References
- E. Eren, O. Cubuk, H. Ciftci, B. Eren, B. Caglar, Adsorption
of basic dye from aqueous solutions by modified sepiolite:
equilibrium, kinetics and thermodynamics study, Desalination,
252 (2010) 88–96.
- R. Kant, Textile dyeing industry an environmental hazard, Nat.
Sci., 4 (2012) 22–26.
- C. Namasivayam, D. Kavitha, Removal of Congo Red from
water by adsorption onto activated carbon prepared from coir
pith, an agricultural solid waste, Dyes Pigm., 54 (2002) 47–58.
- S. El-din H. Etaiw, M.M. El-bendary, Degradation of methylene
blue by catalytic and photo-catalytic processes catalyzed by the
organotin-polymer 3 ∞[(Me3Sn)4Fe(CN)6], Appl. Catal., B, 126
(2012) 326–333.
- S.K. Theydana, M.J. Ahmed, Adsorption of methylene blue
onto biomass-based activated carbon by FeCl3 activation:
equilibrium, kinetics, and thermodynamic studies, J. Anal.
Appl. Pyrolysis, 97 (2012) 116–122.
- A. Aluigi, F. Rombaldoni, C. Tonetti, L. Jannoke, Study of
Methylene Blue adsorption on keratin nanofibrous membranes,
J. Hazard. Mater., 268 (2014) 156–165.
- A.F. Hassan, A.M. Abdel-Mohsen, Moustafa M.G. Fouda,
Comparative study of calcium alginate, activated carbon,
and their composite beads on methylene blue adsorption,
Carbohydr. Polym., 102 (2014) 192–198.
- J.R. Kim, E. Kan, Heterogeneous photo-Fenton oxidation of
methylene blue using CdS-carbon nanotube/TiO2 under visible
light, J. Ind. Eng. Chem., 21 (2015) 644–652.
- S. Hung-Yee, H. Ching-Rong, Degradation of commercial ago
dyes in water using ozonation and UV enhanced ozonation
process, Chemosphere, 31 (1995) 3813–3825.
- J. Naumczyk, L. Szpyrkowicz, F. Zilio-Grandi, Electrochemical
treatment of textile wastewater, Water Sci. Technol., 34 (1996)
17–24.
- E.G. Solozhenko, N.M. Soboleva, V.V. Goncharuk,
Decolourization of azodye solutions by Fenton’s oxidation,
Water Res., 29 (1995) 2206–2210.
- P.W. Wong, T.T. Teng, N.A.R.N. Norulaini, Efficiency of the
coagulation-flocculation method for the treatment of dye
mixtures containing disperse and reactive dye, Water Qual. Res.
J. Canada, 42 (2007) 54–62.
- H. An, Y. Qian, X. Gu, W.Z. Tang, Biological treatment of dye
wastewaters using an anaerobic-oxic system, Chemosphere, 33
(1996) 2533–2542.
- M. Kornaros, G. Lyberatos, Biological treatment of wastewaters
from a dye manufacturing company using a trickling filter, J.
Hazard. Mater., 136 (2006) 95–102.
- I. Arslan, I. Akmehmet Balcioğlu, Degradation of commercial
reactive dyestuffs by heterogenous and homogenous advanced
oxidation processes: a comparative study, Dyes Pigm., 43 (1999)
95–108.
- M. Faouzi, P. Cañizares, A. Gadri, J. Lobato, B. Nasr, R. Paz,
M.A. Rodrigo, C. Saez, Advanced oxidation processes for the
treatment of wastes polluted with azoic dyes, Electrochim.
Acta, 52 (2006) 325–331.
- H. Lachheb, E. Puzenat, A. Houas, M. Ksibi, E. Elaloui, C.
Guillard, J.-M. Herrmann, Photocatalytic degradation of
various types of dyes (Alizarin S, Crocein Orange G, Methyl
Red, Congo Red, Methylene Blue) in water by UV-irradiated
titania, Appl. Catal., B, 39 (2002) 75–90.
- J. Niu, A. Wu, D. Wang, L. Zhou, S. Zhang, Z. Liu, P. Feng,
X. Ou, Y. Qiang, Coloading of TiO2 and C3N4 on kaolinite
nanotubes for obviously improved photocatalytic performance
in degradation of methylene blue dye, Mater. Lett., 230 (2018)
32–35.
- Y. He, D.B. Jiang, J. Chen, D.Y. Jiang, Y.X. Zhang, Synthesis of
MnO2 nanosheets on montmorillonite for oxidative degradation
and adsorption of methylene blue, J. Colloid Interface Sci., 510
(2018) 207–220.
- G. Annadurai, R.-S. Juang, D.-J. Lee, Use of cellulose-based
wastes for adsorption of dyes from aqueous solutions, J.
Hazard. Mater., 92 (2002) 263–274.
- B. Armağan, M. Turan, M.S. Çelik, Equilibrium studies on the
adsorption of reactive azo dyes into zeolite, Desalination, 170
(2004) 33–39.
- S. Wang, H. Li, L. Xu, Application of zeolite MCM-22 for basic
dye removal from wastewater, J. Colloid Interface Sci., 295
(2006) 71–78.
