Références bibliographiques
68
NASEEM, R.O., TAHIR, S.S. (2001). Removal of pb(II) from aqueous/acide solution by
using bentonite as an adsorbent. Water Res, vol. 35. pp. 3982-3986.
PETERLENE, W.S. et al. (1999). Adsorption of Cd (II) and Pb (II) on to functionalized
formic lignin from sugar can bagasse, Bioresour. Technol, vol. 68. pp. 95 – 100.
PEDRO, G. (1994). Les minéraux argileux, Constituants et propriétés du sol. France :
Edition Masson.
PULS, R.W. et al. (1994). Transport and transformation of hexavalent chromium through
soils into ground water. Journal of soil contamination, vol. 3. pp. 203 – 224.
RICOU, P. et al. (1998). Influence of pH on removal of heavy metallic cations by fly ash
in aqueous solution, Environ. Technol, vol. 19. pp. 1005–1016.
ROY, A., BHATTACHARYA, J. (2013). A binary and ternary adsorption study of
wastewater Cd (II), Ni (II) and Co (II) by γ-Fe2O3 nanotubes ». Separation and Purification
Technology, vol. 115. pp. 172–179.
RUHAN, A.A. et al. (1999). Equilibrium, thermodynamic and kinetic studies on biosorption
of Pb (II) and Cd (II) from aqueous solution by macrofungus (Lactarius scrobiculatus)
biomass. Chemical Engineering Journal. Vol. 151, Issues 1–3. pp. 255–261.
SRIVASTAVA, V.C. et al. (2006). Equilibrium modelling of single and binary adsorption
of cadmium and nickel onto bagasse fly ash. Chemical Engineering Journal, vol. 117.
pp. 79–91.
SUN, L.M., MEUNTER, F. (2003). Adsorption, Aspects théoriques. Techniques de
l’ingénieur, opération unitaire, J2730.
TEMKIN, M.J., PYZHEV, V. (1940). Recent modifications to Langmuir isotherms, Acta
Physchim. USSR, vol. 12. p. 217.
TORAB-MOSTAEDI, M. et al. (2010). Removal of cadmium and nickel from aqueous
solution using expanded perlite. Brazilian Journal of Chemical Engineering. vol. 27, No. 02.
pp. 299 – 308.
TSAI, S.C., JUANG, K.W. (2000). Comparison of linear and non-linear forms of isotherm
models for strontium sorption on a sodium bentonite, J. Radioanal. Nucl. Chem.
Vol. 243. pp. 741–746.
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