aqueous solution using visible irradiation, Desalination,
232 (2008) 80–90.
- C.C. Chen, R.J. Wu, Y.Y. Tzeng, C.S. Lu, Chemical oxidative
degradation of acridine orange dye in aqueous solution by
Fenton’s reagent, J. Chin. Chem. Soc., 56 (2009) 1147–1155.
- I.M. Jauris, S.B. Fagan, M.A. Adebayo, F.M. Machado,
Adsorption of acridine orange and methylene blue synthetic
dyes and anthracene on single wall carbon nanotubes: a first
principle approach, Comput. Theor. Chem., 1076 (2016) 42–50.
- S.K.H. Nejad-Darzi, A. Samadi-Maybodi, M. Ghobakhluo,
Synthesis and characterization of modified ZSM-5 nanozeolite
and their applications in adsorption of Acridine orange dye
from aqueous solution, J. Porous Mater., 20 (2013) 909–916.
- M. Zbair, Z. Anfar, H.A. Ahsaine, N. El Alem, M. Ezahri,
Acridine orange adsorption by zinc oxide/almond shell
activated carbon composite: operational factors, mechanism
and performance optimization using central composite design
and surface modeling, J. Environ. Manage., 206 (2018) 383–397.
- R. Selvaggi, L. Tarpani, A. Santuari, S. Giovagnoli, L. Latterini,
Silica nanoparticles assisted photodegradation of acridine
orange in aqueous suspensions, Appl. Catal., B, 168 (2015)
363–369.
- I. Ahmad, S.B. Khan, T. Kamal, A.M. Asiri, Visible light activated
degradation of organic pollutants using zinc–iron selenide,
J. Mol. Liq., 229 (2017) 429–435.
- M. Tekbaş, H.C. Yatmaz, N. Bektaş, Heterogeneous photo-
Fenton oxidation of reactive azo dye solutions using iron
exchanged zeolite as a catalyst, Microporous Mesoporous
Mater., 115 (2008) 594–602.
- H. Lin, H. Zhang, X. Wang, L. Wang, J. Wu, Electro-Fenton
removal of Orange II in a divided cell: reaction mechanism,
degradation pathway and toxicity evolution, Sep. Purif.
Technol., 122 (2014) 533–540.
- S. Khelifi, F. Ayari, A. Choukchou-Braham, D. Ben Hassen
Chehimi, The remarkable effect of Al-Fe pillaring on the
adsorption and catalytic activity of natural Tunisian bentonite
in the degradation of azo dye, J. Porous Mater., 25 (2018)
885–896.
- H. Chaker, L. Chérif-Aouali, S. Khaoulani, A. Bengueddach,
S. Fourmentin, Photocatalytic degradation of methyl orange
and real wastewater by silver doped mesoporous TiO2 catalysts,
J. Photochem. Photobiol., A, 318 (2016) 142–149.
- S. Khelifi, F. Ayari, Modified bentonite for anionic dye removal
from aqueous solutions. Adsorbent regeneration by the photo-Fenton process, C. R. Chim., 22 (2019)154–160.
- F. Ayari, A.B. Othmen, S. Khelifi, M. Trabelsi-Ayadi,
Photodegradation of Congo red and real textile industries
effluent using natural Tunisian iron oxide, Desal. Water Treat.,
107 (2018) 316–323.
- C. Srilakshmi, R. Saraf, Ag-doped hydroxyapatite as efficient
adsorbent for removal of Congo red dye from aqueous solution:
synthesis, kinetic and equilibrium adsorption isotherm
analysis, Microporous Mesoporous Mater., 219 (2016) 134–144.
- A. Berez, G. Schäfer, F. Ayari, M. Trabelsi-Ayadi, Adsorptive
removal of azo dyes from aqueous solutions by natural
bentonite under static and dynamic flow conditions, Int. J.
Environ. Sci. Technol., 13 (2016) 1625–1640.
- J.L. Marco-Brown, C.M. Barbosa-Lema, R.M.T. Sánchez,
R.C. Mercader, M. Afonso, Adsorption of picloram herbicide on
iron oxide pillared montmorillonite, Appl. Clay Sci., 58 (2012)
25–33.
- F. Ayari, E. Srasra, M. Trabelsi-Ayadi, Characterization of
bentonitic clays and their use as adsorbent, Desalination,
185 (2005) 391–397.
- Z. Wang, L. Liao, A. Hursthouse, N. Song, B. Ren, Sepiolitebased
adsorbents for the removal of potentially toxic elements
from water: a strategic review for the case of environmental
contamination in Hunan, China. Int. J. Environ. Res. Public
Health, 15 (2018) 1653, doi: 10.3390/ijerph15081653.
- C. Mauguin, Etude Des Micas au Moyen des RX Bull, Soc. Fr.
Miner., 269 (1928) 815–818.
- G. Brown, G.W. Brindley (Eds.), Crystal Structures of Clay
Minerals and Their X-Ray Identification, Vol. 5, Mineralogical
Society, London, 1980, pp. 305–360.
- F. Ayari, E. Srasra, M. Trabelsi-Ayadi, Retention of lead from an
aqueous solution by use of bentonite as adsorbent for reducing
leaching from industrial effluents, Desalination, 206 (2007)
270–278.
- R. Tanwar, S. Kumar, U.K. Mandal, Photocatalytic activity
of PANI/Fe0 doped BiOCl under visible light-degradation of
Congo red dye, J. Photochem. Photobiol., A, 333 (2017) 105–116.
- C.H. Giles, T.H. MacEwan, S.N. Nakhwa, D. Smith, Studies
in adsorption. Part XI. A system of classification of solution
adsorption isotherms, and its use in diagnosis of adsorption
mechanisms and in measurement of specific surface areas of
solids, J. Chem. Soc., 786(1960) 3973–3993.
- I. Langmuir, The adsorption of gases on plane surfaces of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- H.M.F. Freundlich, Uber die adsorption in losungen, zeitschrift
fur phtsikalische chemie, Am. Chem. Soc., 62 (1906) 121–125.
- F. Ayari, M.T. Ayadi, Inorganic and organic smectite for synthetic
and real textile water treatment, optical and luminescence
properties, Desal. Water Treat., 125 (2018) 47–60.
- P. Li, C. Liu, G. Wu, Y. Heng, S. Lin, A. Ren, W. Shi, Solvothermal
synthesis and visible light-driven photocatalytic degradation
for tetracycline of Fe-doped SrTiO3, RSC Adv., 4 (2014)
47615–47624.
- O. Krik, Encyclopedia of Chemical Technology, 4th ed., John
Wiley & Sons, New York, NY, 1993, p. 753.
- NT 106.02 TS-BoJbtMotNE, Implementing the Tunisian
Standard Concerning Wastewater Effluent Discharges in the
Hydrous Medium, 1989.
- NT 106.03 TS-DoDMtDoJbtMotNE, Implementing the Tunisian
Standard Concerning the Use of Treated Wastewater in
Agriculture, 1989.
- S.P. Sasikala, T.A. Nibila, K.B. Babitha, A.A.P. Mohamed,
A. Solaiappan, Competitive photo-degradation performance
of ZnO modified bentonite clay in water containing both
organic and inorganic contaminants, Sustainable Environ. Res.,
29 (2019) 1.
- X. Wang, B. Mu, A. Hui, A. Wang, Comparative study on
photocatalytic degradation of Congo red using different clay
mineral/CdS nanocomposites, J. Mater. Sci. - Mater. Electron.,
30 (2019) 5383–5392.