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Quantitative analysis of microbial biomass yield in aerobic bioreactor
Authors:Osamu Watanabe and Satoru Isoda
Institution:EcoInformatics Association, 1-24-2 Sumiredai, Nishinomiya, Hyogo 651-1432, Japan;EcoInformatics Association, 1-24-2 Sumiredai, Nishinomiya, Hyogo 651-1432, Japan;Advanced Science Research Laboratory, Saitama Institute of Technology, 1690 Fusaiji, Hukaya, Saitama 369-0293, Japan
Abstract:We have studied the integrated model of reaction rate equations with thermal energy balance in aerobic bioreactor for food waste decomposition and showed that the integrated model has the capability both of monitoring microbial activity in real time and of analyzing biodegradation kinetics and thermal-hydrodynamic properties. On the other hand, concerning microbial metabolism, it was known that balancing catabolic reactions with anabolic reactions in terms of energy and electron flow provides stoichiometric metabolic reactions and enables the estimation of microbial biomass yield (stoichiometric reaction model). We have studied a method for estimating real-time microbial biomass yield in the bioreactor during food waste decomposition by combining the integrated model with the stoichiometric reaction model. As a result, it was found that the time course of microbial biomass yield in the bioreactor during decomposition can be evaluated using the operational data of the bioreactor (weight of input food waste and bed temperature) by the combined model. The combined model can be applied to manage a food waste decomposition not only for controlling system operation to keep microbial activity stable, but also for producing value-added products such as compost on optimum condition.
Keywords:food waste  compost  biomass yield  bioenergetics  reaction rate  aerobic biodegradation  modeling  bioreactor
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