References bibliographiques
tion of metals and effects of a landfill in small mammals Part III : Structural alterations. Environmental Research. Vol. 109, n° 8, P.P. 960–967.
Sarret, G., Harada, E., Choi, Y. E., Isaure, M. P., Geoffroy, N., Fakra, S., Marcus, M. A.,
Birschwilks, M., Clemens, S., & Manceau, A. (2005). Trichomes of tobacco excrete zinc as zincsubstituted calcium carbonate and other zinc-containing compounds. Plant Physiology. Vol. 141,
n° 3, P.P. 1021-1034.
Saxena, D. K., Murthy, R. C., Jain, V. K., & Chandra, S. V. (1990). Embryo-fetal development
in rats exposed to hexavalent chromium. Reproductive Toxicology. Vol. 4, n° 1, P.P. 51-57.
Schwaber J., Navon-Venezia S., Kaye S., Ben-Ami R., Schwartz D. & Carmeli Y. (2006). Clinical and economic impact of bacteremia with extended-spectrum-β- lactamase-producing Enterobacteriaceae. Antimicrob.Agent.Chemother. vol. 50, n° 4, P.P. 1257- 1262.
Seiler, C., & Berendonk, T. U. (2012). Heavy metal driven co-selection of antibiotic resistance in
soil and water bodies impacted by agriculture and aquaculture. Frontiers in Microbiology. Vol. 14,
n°3, P. 399
Selatnia, A., Boukazoula, A., Kechid, N., Bakhti, M., & Chergui, A. (2004). Biosorption of Fe3+
from aqueous solution by a bacterial dead Streptomyces rimosus biomass. Process Biochemistry.
Vol. 39, n° 11, P.P. 1643 1651.
Sethuraman, P., Balasubramanian, N., & Dharmendira Kumar, M. (2010). Biosorption of Cr(
VI ) by Bacillus subtilis, Pseudomonas aeruginosa and Enterobacter cloacae. International Journal
of Environmental Technology and Management. Vol. 12, n°(2-4), P.P. 308-321.
Sharma, S., & Adholeya, A. (2011). Detoxification and accumulation of chromium from tannery
effluent and spent chrome effluent by Paecilomyces lilacinus fungi. International Biodeterioration
& Biodegradation. Vol. 65, n° 2, P.P. 309-317.
Singh, N., Verma, T., & Gaur, R. (2013). Detoxification of hexavalent chromium by an indigenous facultative anaerobic Bacillus cereus strain isolated from tannery effluent. African Journal of
Biotechnology. Vol. 12, n° 10, P.P. 1091-1103
Smith, W. L., & Gadd, G. M. (2000). Reduction and precipitation of chromate by mixed culture
sulphate‐reducing bacterial biofilms. Journal of Applied Microbiology. Vol. 88, n° 6, P.P. 983-991.
Précédent

Evaluation de la résistance aux métaux lourds et du potentiel d’élimination du chrome hexavalent chez des bactéries d’origines marines Projet de mise en place d’un procédé de traitement des effluents riches en chrome. - 121/153

Suivant