Mathematical modeling of dark fermentation of macroalgae for hydrogen and volatile fatty acids production

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초록

A mathematical model of H2 and volatile fatty acids (VFAs) production via dark fermentation of particulate macroalgal substrates is presented. Carbohydrates, proteins, and lipids in the particulate substrate are convert to H2, CO2, and VFAs via disintegration/solubilization, hydrolysis, and acidogenesis. Hydrolysis is modeled using a combined surface-limiting model combined with a first-order reaction model to describe both microbial hydrolysis and physical solubilization. Experimental and published data obtained using Saccharina japonica as the substrate are used to calibrate and validate the model. The model prediction featured a good accuracy, with high R2 of 0.912 – 0.976 for all end products. The physical solubilisation accounts for 28.4% of the total hydrolysis. By the model simulation, a H2 production of 103.2 mL/g-VS and VFA production of 0.41 g/g-VS are found at optimum conditions of 20 g-TS/L (13.2 g-VS/L) of substrate concentration and 7.0 of initial pH. © 2022 Elsevier Ltd

키워드

Dark fermentationHydrogenModelingSaccharina japonicaVolatile fatty acidsLAMINARIA-JAPONICABIOHYDROGEN PRODUCTIONMARINE MACROALGAEWASTEOPTIMIZATIONADM1
제목
Mathematical modeling of dark fermentation of macroalgae for hydrogen and volatile fatty acids production
저자
Kim, BohyeonJeong, JihoonKim, JihyeonYoon, Hyon HeePhan Khanh Thinh NguyenKim, Jongsung
DOI
10.1016/j.biortech.2022.127193
발행일
2022-06
유형
Article
저널명
Bioresource Technology
354