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Bacterial consortium was able to decolorize 10 different azo dyes.
Acclimatized aerobic bacterial consortium was used for the biodegradation study.
Berendsen, R. L. et al. Disease-induced assemblage of a plant-beneficial bacterial consortium.
An artificial microalgal bacterial consortium (AMBC) constituting these four bacteria and ACV showed that the bacterial consortium exerted a statistically significant (P < 0.05) growth enhancement on ACV.
The bacterial consortium comprised of 3 novel bacterial strains with different genetic atrazine degrading potential.
The Special Bacterial Consortium resulted from a mixture of BS 1 15 and BC 1 3 following the steps of the classical enrichment culture method.
The changes could depend on the heavy crude oil, bacterial consortium, culture medium, incubation time and temperature; as well as the implementation of thermal treatments.
FTIR (Fourier transform infrared) and UV vis analysis confirmed the biodegradation of Congo Red by the bacterial consortium.
Under optimal conditions, the bacterial consortium was able to decolorize completely (>84%) the dye within 48 h.
Under optimized conditions the bacterial consortium was able to decolorize the dye almost completely (>91%) within 12 h.
This study demonstrates that ecologically engineered bacterial consortium could enhance microalgal biomass and lipid productivities through carbon exchange.
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