Construction of an artificial microalgal-bacterial consortium that efficiently degrades crude oil.
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[1] J. M. Park,et al. Synergic degradation of phenanthrene by consortia of newly isolated bacterial strains. , 2009, Journal of biotechnology.
[2] Dang Zhi,et al. Effect of Amino Acids on Degrading Capability of a n-alkanes Degrading Strain GS3C , 2009 .
[3] Z. Dang,et al. Isolation of phenanthrene-degrading bacteria and characterization of phenanthrene metabolites , 2007 .
[4] Z. Dang,et al. A phenanthrene-degrading strain Sphingomonas sp. GY2B isolated from contaminated soils , 2007 .
[5] Benoit Guieysse,et al. Algal-bacterial processes for the treatment of hazardous contaminants: a review. , 2006, Water research.
[6] J. Grimalt,et al. Microcosm experiments of oil degradation by microbial mats. , 2006, The Science of the total environment.
[7] J. Oudot,et al. Role of cyanobacteria in the biodegradation of crude oil by a tropical cyanobacterial mat. , 2006, Chemosphere.
[8] B. Mattiasson,et al. Combined carbon and nitrogen removal from acetonitrile using algal–bacterial bioreactors , 2005, Applied Microbiology and Biotechnology.
[9] J. Grimalt,et al. Changes in the composition of polar and apolar crude oil fractions under the action of Microcoleus consortia , 2004, Applied Microbiology and Biotechnology.
[10] R. Morais,et al. Biodegradation of p-chlorophenol by a microalgae consortium. , 2004, Water research.
[11] B. Mattiasson,et al. Phenanthrene biodegradation by an algal-bacterial consortium in two-phase partitioning bioreactors , 2003, Applied Microbiology and Biotechnology.
[12] I. Banat,et al. Towards efficient crude oil degradation by a mixed bacterial consortium. , 2002, Bioresource technology.
[13] Y. Bashan,et al. Increased pigment and lipid content, lipid variety, and cell and population size of the microalgae Chlorella spp. when co-immobilized in alginate beads with the microalgae-growth-promoting bacterium Azospirillum brasilense. , 2002, Canadian journal of microbiology.
[14] J. Aislabie,et al. Characterization of Sphingomonas sp. Ant 17, an Aromatic Hydrocarbon-Degrading Bacterium Isolated from Antarctic Soil , 2002, Microbial Ecology.
[15] Brian A. Whitton,et al. The Ecology of Cyanobacteria , 2002, Springer Netherlands.
[16] S. Radwan,et al. Oil Pollution and Cyanobacteria , 2000 .
[17] E. Safonova,et al. The interaction of algae with alcanotrophic bacteria in black oil decomposition , 1999 .
[18] E. Benson,et al. In vitro culture and conservation of microalgae: Applications for aquaculture, biotechnology and environmental research , 1999, In Vitro Cellular & Developmental Biology - Plant.
[19] K. Semple,et al. Biodegradation of aromatic compounds by microalgae , 1999 .
[20] P. Chapman,et al. Actions of a versatile fluorene-degrading bacterial isolate on polycyclic aromatic compounds , 1995, Applied and environmental microbiology.
[21] J. Mouget,et al. Algal growth enhancement by bacteria: Is consumption of photosynthetic oxygen involved? , 1995 .
[22] M. Gealt,et al. Biodegradation and Bioremediation. , 1996 .
[23] J. Lawrence,et al. The role of interactions, sessile growth and nutrient amendments on the degradative efficiency of a microbial consortium. , 1994, Canadian journal of microbiology.
[24] E. Harner,et al. Effectiveness of bioremediation for the Exxon Valdez oil spill , 1994, Nature.
[25] M. Luther,et al. Some naphthalenesulfonic acids as sulfur sources for the green microalga , 1987 .
[26] R. Bartha,et al. The microbiology of aquatic oil spills. , 1977, Advances in applied microbiology.