Références
bibliographiques
183
• Song, H.G., Wang, X. and Bartha, R., 1990. Bioremediation potential of terrestrial
fuel spills. Appl. Environ. Microbiol.,56(3), pp.652-656.
• Sotsky, J.B., Greer, C.W. and Atlas, R.M., 1994. Frequency of genes in aromatic and
aliphatic hydrocarbon biodegradation pathways within bacterial populations from
Alaskan sediments. Canadian journal of microbiology, 40(11), pp.981-985.
• Souza, E.C., Vessoni-Penna, T.C. and de Souza Oliveira, R.P., 2014. Biosurfactantenhanced hydrocarbon bioremediation: an overview. International biodeterioration &
biodegradation, 89, pp.88-94.
• Speight, J.G., 2014. The chemistry and technology of petroleum. CRC press.
• Spencer, P.S., Kim, M.S. and Sabri, M.I., 2002. Aromatic as well as aliphatic
hydrocarbon solvent axonopathy.International journal of hygiene and environmental
health,205(1-2), pp.131-136.
• Spormann, A.M. and Widdel, F., 2000. Metabolism of alkylbenzenes, alkanes, and
other hydrocarbons in anaerobic bacteria. Biodegradation, 11(2-3), pp.85-105.
• Stancu, M.M. and Grifoll, M., 2011. Multidrug resistance in hydrocarbon-tolerant
Gram-positive and Gram-negative bacteria. The Journal of general and applied
microbiology,57(1), pp.1-18.
• Stroud, J.L., Paton, G.I. and Semple, K.T., 2007. Microbe‐aliphatic hydrocarbon
interactions in soil: implications for biodegradation and bioremediation. Journal of
Applied Microbiology, 102(5), pp.1239-1253.
• Suess, M.J., 1976. The environmental load and cycle of polycyclic aromatic
hydrocarbons. Science of the Total Environment, 6(3), pp.239-250.
• Sugiura, K., Ishihara, M., Shimauchi, T. and Harayama, S., 1996. Physicochemical
properties and biodegradability of crude oil. Environmental Science &
Technology, 31(1), pp.45-51.
• Swannell, R.P. and Daniel, F., 1999, March. Effect of dispersants on oil
biodegradation under simulated marine conditions. In International Oil Spill
Conference (Vol. 1999, No. 1, pp. 169-176). American Petroleum Institute.
• Tapilatu, Y., Acquaviva, M., Guigue, C., Miralles, G., Bertrand, J.C. and Cuny, P.,
2010. Isolation of alkane‐degrading bacteria from deep‐sea Mediterranean
sediments. Letters in applied microbiology, 50(2), pp.234-236
• Tarayre, C., 2012. Bioremédiation de sols pollués aux hydrocarbures. Ed. Univ. Eur.,
p.116.
bibliographiques
183
• Song, H.G., Wang, X. and Bartha, R., 1990. Bioremediation potential of terrestrial
fuel spills. Appl. Environ. Microbiol.,56(3), pp.652-656.
• Sotsky, J.B., Greer, C.W. and Atlas, R.M., 1994. Frequency of genes in aromatic and
aliphatic hydrocarbon biodegradation pathways within bacterial populations from
Alaskan sediments. Canadian journal of microbiology, 40(11), pp.981-985.
• Souza, E.C., Vessoni-Penna, T.C. and de Souza Oliveira, R.P., 2014. Biosurfactantenhanced hydrocarbon bioremediation: an overview. International biodeterioration &
biodegradation, 89, pp.88-94.
• Speight, J.G., 2014. The chemistry and technology of petroleum. CRC press.
• Spencer, P.S., Kim, M.S. and Sabri, M.I., 2002. Aromatic as well as aliphatic
hydrocarbon solvent axonopathy.International journal of hygiene and environmental
health,205(1-2), pp.131-136.
• Spormann, A.M. and Widdel, F., 2000. Metabolism of alkylbenzenes, alkanes, and
other hydrocarbons in anaerobic bacteria. Biodegradation, 11(2-3), pp.85-105.
• Stancu, M.M. and Grifoll, M., 2011. Multidrug resistance in hydrocarbon-tolerant
Gram-positive and Gram-negative bacteria. The Journal of general and applied
microbiology,57(1), pp.1-18.
• Stroud, J.L., Paton, G.I. and Semple, K.T., 2007. Microbe‐aliphatic hydrocarbon
interactions in soil: implications for biodegradation and bioremediation. Journal of
Applied Microbiology, 102(5), pp.1239-1253.
• Suess, M.J., 1976. The environmental load and cycle of polycyclic aromatic
hydrocarbons. Science of the Total Environment, 6(3), pp.239-250.
• Sugiura, K., Ishihara, M., Shimauchi, T. and Harayama, S., 1996. Physicochemical
properties and biodegradability of crude oil. Environmental Science &
Technology, 31(1), pp.45-51.
• Swannell, R.P. and Daniel, F., 1999, March. Effect of dispersants on oil
biodegradation under simulated marine conditions. In International Oil Spill
Conference (Vol. 1999, No. 1, pp. 169-176). American Petroleum Institute.
• Tapilatu, Y., Acquaviva, M., Guigue, C., Miralles, G., Bertrand, J.C. and Cuny, P.,
2010. Isolation of alkane‐degrading bacteria from deep‐sea Mediterranean
sediments. Letters in applied microbiology, 50(2), pp.234-236
• Tarayre, C., 2012. Bioremédiation de sols pollués aux hydrocarbures. Ed. Univ. Eur.,
p.116.
