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Energetic Analysis Of Pseudomonas Fluorescence Growth On Phenol In Aerobic Chemostat Culture

Agarry Samuel Enahoro, Solomon Bamidele Ogbe


Bioenergetic analysis of the growth of Pseudomonas fluorescence on phenol chemostat culture was carried out. The data were checked for consistency using carbon and available electron balances. Similar estimates were obtained using Pirt’s model based on Monod approach and a modified model based on substrate consumption rate being rate limiting. Coupled with the covariate adjustment estimation technique, the best estimates were the maximum likelihood estimates (MLE) based on the complete data. For the aerobic growth of P.fluorescence growth on phenol, max= 0.262 and me=-0.017hr-1. From the 95 confidence intervals, a maximum of about 2527 of the energy contained in phenol is incorporated into the P.fluorescence biomass. While, the balance (7375) is evolved as heat with little or no energy needed for the maintenance of the respective organisms.


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