Références
bibliographiques
180
• Rocha, C.A., Pedregosa, A.M. and Laborda, F., 2011. Biosurfactant-mediated
biodegradation of straight and methyl-branched alkanes by Pseudomonas aeruginosa
ATCC 55925.AMB express, 1(1), p.9.
• Rodier, J., Legube, B., Merlet, N. and Brunet, R., 2009. L'analyse de l'eau-9ème
édition,-Eaux naturelles, eaux résiduaires, eau de mer: Analyse de l’eau.
• Rojo, F., 2009. Degradation of alkanes by bacteria.Environmental
microbiology, 11(10), pp.2477-2490.
• Röling, W.F., Milner, M.G., Jones, D.M., Lee, K., Daniel, F., Swannell, R.J. and
Head, I.M., 2002. Robust hydrocarbon degradation and dynamics of bacterial
communities during nutrient-enhanced oil spill bioremediation. Applied and
environmental microbiology, 68(11), pp.5537-5548.
• Röling, W.F., Head, I.M. and Larter, S.R., 2003. The microbiology of hydrocarbon
degradation in subsurface petroleum reservoirs: perspectives and prospects. Research
in Microbiology, 154(5), pp.321-328.
• Ron, E.Z. and Rosenberg, E., 2014. Enhanced bioremediation of oil spills in the
sea. Current Opinion in biotechnology, 27, pp.191-194.
• Rontani, J.F. and Giusti, G., 1987. Photosensitized oxidation of pristane in sea water:
effect
of
photochemical
reactions
on
tertiary
carbons. Journal of
Photochemistry, 40(1), pp.107-120.
• Rosenberg E., 1986. Microbial biosurfactants. Critical Reviews in Biotechnology.
3:109-132.
• Rouidi, S., 2002. Cartographie de la pollution par les hydrocarbures totaux au niveau
de la plate forme pétrochimique de Skikda. Mémoire de Magistère, Université
Mentouri, Constantine, 112 p.
• Rowe, A.A., Totten, L.A., Xie, M., Fikslin, T.J. and Eisenreich, S.J., 2007. Air− water
exchange of polychlorinated biphenyls in the Delaware River. Environmental science
& technology,41(4), pp.1152-1158.
• Roy, P.K., Singh, H.D. and Baruah, J.N., 1978. Metabolism of n-alkane in
Endomycopsis lipolytica (Saccharomycopsis lipolytica). IV. Characteristics of lipid
formation from n-alkanes by non-proliferating cells. Indian journal of biochemistry
and biophysics.
• Roy, S., Hens, D., Biswas, D., Biswas, D. and Kumar, R., 2002. Survey of petroleumdegrading bacteria in coastal waters of Sunderban Biosphere Reserve. World Journal
of Microbiology and Biotechnology, 18(6), pp.575-581.
• Ruder, A.M., 2006. Potential health effects of occupational chlorinated solvent
exposure. Annals of the New York Academy of Sciences, 1076(1), pp.207-227.
bibliographiques
180
• Rocha, C.A., Pedregosa, A.M. and Laborda, F., 2011. Biosurfactant-mediated
biodegradation of straight and methyl-branched alkanes by Pseudomonas aeruginosa
ATCC 55925.AMB express, 1(1), p.9.
• Rodier, J., Legube, B., Merlet, N. and Brunet, R., 2009. L'analyse de l'eau-9ème
édition,-Eaux naturelles, eaux résiduaires, eau de mer: Analyse de l’eau.
• Rojo, F., 2009. Degradation of alkanes by bacteria.Environmental
microbiology, 11(10), pp.2477-2490.
• Röling, W.F., Milner, M.G., Jones, D.M., Lee, K., Daniel, F., Swannell, R.J. and
Head, I.M., 2002. Robust hydrocarbon degradation and dynamics of bacterial
communities during nutrient-enhanced oil spill bioremediation. Applied and
environmental microbiology, 68(11), pp.5537-5548.
• Röling, W.F., Head, I.M. and Larter, S.R., 2003. The microbiology of hydrocarbon
degradation in subsurface petroleum reservoirs: perspectives and prospects. Research
in Microbiology, 154(5), pp.321-328.
• Ron, E.Z. and Rosenberg, E., 2014. Enhanced bioremediation of oil spills in the
sea. Current Opinion in biotechnology, 27, pp.191-194.
• Rontani, J.F. and Giusti, G., 1987. Photosensitized oxidation of pristane in sea water:
effect
of
photochemical
reactions
on
tertiary
carbons. Journal of
Photochemistry, 40(1), pp.107-120.
• Rosenberg E., 1986. Microbial biosurfactants. Critical Reviews in Biotechnology.
3:109-132.
• Rouidi, S., 2002. Cartographie de la pollution par les hydrocarbures totaux au niveau
de la plate forme pétrochimique de Skikda. Mémoire de Magistère, Université
Mentouri, Constantine, 112 p.
• Rowe, A.A., Totten, L.A., Xie, M., Fikslin, T.J. and Eisenreich, S.J., 2007. Air− water
exchange of polychlorinated biphenyls in the Delaware River. Environmental science
& technology,41(4), pp.1152-1158.
• Roy, P.K., Singh, H.D. and Baruah, J.N., 1978. Metabolism of n-alkane in
Endomycopsis lipolytica (Saccharomycopsis lipolytica). IV. Characteristics of lipid
formation from n-alkanes by non-proliferating cells. Indian journal of biochemistry
and biophysics.
• Roy, S., Hens, D., Biswas, D., Biswas, D. and Kumar, R., 2002. Survey of petroleumdegrading bacteria in coastal waters of Sunderban Biosphere Reserve. World Journal
of Microbiology and Biotechnology, 18(6), pp.575-581.
• Ruder, A.M., 2006. Potential health effects of occupational chlorinated solvent
exposure. Annals of the New York Academy of Sciences, 1076(1), pp.207-227.
