39
Kraepiel, A. M.L., Keller, K., Morel, F.M.M.(1999). A model for metal adsorption
on montmorillonites. Journal of Colloidal and Interface Science.Vol. 210.pp.43-54.
Kwolek, T., Hodorowicz, M., Stadnicka, k., Czapfiwicz, J. (2003). Adsorption
isotherms of homologous alkydimethylenzylamonium bromides on sodium
montmorillonite. Journal colloidal and.Interface Science. Vol :264: 14-19.
Larson, A.A., Widegren,J.A ., Falconer, J.L., Catal,J (1995). Transient studies of
2-propanol photo catalytic oxidation in titania. Journal of catalysis, 157:611- 625.
Marot, F. (1998). Caractérisation et traitement des sédiments de dragage contenant
des polluants métalliques. Thèse de Doctorat .Paris.France.330 p.
Mellah, A., Chegrouche, S., (1997). The removal of Zinc from aqueous solutions by
natural bentonites. Water Research, 31: 621-629.
Moulahcene, F. (2008). Elaboration et caractérisation de nanocomposites
cellulose/montmorillonite, thèse de magister, Université M’HAmed Bougara -
Boumerdes, Algerie. 142 pp.
Unuabonah, E.I. Adebowale , K.I.,Olo-Owolab, B.I., Yang, L.Z., Kong
L.X.(2008). Adsorption of Pb(II) and (Cd) from aqueous solution into sodium
tetraborate – Modified kaolinite clay: Equilibrium and thermodynamic studies,93:19.
Ozdes, D., Duran,C., Senturk, H.B. (2011).Adsorptive removal of Cd(II) and Pb(II)
ions from aqueous solutions by using Turkish illitic clay. Journal of Environmental
Management, 92: 3082-3090.
Olu-Owalabi, B. I., Unuabonah, E. I. (2010). Kinetic and thermodynamics of
removal of Zn
+2 and Cu
+2 from aqueous solution by sulfate and phosphate- modified
Bentonite clay, Journal of Hazardious Materials, 184: 731-738.
Ramesh,A., Alee,D.J., Won,G.J.(2005). Thermoddynamic parameters for
adsorption equilibrium of heavy metals and dyes from water with low-cost
adsorbant. Journal of colloid and Interface Science.291.pp 588-592.
Reungoat, J. (2007). Etude d’un précédés hybride couplant adsorption sur zéolithes
et oxydation par l’ozone. Application au traitement d’effluents aqueux industriels.
Thèse de doctorat en Ginie des procèdes et l’environnement. Université de
Toulouse. France.239p.
Ruthven, D.M. (1984). Principles of adsorption and adsorption processes. Edition:
John Wiley and Sons, Grand Bretagne. 464p.
Roux, P .(1998). Thermodynamique physique et chimique.Ed :Ellipses-Paris :368p.
Saha, U.M., Tamguchi, S., Sakurai,K.,(2007). Synthesis, Caracterization and
adsorption capacity of Mof-5. Journal of Hazardous Materials,65: 691-703).
Kraepiel, A. M.L., Keller, K., Morel, F.M.M.(1999). A model for metal adsorption
on montmorillonites. Journal of Colloidal and Interface Science.Vol. 210.pp.43-54.
Kwolek, T., Hodorowicz, M., Stadnicka, k., Czapfiwicz, J. (2003). Adsorption
isotherms of homologous alkydimethylenzylamonium bromides on sodium
montmorillonite. Journal colloidal and.Interface Science. Vol :264: 14-19.
Larson, A.A., Widegren,J.A ., Falconer, J.L., Catal,J (1995). Transient studies of
2-propanol photo catalytic oxidation in titania. Journal of catalysis, 157:611- 625.
Marot, F. (1998). Caractérisation et traitement des sédiments de dragage contenant
des polluants métalliques. Thèse de Doctorat .Paris.France.330 p.
Mellah, A., Chegrouche, S., (1997). The removal of Zinc from aqueous solutions by
natural bentonites. Water Research, 31: 621-629.
Moulahcene, F. (2008). Elaboration et caractérisation de nanocomposites
cellulose/montmorillonite, thèse de magister, Université M’HAmed Bougara -
Boumerdes, Algerie. 142 pp.
Unuabonah, E.I. Adebowale , K.I.,Olo-Owolab, B.I., Yang, L.Z., Kong
L.X.(2008). Adsorption of Pb(II) and (Cd) from aqueous solution into sodium
tetraborate – Modified kaolinite clay: Equilibrium and thermodynamic studies,93:19.
Ozdes, D., Duran,C., Senturk, H.B. (2011).Adsorptive removal of Cd(II) and Pb(II)
ions from aqueous solutions by using Turkish illitic clay. Journal of Environmental
Management, 92: 3082-3090.
Olu-Owalabi, B. I., Unuabonah, E. I. (2010). Kinetic and thermodynamics of
removal of Zn
+2 and Cu
+2 from aqueous solution by sulfate and phosphate- modified
Bentonite clay, Journal of Hazardious Materials, 184: 731-738.
Ramesh,A., Alee,D.J., Won,G.J.(2005). Thermoddynamic parameters for
adsorption equilibrium of heavy metals and dyes from water with low-cost
adsorbant. Journal of colloid and Interface Science.291.pp 588-592.
Reungoat, J. (2007). Etude d’un précédés hybride couplant adsorption sur zéolithes
et oxydation par l’ozone. Application au traitement d’effluents aqueux industriels.
Thèse de doctorat en Ginie des procèdes et l’environnement. Université de
Toulouse. France.239p.
Ruthven, D.M. (1984). Principles of adsorption and adsorption processes. Edition:
John Wiley and Sons, Grand Bretagne. 464p.
Roux, P .(1998). Thermodynamique physique et chimique.Ed :Ellipses-Paris :368p.
Saha, U.M., Tamguchi, S., Sakurai,K.,(2007). Synthesis, Caracterization and
adsorption capacity of Mof-5. Journal of Hazardous Materials,65: 691-703).
