ECOP-19

Modeling photo-fermentative bacteria evolution for H2 production in a bio-reactor

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VincenzoLuongo

University of Naples Federico II
"Modeling photo-fermentative bacteria evolution for H2 production in a bio-reactor"
We propose a mathematical model describing the dynamics of photo fermentative bacteria leading to hydrogen production and polyhydroxybutyrate accumulation in an engineered environment. The model is derived from mass balance principles and consists of a system of differential equations describing the biomass growth, the substrate degradation and conversion into hydrogen and other catabolites, such as intracellular polyhydroxybutyrate, a precursor for bioplastics. The model accounts for crucial inhibiting phenomena and catabolic interactions affecting the evolution of the process. The study of the model has been performed also in terms of calibration with real experimental data related to specific photo-fermentative species, and it is supported by a sensitivity analysis study. The effective application of photo-fermentation for the concomitant hydrogen production and polyhydroxybutyrate accumulation was investigated.
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Annual Meeting for the Society for Mathematical Biology, 2025.