Références
bibliographiques
161
• Binet, P., Portal, J.M. and Leyval, C., 2000. Dissipation of 3–6-ring polycyclic
aromatic hydrocarbons in the rhizosphere of ryegrass. Soil Biology and
Biochemistry, 32(14), pp.2011-2017.
• Bodour, A.A. and Miller-Maier, R.M., 1998. Application of a modified drop-collapse
technique for surfactant quantitation and screening of biosurfactant-producing
microorganisms.Journal of Microbiological Methods, 32(3), pp.273-280.
• Boopathy, R., 2000. Factors limiting bioremediation technologies. Bioresource
technology, 74(1), pp.63-67.
• Boonchan, S., Britz, M.L. and Stanley, G.A., 2000. Degradation and mineralization of
high-molecular-weight polycyclic aromatic hydrocarbons by defined fungal-bacterial
cocultures. Applied and environmental microbiology, 66(3), pp.1007-1019
• Bordoloi, N.K. and Konwar, B.K., 2009. Bacterial biosurfactant in enhancing
solubility and metabolism of petroleum hydrocarbons. Journal of Hazardous
Materials, 170(1), pp.495-505.
• Bossard, I. And Bartha, R., 1984. The fat of petroleum in soil ecosystems. In: Atlas,
R.M. (Ed.), Petroleum Microbiology. Macmillan, New York, pp. 440-445.
• Bouaziz. T., Djerrai.N., 2010. Etude des caractéristiques physicochimiques et
Bactériologiques des eaux de mer et des sédiments dans le port de plaisance de Sidi
Fredj. Mémoire d’ingéniorat. Environnement marin. Alger : ENSSMAL. p.p. 35-39.
• Bouchez, M., Blanchet, D. and Vandecasteele, J.P., 1995. Degradation of polycyclic
aromatic hydrocarbons by pure strains and by defined strain associations: inhibition
phenomena and cometabolism. Applied Microbiology and Biotechnology, 43(1),
pp.156-164.
• Bouchez Naïtali, M., Rakatozafy, H., Marchal, R., Leveau, J.Y. and Vandecasteele,
J.P., 1999. Diversity of bacterial strains degrading hexadecane in relation to the mode
of substrate uptake. Journal of Applied Microbiology, 86(3), pp.421-428.
• Boukir, A., Aries, E., Guiliano, M., Asia, L., Doumenq, P. and Mille, G., 2001.
Subfractionation,
characterization
and
photooxidation
of
crude
oil
resins. Chemosphere, 43(3), pp.279-286.
• Brakstad, O.G. and Lødeng, A.G.G., 2005. Microbial diversity during biodegradation
of crude oil in seawater from the North Sea. Microbial éEcology, 49(1), pp.94-103.
• Britton, L.N., 1984. Microbial degradation of aliphatic hydrocarbons. Microbial
degradation of organic compounds., pp.89-129.
• Brooijmans, R.J., Pastink, M.I. and Siezen, R.J., 2009. Hydrocarbon‐degrading
bacteria: the oil‐spill clean‐up crew.Microbial biotechnology, 2(6), pp.587-594.
bibliographiques
161
• Binet, P., Portal, J.M. and Leyval, C., 2000. Dissipation of 3–6-ring polycyclic
aromatic hydrocarbons in the rhizosphere of ryegrass. Soil Biology and
Biochemistry, 32(14), pp.2011-2017.
• Bodour, A.A. and Miller-Maier, R.M., 1998. Application of a modified drop-collapse
technique for surfactant quantitation and screening of biosurfactant-producing
microorganisms.Journal of Microbiological Methods, 32(3), pp.273-280.
• Boopathy, R., 2000. Factors limiting bioremediation technologies. Bioresource
technology, 74(1), pp.63-67.
• Boonchan, S., Britz, M.L. and Stanley, G.A., 2000. Degradation and mineralization of
high-molecular-weight polycyclic aromatic hydrocarbons by defined fungal-bacterial
cocultures. Applied and environmental microbiology, 66(3), pp.1007-1019
• Bordoloi, N.K. and Konwar, B.K., 2009. Bacterial biosurfactant in enhancing
solubility and metabolism of petroleum hydrocarbons. Journal of Hazardous
Materials, 170(1), pp.495-505.
• Bossard, I. And Bartha, R., 1984. The fat of petroleum in soil ecosystems. In: Atlas,
R.M. (Ed.), Petroleum Microbiology. Macmillan, New York, pp. 440-445.
• Bouaziz. T., Djerrai.N., 2010. Etude des caractéristiques physicochimiques et
Bactériologiques des eaux de mer et des sédiments dans le port de plaisance de Sidi
Fredj. Mémoire d’ingéniorat. Environnement marin. Alger : ENSSMAL. p.p. 35-39.
• Bouchez, M., Blanchet, D. and Vandecasteele, J.P., 1995. Degradation of polycyclic
aromatic hydrocarbons by pure strains and by defined strain associations: inhibition
phenomena and cometabolism. Applied Microbiology and Biotechnology, 43(1),
pp.156-164.
• Bouchez Naïtali, M., Rakatozafy, H., Marchal, R., Leveau, J.Y. and Vandecasteele,
J.P., 1999. Diversity of bacterial strains degrading hexadecane in relation to the mode
of substrate uptake. Journal of Applied Microbiology, 86(3), pp.421-428.
• Boukir, A., Aries, E., Guiliano, M., Asia, L., Doumenq, P. and Mille, G., 2001.
Subfractionation,
characterization
and
photooxidation
of
crude
oil
resins. Chemosphere, 43(3), pp.279-286.
• Brakstad, O.G. and Lødeng, A.G.G., 2005. Microbial diversity during biodegradation
of crude oil in seawater from the North Sea. Microbial éEcology, 49(1), pp.94-103.
• Britton, L.N., 1984. Microbial degradation of aliphatic hydrocarbons. Microbial
degradation of organic compounds., pp.89-129.
• Brooijmans, R.J., Pastink, M.I. and Siezen, R.J., 2009. Hydrocarbon‐degrading
bacteria: the oil‐spill clean‐up crew.Microbial biotechnology, 2(6), pp.587-594.
