Effects of operational parameters on biofilm formation of mixed bacteria for hydrogen fermentation

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Abstract

Dark fermentation of organic wastes, such as food waste and algae, via mixed hydrogen-producing bacteria (HPB) is considered a sustainable approach for hydrogen production. The biofilm system protects microorganisms from the harmful environment and avoids the excessive loss of bacteria caused by washout, which ensures that the dark fermentation process remains stable. In this study, a downflow anaerobic packed-bed reactor was commissioned to investigate the biofilm formation process of mixed HPB under various operational parameters. Scanning electron microscopy indicated changes in surface morphology during the biofilm formation period. Proteins and polysaccharides in extracellular polymeric substances were identified by confocal laser scanning microscopy to reveal their distribution characteristics. A hydraulic retention time of 0.5 d, a substrate concentration of 15 g/L and an HPB inoculum ratio of 30% were identified as the optimal operational parameters for biofilm formation. Meanwhile, the biofilm dry weight reached 81.2 g/m2, and the extracellular proteins and polysaccharides achieved 1.6 and 5.2 g/m2, respectively. The diversity of bacteria between suspension and biofilm showed significantly different distributions; Clostridiales and Lactobacillales were identified as the dominant orders in the biofilm formation process. The abundances of Clostridiales and Lactobacillales were 15.1% and 56.2% in the biofilm, respectively.

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Mei, J., Chen, H., Liao, Q., Nizami, A. S., Xia, A., Huang, Y., … Zhu, X. (2020). Effects of operational parameters on biofilm formation of mixed bacteria for hydrogen fermentation. Sustainability (Switzerland), 12(21), 1–15. https://doi.org/10.3390/su12218863

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