References
- C. Bardon, Recommendations for experimentally determining
the cation-exchange capacity of shaly media, Oil Gas Sci.
Technol., 38 (1983) 621–626.
- K.H. Kang, H.S. Shin, H. Park, Characterization of humic
substances present in landfill leachates with different landfill
ages and its implications, Water Res., 36 (2002) 4023–4032.
- Z.P. Wang, Z. Zhang, Y.J. Lin, N.S. Deng, T. Tao, K. Zhuo,
Landfill leachate treatment by a coagulation-photooxidation
process, J. Hazard. Mater., 95 (2002) 153–159.
- R. Chemlal, L. Azzouz, R. Kernani, N. Abdi, H. Lounici, H. Grib,
N. Mameri, N. Drouiche, Combination of advanced oxidation
and biological processes for the landfill leachate treatment,
Ecol. Eng., 73 (2014) 281–289.
- J.T. Zume, A. Tarhule, S. Christenson, Subsurface imaging of
an abandoned solid waste landfill site in Norman, Oklahoma,
Ground Water Monit. Rem., 26 (2006) 62–69.
- F. Khalil, O. Bouaouine, H. Chtioui, S. Souabi, M.A. Aboulhassan,
A. Ouammou, Treatment of landfill leachate by coagulationflocculation,
J. Mater. Environ. Sci., 5 (2015)1337–1342.
- M. El kharmouz, M. Sbaa, A. Chafi, S. Saadi, L’étude de l’impact
des lixiviats de l’ancienne décharge publique de la ville d’Oujda
(Maroc oriental) sur la qualité physicochimique des eaux
souterraines et superficielles, Larhyss J., 16 (2013) 105–119.
- R.R. Kalantary, E. Dehghanifard, A. Mohseni-Bandpi,
Nitrate adsorption by synthetic activated carbon magnetic
nanoparticles: kinetics, isotherms and thermodynamic studies,
Desal. Wat. Treat., 57 (2016) 16445–16455.
- H.A. Hanafi, S. Azeema, Removal of nitrate and nitrite anions
from wastewater using activated carbon derived from rice
straw, J. Environ. Anal. Toxicol., 6 (2016) 1–6.
- T. Xiaowen, Y. Zhiquan, X. Pan, L. Ying, N. Xiaojun, Nitrate
adsorption from aqueous solutions by calcined ternary
Mg-Al-Fe hydrotalcite, Water Sci. Technol., 75 (2017) 2194–2203.
- Y. Nancy, H. Cacier, R. Albeiro, I. César, F. Elizabeth, Adsorption
of nitrate and bicarbonate on Fe-(hydr)oxide, Inorg. Chem., 56
(2017) 5455–5464.
- O.A. Kayode, I.U. Emmanuel, I.O. Bamidele, Kinetic and
thermodynamic aspects of the adsorption of Pb2+ and Cd2+
ions on tripolyphosphate-modified kaolinite clay, Chem. Eng.
J., 136 (2008) 99–107.
- M. Alkan, B. Kalay, M. Dogan, O. Demirbas, Removal of copper
ions from aqueous solutions by kaolinite and batch design, J.
Hazard. Mater., 153 (2008) 867–876.
- C.J. Mena-Duran, M.R. Sun-Kou, T. Lopez, Nitrate removal
using natural clays modified by acid thermoactivation, Surf.
Sci., 253 (2007) 5762–5766.
- B. Wasse, F. Gezahegn, F. Nestor, Removal of nitrate ion from
aqueous solution by modified Ethiopian bentonite clay, Int. J.
Res. Pharm. Chem., 4 (2014) 192–201.
- O. Bouras, T. Chami, M. Houari, H. Khalaf, J. Bollinger, M.
Baudu, Removal of sulfacid brilliant pink from an aqueous
stream by adsorption onto surfactant modified Ti-pillared
montmorillonite, Environ. Technol., 23 (2002) 405–411.
- M. Morteza, S. Shamsuddin, E. Kumars, Nitrate Adsorption
on Clay Kaolin: Batch Tests, Hindawi Publishing Corporation
(2015) 397069.
- M. El Ouardi, S. Qourzal, S. Alahiane, A. Assabbane, J. Douch,
Effective removal of nitrates ions from aqueous solution using
new clay as potential low-cost adsorbent, J. Encapsul. Adsorpt.
Sci., 5 (2015) 178–190.
