Références
bibliographiques
186
• Wakeham, S.G., Schaffner, C. and Giger, W., 1980. Polycyclic aromatic hydrocarbons
in recent lake sediments—I. Compounds having anthropogenic origins. Geochimica et
Cosmochimica Acta, 44(3), pp.403-413.
• Walker, J.D., Colwell, R.R., Vaituzis, Z. and Meyer, S.A., 1975. Petroleum-degrading
achlorophyllous alga Prototheca zopfii.Nature, 254(5499), p.423.
• Walker, C.H., Sibly, R.M., Hopkin, S.P. and Peakall, D.B., 2005. Principles of
ecotoxicology. CRC press.
• Walworth, J., Braddock, J. and Woolard, C., 2001. Nutrient and temperature
interactions in bioremediation of cryic soils.Cold Regions Science and
Technology, 32(2-3), pp.85-91.
• Wang, Z., Fingas, M., Lambert, P., Zeng, G., Yang, C. and Hollebone, B., 2004.
Characterization and identification of the Detroit River mystery oil spill
(2002). Journal of Chromatography A, 1038(1-2), pp.201-214.
• Watkinson, R.J. and Morgan, P., 1991. Physiology of aliphatic hydrocarbon-degrading
microorganisms. In Physiology of Biodegradative Microorganisms (pp. 79-92).
Springer, Dordrecht.
• Whang, L.M., Liu, P.W.G., Ma, C.C. and Cheng, S.S., 2009. Application of
rhamnolipid and surfactin for enhanced diesel biodegradation—effects of pH and
ammonium addition.Journal of Hazardous Materials, 164(2-3), pp.1045-1050.
• Whyte, L.G., Bourbonniere, L. and Greer, C.W., 1997. Biodegradation of petroleum
hydrocarbons by psychrotrophic Pseudomonas strains possessing both alkane (alk)
and naphthalene (nah) catabolic pathways. Appl. Environ. Microbiol., 63(9), pp.37193723.
• Widdel, F. and Rabus, R., 2001. Anaerobic biodegradation of saturated and aromatic
hydrocarbons. Current opinion in biotechnology, 12(3), pp.259-276.
• Wilcke, W., 2007. Global patterns of polycyclic aromatic hydrocarbons (PAHs) in
soil. Geoderma, 141(3-4), pp.157-166.
• Wilkes, H., Kühner, S., Bolm, C., Fischer, T., Classen, A., Widdel, F. and Rabus, R.,
2003. Formation of n-alkane-and cycloalkane-derived organic acids during anaerobic
growth of a denitrifying bacterium with crude oil. Organic Geochemistry,34(9),
pp.1313-1323.
• Wilkes, H., Buckel, W., Golding, B.T. and Rabus, R., 2016. Metabolism of
hydrocarbons in n-alkane-utilizing anaerobic bacteria. Journal of molecular
microbiology and biotechnology,26(1-3), pp.138-151.
• Woese, C.R., Gutell, R., Gupta, R.A.M.E.S.H. and Noller, H.F., 1983. Detailed
analysis of the higher-order structure of 16S-like ribosomal ribonucleic
acids. Microbiological reviews,47(4), p.621.
bibliographiques
186
• Wakeham, S.G., Schaffner, C. and Giger, W., 1980. Polycyclic aromatic hydrocarbons
in recent lake sediments—I. Compounds having anthropogenic origins. Geochimica et
Cosmochimica Acta, 44(3), pp.403-413.
• Walker, J.D., Colwell, R.R., Vaituzis, Z. and Meyer, S.A., 1975. Petroleum-degrading
achlorophyllous alga Prototheca zopfii.Nature, 254(5499), p.423.
• Walker, C.H., Sibly, R.M., Hopkin, S.P. and Peakall, D.B., 2005. Principles of
ecotoxicology. CRC press.
• Walworth, J., Braddock, J. and Woolard, C., 2001. Nutrient and temperature
interactions in bioremediation of cryic soils.Cold Regions Science and
Technology, 32(2-3), pp.85-91.
• Wang, Z., Fingas, M., Lambert, P., Zeng, G., Yang, C. and Hollebone, B., 2004.
Characterization and identification of the Detroit River mystery oil spill
(2002). Journal of Chromatography A, 1038(1-2), pp.201-214.
• Watkinson, R.J. and Morgan, P., 1991. Physiology of aliphatic hydrocarbon-degrading
microorganisms. In Physiology of Biodegradative Microorganisms (pp. 79-92).
Springer, Dordrecht.
• Whang, L.M., Liu, P.W.G., Ma, C.C. and Cheng, S.S., 2009. Application of
rhamnolipid and surfactin for enhanced diesel biodegradation—effects of pH and
ammonium addition.Journal of Hazardous Materials, 164(2-3), pp.1045-1050.
• Whyte, L.G., Bourbonniere, L. and Greer, C.W., 1997. Biodegradation of petroleum
hydrocarbons by psychrotrophic Pseudomonas strains possessing both alkane (alk)
and naphthalene (nah) catabolic pathways. Appl. Environ. Microbiol., 63(9), pp.37193723.
• Widdel, F. and Rabus, R., 2001. Anaerobic biodegradation of saturated and aromatic
hydrocarbons. Current opinion in biotechnology, 12(3), pp.259-276.
• Wilcke, W., 2007. Global patterns of polycyclic aromatic hydrocarbons (PAHs) in
soil. Geoderma, 141(3-4), pp.157-166.
• Wilkes, H., Kühner, S., Bolm, C., Fischer, T., Classen, A., Widdel, F. and Rabus, R.,
2003. Formation of n-alkane-and cycloalkane-derived organic acids during anaerobic
growth of a denitrifying bacterium with crude oil. Organic Geochemistry,34(9),
pp.1313-1323.
• Wilkes, H., Buckel, W., Golding, B.T. and Rabus, R., 2016. Metabolism of
hydrocarbons in n-alkane-utilizing anaerobic bacteria. Journal of molecular
microbiology and biotechnology,26(1-3), pp.138-151.
• Woese, C.R., Gutell, R., Gupta, R.A.M.E.S.H. and Noller, H.F., 1983. Detailed
analysis of the higher-order structure of 16S-like ribosomal ribonucleic
acids. Microbiological reviews,47(4), p.621.
