References bibliographiques
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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.
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.
