Références
bibliographiques
177
• National Research Council (U.S.)., 2002. Oil in the sea: inputs, fates and effects.
National Academy of Science, Washington DC.
• Nikolopoulou, M. and Kalogerakis, N., 2009. Biostimulation strategies for fresh and
chronically polluted marine environments with petroleum hydrocarbons. Journal of
Chemical Technology & Biotechnology: International Research in Process,
Environmental & Clean Technology, 84(6), pp.802-807.
• Nikolopoulou, M., Pasadakis, N. and Kalogerakis, N., 2013a. Evaluation of
autochthonous bioaugmentation and biostimulation during microcosm-simulated oil
spills. Marine pollution bulletin, 72(1), pp.165-173.
• Nikolopoulou, M., Eickenbusch, P., Pasadakis, N., Venieri, D. and Kalogerakis, N.,
2013b. Microcosm evaluation of autochthonous bioaugmentation to combat marine oil
spills.New biotechnology, 30(6), pp.734-742.
• NOAA., 2010. Characteristics of Response Strategies: A Guide for Spill Response
Planning in Marine Environments. U.S. Dept. of Commerce. Seattle, WA: Emergency
Response Division, Office of Response and Restoration National Oceanic and
Atmospheric Administration. 76 pp.
• Notar, M., Leskovšek, H. and Faganeli, J., 2001. Composition, distribution and
sources of polycyclic aromatic hydrocarbons in sediments of the Gulf of Trieste,
Northern Adriatic Sea.Marine Pollution Bulletin, 42(1), pp.36-44.
• Ouverney, C.C. and Fuhrman, J.A. (1999) Combined microautoradiography-16S
rRNA probe technique for determination of radioisotope uptake by specific microbial
cell types in situ, Applied and environmental microbiology, 65, 1746-1752.
• Owsianiak, M., Chrzanowski, Ł., Szulc, A., Staniewski, J., Olszanowski, A., OlejnikSchmidt, A.K. and Heipieper, H.J., 2009. Biodegradation of diesel/biodiesel blends by
a consortium of hydrocarbon degraders: effect of the type of blend and the addition of
biosurfactants. Bioresource Technology, 100(3), pp.1497-1500.
• O.N.M., 2003. Office National de la Météorologie. Relevé météorologique 1993-2004.
• Paisse, S., Duran, R., Coulon, F. and Goñi-Urriza, M., 2011. Are alkane hydroxylase
genes (alkB) relevant to assess petroleum bioremediation processes in chronically
polluted coastal sediments?. Applied microbiology and biotechnology,92(4), pp.835844.
• Pamp, S.J. and Tolker-Nielsen, T., 2007. Multiple roles of biosurfactants in structural
biofilm development by Pseudomonas aeruginosa. Journal of bacteriology, 189(6),
pp.2531-2539.
• Parales, R.E., Bruce, N.C., Schmid, A. and Wackett, L.P., 2002. Biodegradation,
biotransformation, and biocatalysis (B3). Appl. Environ. Microbiol., 68(10), pp.46994709.
bibliographiques
177
• National Research Council (U.S.)., 2002. Oil in the sea: inputs, fates and effects.
National Academy of Science, Washington DC.
• Nikolopoulou, M. and Kalogerakis, N., 2009. Biostimulation strategies for fresh and
chronically polluted marine environments with petroleum hydrocarbons. Journal of
Chemical Technology & Biotechnology: International Research in Process,
Environmental & Clean Technology, 84(6), pp.802-807.
• Nikolopoulou, M., Pasadakis, N. and Kalogerakis, N., 2013a. Evaluation of
autochthonous bioaugmentation and biostimulation during microcosm-simulated oil
spills. Marine pollution bulletin, 72(1), pp.165-173.
• Nikolopoulou, M., Eickenbusch, P., Pasadakis, N., Venieri, D. and Kalogerakis, N.,
2013b. Microcosm evaluation of autochthonous bioaugmentation to combat marine oil
spills.New biotechnology, 30(6), pp.734-742.
• NOAA., 2010. Characteristics of Response Strategies: A Guide for Spill Response
Planning in Marine Environments. U.S. Dept. of Commerce. Seattle, WA: Emergency
Response Division, Office of Response and Restoration National Oceanic and
Atmospheric Administration. 76 pp.
• Notar, M., Leskovšek, H. and Faganeli, J., 2001. Composition, distribution and
sources of polycyclic aromatic hydrocarbons in sediments of the Gulf of Trieste,
Northern Adriatic Sea.Marine Pollution Bulletin, 42(1), pp.36-44.
• Ouverney, C.C. and Fuhrman, J.A. (1999) Combined microautoradiography-16S
rRNA probe technique for determination of radioisotope uptake by specific microbial
cell types in situ, Applied and environmental microbiology, 65, 1746-1752.
• Owsianiak, M., Chrzanowski, Ł., Szulc, A., Staniewski, J., Olszanowski, A., OlejnikSchmidt, A.K. and Heipieper, H.J., 2009. Biodegradation of diesel/biodiesel blends by
a consortium of hydrocarbon degraders: effect of the type of blend and the addition of
biosurfactants. Bioresource Technology, 100(3), pp.1497-1500.
• O.N.M., 2003. Office National de la Météorologie. Relevé météorologique 1993-2004.
• Paisse, S., Duran, R., Coulon, F. and Goñi-Urriza, M., 2011. Are alkane hydroxylase
genes (alkB) relevant to assess petroleum bioremediation processes in chronically
polluted coastal sediments?. Applied microbiology and biotechnology,92(4), pp.835844.
• Pamp, S.J. and Tolker-Nielsen, T., 2007. Multiple roles of biosurfactants in structural
biofilm development by Pseudomonas aeruginosa. Journal of bacteriology, 189(6),
pp.2531-2539.
• Parales, R.E., Bruce, N.C., Schmid, A. and Wackett, L.P., 2002. Biodegradation,
biotransformation, and biocatalysis (B3). Appl. Environ. Microbiol., 68(10), pp.46994709.
