75
• Atlas, R. M. (1991). Microbial hydrocarbon degradation—bioremediation of oil spills. Journal
of Chemical Technology & Biotechnology, 52(2), p.p. 149-156.
• Awasthi, N., Kumar, A., Makkar, R., & Cameotra, S. S. (1999). Biodegradation of
soil‐applied endosulfan in the presence of a biosurfactant. Journal of Environmental Science &
Health Part B, 34(5), p.p. 793-803.
• Azubuike, C. C., Chikere, C. B., & Okpokwasili, G. C. (2016). Bioremediation techniques–
classification based on site of application: principles, advantages, limitations and prospects.
World Journal of Microbiology and Biotechnology, 32(11), p.p. 1-18.
• Bakke, R., Trulear, M. G., Robinson, J. A., & Characklis, W. G. (1984). Activity of
Pseudomonas aeruginosa in biofilms: steady state. Biotechnology and bioengineering, 26(12),
p.p. 1418-1424.
• Banat, I. M., Makkar, R. S., & Cameotra, S. S. (2000). Potential commercial applications of
microbial surfactants. Applied microbiology and biotechnology, 53(5), p.p. 495-508.
• Batista, S. B., Mounteer, A. H., Amorim, F. R., & Totola, M. R. (2006). Isolation and
characterization of biosurfactant/bioemulsifier-producing bacteria from petroleum contaminated
sites. Bioresource technology, 97(6), p.p. 868-875.
• BEKENNICHE, N. (2014). Caractérisation des activités de biodégradation des hydrocarbures
par différents genres microbiens isolés de sites contaminés. Mémoire de magister. Biologie
moléculaires et génétique des microorganismes. Oran : université d’Oran, faculté des sciences
de la nature et e la vie. p. 129
• Bertrand, J. C., Bianchi, M., Al Mallah, M., Acquaviva, M., & Mille, G. (1993).
Hydrocarbon biodegradation and hydrocarbonoclastic bacterial communities composition
grown in seawater as a function of sodium chloride concentration. Journal of experimental
marine biology and ecology, 168(1), p.p. 125-138.
• 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), p.p. 273-280.
• Boudoune, M, Boualem Y. (2018). Étude de la production des biosurfactants par des bactéries
hydrocarbonoclastes. Mémoire de master. Biologie moléculaire des microorganismes.
Constantine : université des frères Mentouri, faculté des sciences de la nature et de la vie. p. 63
• Cameotra, S. S., & Makkar, R. S. (2004). Recent applications of biosurfactants as biological
and immunological molecules. Current opinion in microbiology, 7(3), p.p. 262-266.
• Atlas, R. M. (1991). Microbial hydrocarbon degradation—bioremediation of oil spills. Journal
of Chemical Technology & Biotechnology, 52(2), p.p. 149-156.
• Awasthi, N., Kumar, A., Makkar, R., & Cameotra, S. S. (1999). Biodegradation of
soil‐applied endosulfan in the presence of a biosurfactant. Journal of Environmental Science &
Health Part B, 34(5), p.p. 793-803.
• Azubuike, C. C., Chikere, C. B., & Okpokwasili, G. C. (2016). Bioremediation techniques–
classification based on site of application: principles, advantages, limitations and prospects.
World Journal of Microbiology and Biotechnology, 32(11), p.p. 1-18.
• Bakke, R., Trulear, M. G., Robinson, J. A., & Characklis, W. G. (1984). Activity of
Pseudomonas aeruginosa in biofilms: steady state. Biotechnology and bioengineering, 26(12),
p.p. 1418-1424.
• Banat, I. M., Makkar, R. S., & Cameotra, S. S. (2000). Potential commercial applications of
microbial surfactants. Applied microbiology and biotechnology, 53(5), p.p. 495-508.
• Batista, S. B., Mounteer, A. H., Amorim, F. R., & Totola, M. R. (2006). Isolation and
characterization of biosurfactant/bioemulsifier-producing bacteria from petroleum contaminated
sites. Bioresource technology, 97(6), p.p. 868-875.
• BEKENNICHE, N. (2014). Caractérisation des activités de biodégradation des hydrocarbures
par différents genres microbiens isolés de sites contaminés. Mémoire de magister. Biologie
moléculaires et génétique des microorganismes. Oran : université d’Oran, faculté des sciences
de la nature et e la vie. p. 129
• Bertrand, J. C., Bianchi, M., Al Mallah, M., Acquaviva, M., & Mille, G. (1993).
Hydrocarbon biodegradation and hydrocarbonoclastic bacterial communities composition
grown in seawater as a function of sodium chloride concentration. Journal of experimental
marine biology and ecology, 168(1), p.p. 125-138.
• 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), p.p. 273-280.
• Boudoune, M, Boualem Y. (2018). Étude de la production des biosurfactants par des bactéries
hydrocarbonoclastes. Mémoire de master. Biologie moléculaire des microorganismes.
Constantine : université des frères Mentouri, faculté des sciences de la nature et de la vie. p. 63
• Cameotra, S. S., & Makkar, R. S. (2004). Recent applications of biosurfactants as biological
and immunological molecules. Current opinion in microbiology, 7(3), p.p. 262-266.
