81
Milinkovitch, T., (2011). Stratégie de lutte contre les catastrophes pétrolières et risque
environnemental associé : évaluation de la toxicité d'un dispersant en milieu côtier chez
Liza sp.France: Université de La Rochelle,p.217.
Militon, C., (2007). Caractérisation des communautés procaryotiques impliquées dans la
bioremédiation d’un sol pollué par des hydrocarbures et développement d’outils
d’analyse à haut débit. Thèse de doctorat. Génomique et écologie microbienne. France:
université Blaise Pascal,p. 441.
Miyasaka, T., Asami, H.,Watanabe, K.,( 2006). Impacts of bioremediation schemes on
bacterial
population
in
naphthalene-contaminated
marine
sediments.
Biodegradation,17(3), p.p.227-235.
Mnif, S., Chamkha, M., Labat, M., Sayadi, S. (2011). Simultaneous hydrocarbon
biodegradation and biosurfactant production by oilfield-selected bacteria. Journal of
applied microbiology, 111(3), p.p.525-536.
Morikawa M., Daido H., Takao T., Satoru M., Shimonishi Y., Imanaka T., (1993). A new
lipopeptide biosurfactant produced by Arthrobacter sp. strain MIS38. Journal of
Bacteriology, vol, 175, p.p. 6459-6466.
M’rassi, A.G., Bensalah, F., Gury, J.,Duran, R., (2014). Isolation and characterization of
different bacterial strains for bioremediation of n-alkanes and polycyclic aromatic
hydrocarbons. Environmental Science and Pollution Research, 22(20), p.p.1533215346.
Mulligan, C.N.(2005). Environmental applications for biosurfactants. Environmental
pollution, 133(2), p.p.183-198.
N
Neu T.R., (1996). ―Significance of Bacterial Surface-active Compounds in Interaction of
Bacteria with Interfaces.‖ Microbiological Reviews 60 (1),p.p.151–166.
Nikitha, T., Satyaprakash, M., Vani, S. S., Sadhana, B., Padal, S. B., (2017). A review on
polycyclic aromatic hydrocarbons: Their transport, fate and biodegradation in the
environment. Int. J. Curr. Microbiol. Appl. Sci, 6(4), p.p. 1627-1639.
Nikolopoulou, M.,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), p.p.802-807.
Milinkovitch, T., (2011). Stratégie de lutte contre les catastrophes pétrolières et risque
environnemental associé : évaluation de la toxicité d'un dispersant en milieu côtier chez
Liza sp.France: Université de La Rochelle,p.217.
Militon, C., (2007). Caractérisation des communautés procaryotiques impliquées dans la
bioremédiation d’un sol pollué par des hydrocarbures et développement d’outils
d’analyse à haut débit. Thèse de doctorat. Génomique et écologie microbienne. France:
université Blaise Pascal,p. 441.
Miyasaka, T., Asami, H.,Watanabe, K.,( 2006). Impacts of bioremediation schemes on
bacterial
population
in
naphthalene-contaminated
marine
sediments.
Biodegradation,17(3), p.p.227-235.
Mnif, S., Chamkha, M., Labat, M., Sayadi, S. (2011). Simultaneous hydrocarbon
biodegradation and biosurfactant production by oilfield-selected bacteria. Journal of
applied microbiology, 111(3), p.p.525-536.
Morikawa M., Daido H., Takao T., Satoru M., Shimonishi Y., Imanaka T., (1993). A new
lipopeptide biosurfactant produced by Arthrobacter sp. strain MIS38. Journal of
Bacteriology, vol, 175, p.p. 6459-6466.
M’rassi, A.G., Bensalah, F., Gury, J.,Duran, R., (2014). Isolation and characterization of
different bacterial strains for bioremediation of n-alkanes and polycyclic aromatic
hydrocarbons. Environmental Science and Pollution Research, 22(20), p.p.1533215346.
Mulligan, C.N.(2005). Environmental applications for biosurfactants. Environmental
pollution, 133(2), p.p.183-198.
N
Neu T.R., (1996). ―Significance of Bacterial Surface-active Compounds in Interaction of
Bacteria with Interfaces.‖ Microbiological Reviews 60 (1),p.p.151–166.
Nikitha, T., Satyaprakash, M., Vani, S. S., Sadhana, B., Padal, S. B., (2017). A review on
polycyclic aromatic hydrocarbons: Their transport, fate and biodegradation in the
environment. Int. J. Curr. Microbiol. Appl. Sci, 6(4), p.p. 1627-1639.
Nikolopoulou, M.,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), p.p.802-807.
