Watanabe Osamu, Isoda Satoru
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.
J Environ Sci (China). 2013 Dec;25 Suppl 1:S155-60. doi: 10.1016/S1001-0742(14)60647-1.
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.
我们研究了用于食物垃圾分解的好氧生物反应器中反应速率方程与热能平衡的综合模型,结果表明该综合模型具有实时监测微生物活性、分析生物降解动力学和热流体动力学特性的能力。另一方面,关于微生物代谢,已知在能量和电子流方面使分解代谢反应与合成代谢反应保持平衡可提供化学计量代谢反应,并能够估算微生物生物量产量(化学计量反应模型)。我们研究了一种通过将综合模型与化学计量反应模型相结合来估算食物垃圾分解过程中生物反应器内实时微生物生物量产量的方法。结果发现,利用该组合模型,可通过生物反应器的运行数据(输入食物垃圾的重量和床层温度)来评估分解过程中生物反应器内微生物生物量产量的时间变化过程。该组合模型不仅可应用于管理食物垃圾分解,以控制系统运行以保持微生物活性稳定,还可用于在最佳条件下生产堆肥等增值产品。