X
REFERENCES BIBLIOGRAPHIQUE
VIEIRA R-F. et VOLESKY B., (2000). Biosorption: A solution to pollution?. International
Microbiology Journal, 3(1): p.p 17–24.
VIJAYARAGHAVAN K. & RAJASEKHAR B., (2015). Is biosorption suitable for
decontamination of metal-bearing wastewaters?. Journal of environmental management,
160(1): p.p 283–296.
VIMALAR R. et DAS N., (2009). Biosorption of cadmium and lead from aqueous solution
using mushrooms: a comparative study. Journal of Hazardous Materials,168(1) : p.p 376-382.
VOLESKY B., (1994). Advances in biosorption of Metals: Selection of biomass types.1FFMS
Microbiology Reviews 14(4): p.p 291-302.
VOLESKY B., WEBER J., PARK J-M., (2003). Continuous-flow metal biosorption in a
regenerable Sargassum column.Water Research, 37(2003): p.p 297-306.
WANG F et al., (2006). One-pot synthesis of chitosan/LaF3: Eu3+ nanocrystals for bioapplications. Nanotechnology, 17(5) :
WANG W-P., DU Y-M. & Wang X-Y., (2008). Physical properties of fungal chitosan. World
Journal of Microbiology and Biotechnology, 24 (8): p.p 2717–2720.
WESKA R-F et al., (2007). Optimization of deacetylation in the production of chitosan from
shrimp wastes: Use of response surface methodology. Journal of Food Engineering, 80(3) : p.p
749–753.
XIA W., ASIF M et RUQIANG Z. (2015). Metal–organic frameworks and their derived
nanostructures for electrochemical energy storage and conversion. Energy Environmental
Science, 8(7) : p.p 1837–1866
YII M-W., ZAHARUDI A. et ABDUL-KADIR I., (2009). Distribution of naturally occurring
radionuclides activity concentration in east Malaysian marine sediment. Applied Radiation and
Isotopes ,67(4) : p.p 630-635.
Précédent

Elimination d’élément radioactif Cs* et d’élément trace métallique Pb en solution aqueuse par adsorption sur les carapaces de crevettes: - 76/80

Suivant