- B.H. Hameed, A.A. Ahmad, N. Aziz, Isotherms, kinetics and
thermodynamics of acid dye adsorption on activated palm ash,
Chem. Eng. J., 133 (2007) 195–203.
- Z. Graba, S. Hamoudi, D. Bekka, N. Bezzi, R. Boukherroub,
Influence of adsorption parameters of basic red dye 46 by
the rough and treated Algerian natural phosphates, Ind. Eng.
Chem., 25 (2015) 229–238.
- H. Demiral, İ. Demiral, B. Karabacakoğlu, F. Tümsek,
Adsorption of textile dye onto activated carbon prepared from
industrial waste by ZnCl2 activation, J. Int. Environ. Appl. Sci., 3
(2008) 381–389.
- I. Ould Brahim, M. Belmedani, A. Belgacem, H. Hadoun, Z.
Sadaoui, Discoloration of azo dye solutions by adsorption on
activated carbon prepared from the cryogenic grinding of used
tires, Chem. Eng. Trans., 38 (2014) 121–126.
- B. Panjwani, K. Verma, Remediation of Methylene blue and
Rhodamine B using various adsorbents-a Review, Recent Res.
Sci. Technol., 6 (2014) 22–26.
- P.-J. Lu, H.-C. Lin, W.-T. Yu, J.-M. Chern, Chemical regeneration
of activated carbon used for dye adsorption, J. Taiwan Inst.
Chem. Eng., 42 (2011) 305–311.
- E. Errais, J. Duplay, F. Darragi, I. M’Rabet, A. Aubert, F.
Huber, G. Morvan, Efficient anionic dye adsorption on natural
untreated clay: kinetic study and thermodynamic parameters,
Desalination, 275 (2011) 74–81.
- E. Errais, J. Duplay, M. Elhabiri, M. Khodja, R. Ocampo, R.
Baltenweck-Guyot, F. Darragi, Anionic RR120 dye adsorption
onto raw clay: surface properties and adsorption mechanism,
Colloids Surf., A, 403 (2012) 69–78.
- I.A. Salem, M.S. El-Maazawi, Kinetics and mechanism of color
removal of methylene blue with hydrogen peroxide catalyzed
by some supported alumina surfaces, Chemosphere, 41 (2000)
1173–1180.
- I. El Younssi, T. Rhadfi, A. Atlamsani, J.-P. Quisefit, F. Herbst, K.
Draoui, K-10 montmorillonite: an efficient and reusable catalyst
for the aerobic C-C bond cleavage of α-substituted ketones, J.
Mol. Catal. A: Chem., 363–364 (2012) 437–445.
- I. El younssi, Développement d’une nouvelle application
des argiles en catalyses d’oxydation de cétones cycliques
α-substituées par le dioxygène, thèse de doctorat, 2013.
- H. Akrout, S. Jellali, L. Bousselmi, Enhancement of methylene
blue removal by anodic oxidation using BDD electrode
combined with adsorption onto sawdust, C. R. Chim., 18 (2015)
110–120.
- M. Reinholdt, J. Miehé-Brendlé, L. Delmotte, M.-H. Tuilier,
R. le Dred, R. Cortès, A.-M. Flank, Fluorine route synthesis of
montmorillonites containing Mg or Zn and characterization by
XRD, thermal analysis, MAS NMR, and EXAFS spectroscopy,
Eur. J. Inorg. Chem., 11 (2001) 2831–2841.
- L.P. Meier, G. Kahr, Determination of the cation exchange
capacity (CEC) of clay minerals using the complexes of copper(II)
ion with triethylenetetramine and tetraethylenepentamine,
Clays Clay Miner., 47 (1999) 386–388.
- M.D. Mingorance, E. Barahona, J. Fernández-Gálvez, Guidelines
for improving organic carbon recovery by the wet oxidation
method, Chemosphere, 68 (2007) 409–413.
- A.N. Kagalkar, U.B. Jagtap, J.P. Jadhav, S.P. Govindwar, V.
Bapat, Studies on phytoremediation potentiality of Typhonium
flagelliforme for the degradation of Brilliant Blue R, Planta, 232
(2010) 271–285.
- L.S. Clescerl, A.E. Greenberg, A.D. Eaton, Standard Methods for
the Examination of Water and Wastewater, 20th ed., American
Public Health Association, 1999.
- O.E. Omotoso, R.J. Mikula, High surface areas caused by
smectitic interstratification of kaolinite and illite in Athabasca
oil sands, Appl. Clay Sci., 25 (2004) 37–47.
- Y. Kim, S. Cho, H.-D. Kang, W. Kim, H.-R. Lee, S.-H. Doh,
K. Kim, S.-G. Yun, D.-S. Kim, G. Young Jeong, Radiocesium
reaction with illite and organic matter in marine sediment, Mar.
Pollut. Bull., 52 (2006) 659–665.
- X. Wang, M. Zhang, W. Zhang, J. Wang, Y. Zhou, X. Song, T.