- R. Trujillano, E. Rico, M.A. Vicente, M. Herrero, V. Rives,
Microwave radiation and mechanical grinding as new ways for
preparation of saponite-like materials, Appl. Clay. Sci., 48 (2010)
32–38.
- S.J. Kim, Sorption mechanism of U (VI) on a reference
montmorillonite: binding to the internal and external surfaces,
J. Radioanal. Nucl. Chem., 250 (2001) 55–62.
- A. Qlihaa, S. Dhimni, F. Melrhaka, N. Hajjaji, A. Srhiri, Physicochemical
characterization of a morrocan clay, J. Mater. Environ.
Sci., 7 (2016) 1741–1750.
- A. Boukhemkhem, K. Rida, Improvement adsorption capacity
of methylene blue onto modified Tamazert kaolin, Adsorpt. Sci.
Technol., 35 (2017) 753–773.
- D. Ghosh, K.G. Bhattacharyya, Adsorption of methylene blue
on kaolinite, Appl. Clay Sci., 20 (2002) 295–300.
- S. Korichi, A. Elias, A. Mefti, Characterization of smectite after
acid activation with microwave irradiation, Appl. Clay Sci., 42
(2009) 432–438.
- A. Njoya, C. Nkoumbou, C. Grosbois, D. Njopwouo, D. Njoya,
A. Courtin-Nkoumbou, Genesis of mayouom kaolin deposit
(western cameroun), Appl. Clay Sci., 32 (2006) 125–140.
- F.A. Dawodu, K.G. Akpomie, Simultaneous adsorption of Ni
(II) and Mn(II) ions from aqueous solution unto a Nigerian
kaolinite clay, J. Mater. Res. Technol., 3 (2014) 129–141.
- A.G. San Cristobal, R. Castello, M.A.M. Luengo, C. Viscayno,
Acid activation of mechanically and thermally modified
kaolins, Mater. Res. Bull., 44 (2009) 2103–2111.
- C. Volzone, J. Ortiga, SO2 gas adsorption by modified kaolin
clays: influence of previous heating and time acid treatments, J.
Environ. Manage., 92 (2011) 2590–2595.
- D. Mohan, S. Chander, Single, binary, and multicomponent
sorption of iron and manganese on lignite, J. Colloid. Interface
Sci., 299 (2006) 76–87.
- M.K. Seliem, S. Komarneni, T. Byrne, F.S. Cannon, M.G.
Shahien, A.A. Khalil, I.M. Abd El-Gaid, Removal of nitrate by
synthetic organosilicas and organoclay: kinetic and isotherm
studies, Appl. Clay Sci., 110 (2013) 181–187.
- W.T. Tsai, Y.M. Chang, C.W. Lai, C.C. Lo, Adsorption of basic
dyes in aqueous solution by clay adsorbent from regenerated
bleaching earth, Appl. Clay Sci., 29 (2005) 149–154.
- R. Elmoubarki, F.Z. Mahjoubi, H. Tounsadi, J. Moustadraf, M.
Abdennouri, A. Zouhri, N. Barka, Kinetics and thermodynamics
study of methylene blue adsorption onto Aleppo pine cones, J.
Mater. Environ. Sci., 7 (2016) 2869–2879.
- H. Tahir, Comparative trace metal contents in sediments and
liquid waste from tanneries and their removal of chromium
using zeolite 5A, E-J. Environ.
Agric. Food Chem., 4 (2005) 23–29.
- V.C. Srivastava, M.M. Swamy, D. Malli, B. Prasad, I.M. Mishra,
Adsorptive removal of phenol by bagasse fly ash and activated
carbon: equilibrium, kinetics and thermodynamics, Colloids
Surfaces A: Physico chem. Eng. Asp., 272 (2006) 89–104.
- Y. S. Ho, G. McKay, Kinetic model for lead(II) sorption on to
peat, Adsorpt. Sci. Technol., 16 (1998) 243–255.
- B. K. Nandi, A. Goswami, M.K. Purkait, Adsorption
characteristic of brilliant green dye on kaolin, J. Hazard. Mater.,
161 (2009) 387–395.
- L. Deng, Z. Shi, L. Luo, S. Chen, L. Yang, X. Yang, L. Liu ,
Adsorption of hexavalent chromium onto kaolin clay based
adsorbent, J. Cent. South Univ., 21 (2014) 3918−3926.
- C. Belver, M.A.B. Muñoz, M.A. Vicente, Chemical activation of
a kaolinite under acid and alkaline conditions, Chem. Mater., 14
(2002) 2033–2043.