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Hydrogen production profiles using furans in microbial electrolysis cells
Authors:Tunc Catal  Tansu Gover  Bugra Yaman  Jessica Droguetti  Kaan Yilancioglu
Institution:1.Department of Molecular Biology and Genetics,Uskudar University,Istanbul,Turkey;2.Biotechnology Application and Research Center,Uskudar University,Istanbul,Turkey;3.Department of Bioengineering,Uskudar University,Istanbul,Turkey
Abstract:Microbial electrochemical cells including microbial fuel cells (MFCs) and microbial electrolysis cells (MECs) are novel biotechnological tools that can convert organic substances in wastewater or biomass into electricity or hydrogen. Electroactive microbial biofilms used in this technology have ability to transfer electrons from organic compounds to anodes. Evaluation of biofilm formation on anode is crucial for enhancing our understanding of hydrogen generation in terms of substrate utilization by microorganisms. In this study, furfural and hydroxymethylfurfural (HMF) were analyzed for hydrogen generation using single chamber membrane-free MECs (17 mL), and anode biofilms were also examined. MECs were inoculated with mixed bacterial culture enriched using chloroethane sulphonate. Hydrogen was succesfully produced in the presence of HMF, but not furfural. MECs generated similar current densities (5.9 and 6 mA/cm2 furfural and HMF, respectively). Biofilm samples obtained on the 24th and 40th day of cultivation using aromatic compounds were evaluated by using epi-fluorescent microscope. Our results show a correlation between biofilm density and hydrogen generation in single chamber MECs.
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