Références
bibliographiques
163
• Cerniglia, C.E., 1984. Microbial transformation of aromatic hydrocarbons.
• Cerniglia, C.E., 1993. Biodegradation of polycyclic aromatic hydrocarbons. Current
opinion in biotechnology, 4(3), pp.331-338.
• Chaillan, F., Le Flèche, A., Bury, E., Phantavong, Y.H., Grimont, P., Saliot, A. and
Oudot, J., 2004. Identification and biodegradation potential of tropical aerobic
hydrocarbon-degrading microorganisms. Research in microbiology, 155(7), pp.587595.
• Chandra, S., Sharma, R., Singh, K. and Sharma, A., 2013. Application of
bioremediation technology in the environment contaminated with petroleum
hydrocarbon. Annals of microbiology, 63(2), pp.417-431.
• Caulet J., 1972. Les sédiments organogènes du précontinent algérien. Mémoire du
muséum national d’histoires naturelles, nouvelle série, 289p.
• Chen, C., Liu, Q., Liu, C. and Yu, J., 2017. Effect of different enrichment strategies on
microbial community structure in petroleum-contaminated marine sediment in Dalian,
China.Marine pollution bulletin, 117(1-2), pp.274-282.
• Chikere, C.B., Chikere, B.O. and Okpokwasili, G.C., 2012. Bioreactor-based
bioremediation of hydrocarbon-polluted Niger Delta marine sediment, Nigeria. 3
Biotech, 2(1), pp.53-66.
• Chikhi, S., Ferradji, F.Z., Badis, A. and Bouzid, B., 2016. Microbial removal of
xylene using free and immobilized Streptomyces sp. AB1: bioreactors
application. Desalination and Water Treatment, 57(13), pp.6148-6156.
• China, B., Pirson, V. and Mainil, J., 1996. Typing of bovine attaching and effacing
Escherichia coli by multiplex in vitro amplification of virulence-associated
genes. Applied and Environmental Microbiology, 62(9), pp.3462-3465.
• Chouari, R., Le Paslier, D., Daegelen, P., Ginestet, P., Weissenbach, J. and Sghir, A.,
2003. Molecular evidence for novel planctomycete diversity in a municipal
wastewater treatment plant. Appl. Environ. Microbiol., 69(12), pp.7354-7363.
• Chroma, L., Mackova, M., Kucerova, P., In Der Wiesche, C., Burkhard, J. and Macek,
T., 2002. Enzymes in plant metabolism of PCBs and PAHs. Acta
biotechnologica, 22(1‐2), pp.35-41.
• Churchill, P.F., Dudley, R.J. and Churchill, S.A., 1995. Surfactant-enhanced
bioremediation. Waste management,15(5-6), pp.371-377.
• Clarridge, J.E., 2004. Impact of 16S rRNA gene sequence analysis for identification of
bacteria on clinical microbiology and infectious diseases. Clinical microbiology
reviews, 17(4), pp.840-862.
bibliographiques
163
• Cerniglia, C.E., 1984. Microbial transformation of aromatic hydrocarbons.
• Cerniglia, C.E., 1993. Biodegradation of polycyclic aromatic hydrocarbons. Current
opinion in biotechnology, 4(3), pp.331-338.
• Chaillan, F., Le Flèche, A., Bury, E., Phantavong, Y.H., Grimont, P., Saliot, A. and
Oudot, J., 2004. Identification and biodegradation potential of tropical aerobic
hydrocarbon-degrading microorganisms. Research in microbiology, 155(7), pp.587595.
• Chandra, S., Sharma, R., Singh, K. and Sharma, A., 2013. Application of
bioremediation technology in the environment contaminated with petroleum
hydrocarbon. Annals of microbiology, 63(2), pp.417-431.
• Caulet J., 1972. Les sédiments organogènes du précontinent algérien. Mémoire du
muséum national d’histoires naturelles, nouvelle série, 289p.
• Chen, C., Liu, Q., Liu, C. and Yu, J., 2017. Effect of different enrichment strategies on
microbial community structure in petroleum-contaminated marine sediment in Dalian,
China.Marine pollution bulletin, 117(1-2), pp.274-282.
• Chikere, C.B., Chikere, B.O. and Okpokwasili, G.C., 2012. Bioreactor-based
bioremediation of hydrocarbon-polluted Niger Delta marine sediment, Nigeria. 3
Biotech, 2(1), pp.53-66.
• Chikhi, S., Ferradji, F.Z., Badis, A. and Bouzid, B., 2016. Microbial removal of
xylene using free and immobilized Streptomyces sp. AB1: bioreactors
application. Desalination and Water Treatment, 57(13), pp.6148-6156.
• China, B., Pirson, V. and Mainil, J., 1996. Typing of bovine attaching and effacing
Escherichia coli by multiplex in vitro amplification of virulence-associated
genes. Applied and Environmental Microbiology, 62(9), pp.3462-3465.
• Chouari, R., Le Paslier, D., Daegelen, P., Ginestet, P., Weissenbach, J. and Sghir, A.,
2003. Molecular evidence for novel planctomycete diversity in a municipal
wastewater treatment plant. Appl. Environ. Microbiol., 69(12), pp.7354-7363.
• Chroma, L., Mackova, M., Kucerova, P., In Der Wiesche, C., Burkhard, J. and Macek,
T., 2002. Enzymes in plant metabolism of PCBs and PAHs. Acta
biotechnologica, 22(1‐2), pp.35-41.
• Churchill, P.F., Dudley, R.J. and Churchill, S.A., 1995. Surfactant-enhanced
bioremediation. Waste management,15(5-6), pp.371-377.
• Clarridge, J.E., 2004. Impact of 16S rRNA gene sequence analysis for identification of
bacteria on clinical microbiology and infectious diseases. Clinical microbiology
reviews, 17(4), pp.840-862.