Li, X. Li, H. Liu, L. Zhao, Occurrence and origins of minerals
in mixed-layer illite/smectite-rich coals of the Late Permian age
from the Changxing Mine, eastern Yunnan, China, Int. J. Coal
Geol., 102 (2012) 26–34.
- H. Hong, G. Jock Churchman, Y. Gu, K. Yin, C. Wang, Kaolinite–
smectite mixed-layer clays in the Jiujiang red soils and their
climate significance, Geoderma, 173–174 (2012) 75–83.
- H. Hong, G. Jock Churchman, K. Yin, R. Li, Z. Li, Randomly
interstratified illite–vermiculite from weathering of illite in red
earth sediments in Xuancheng, southeastern China, Geoderma,
214–215 (2014) 42–49.
- R.A. Alvarez-Puebla, D.S. dos Santos Jr, C. Blanco, J.C.
Echeverria, J.J. Garrido, Particle and surface characterization
of a natural illite and study of its copper retention, J. Colloid
Interface Sci., 285 (2005) 41–49.
- Y. Zhang, W. Wang, J. Zhang, P. Liu, A. Wang, A comparative
study about adsorption of natural palygorskite for methylene
blue, Chem. Eng. J., 262 (2015) 390–398.
- E. Errais, J. Duplay, F. Darragi, I. M’Rabet, A. Aubert, F.
Huber, G. Morvan, Efficient anionic dye adsorption on natural
untreated clay: kinetic study and thermodynamic parameters,
Desalination, 275 (2011) 74–81.
- A.F. Baybars, C. Özmetin, . Korkmaz, Cationic dye (methylene
blue) removal from aqueous solution by montmorillonite, Bull.
Korean Chem. Soc., 33 (2012) 3184–3190.
- A.F. Baybars, Z.K. Karakas, R. Boncukcuoglu, A.E. Yilmaz,
Removal of cationic dye (basic red 18) from aqueous solution
using natural Turkish clay, Global NEST J., 15 (2013) 529–541.
- W.P. Gates, J.S. Anderson, M.D. Raven, G.J. Churchman,
Mineralogy of a bentonite from Miles, Queensland, Australia
and characterisation of its acid activation products, Appl. Clay
Sci., 20 (2002) 189–197.
- C. Noubactep, Characterizing the discoloration of methylene
blue in Fe0/H2O systems, J. Hazard. Mater., 166 (2009) 79–87.
- Z. Huang, P. Wu, B. Gong, Y. Lu, N. Zhu, Z. Hu, Preservation
of Fe complexes into layered double hydroxides improves the
efficiency and the chemical stability of Fe complexes used as
heterogeneous photo-Fenton catalysts, Appl. Surf. Sci., 286
(2013) 371–378.
- K. Dutta, S. Mukhopadhyay, S. Bhattacharjee, B. Chaudhuri,
Chemical oxidation of methylene blue using a Fenton-like
reaction, J. Hazard. Mater., 84 (2001) 57.
- M. Ge, N. Zhu, Y. Zhao, J. Li, L. Liu, Sunlight-assisted
degradation of dye pollutants in Ag3PO4 suspension, Ind. Eng.
Chem. Res., 51 (2012) 5167–5173.
- N. Madihah Bt Yaser, F. Chemat, T. Rashid, M. Thanabalan,
Degradation of aqueous diethanolamine (DEA) solutions using
UV/H2O2 process, Chem. Eng. Trans., 43 (2015) 2263–2268.
- W. Song, M. Cheng, J. Ma, W. Ma, C. Chen, J. Zhao,
Decomposition of hydrogen peroxide driven by photochemical
cycling of iron species in clay, Environ. Sci. Technol., 40 (2006)
4782–4787.
- M. Cheng, W. Song, W. Ma, C. Chen, J. Zhao, J. Lin, H.
Zhu, Catalytic activity of iron species in layered clays for
photodegradation of organic dyes under visible irradiation,
Appl. Catal., B, 77 (2008) 355–363.
- F. Chen, J. He, J. Zhao, J.C. Yu, Photo-Fenton degradation of
malachite green catalyzed by aromatic compounds under
visible light irradiation, New J. Chem., 26 (2002) 336–341.
- J. He, W. Ma, W. Song, J. Zhao, X. Qian, S. Zhang, J.C. Yu,
Photoreaction of aromatic compounds at α-FeOOH/H2O
interface in the presence of H2O2: evidence for organic-goethite
surface complex formation, Water Res., 39 (2005) 119–128.
- Y. Liu, Y. Zheng, A. Wang, Enhanced adsorption of Methylene
Blue from aqueous solution by chitosan-g-poly (acrylic acid)/vermiculite hydrogel composites, J. Environ. Sci., 22 (2010)
486–493.
- J. Zhang, K.H. Lee, L. Cui, T.S. Jeong, Degradation of methylene
blue in aqueous solution by ozone-based processes, J. Ind. Eng.
Chem., 15 (2009) 185–189.
- I.A. Salem, H.A. El-Ghamry, M.A. El-Ghobashy, Catalytic
decolorization of Acid blue 29 dye by H2O2 and a heterogeneous
catalyst, Beni-Suef Univ. J. Basic Appl. Sci., 3 (2014) 186–192.