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Hydrogen gas production from waste paper by sequential dark fermentation and electrohydrolysis

机译:通过顺序暗发酵和电水解从废纸生产氢气

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Waste paper was evaluated for hydrogen gas production by sequential dark fermentation and electrohydrolysis. Acid hydrolysed waste paper towel hydrolysate was first subjected to dark fermentation to determine the most suitable initial biomass concentration. The effects of initial biomass concentration was investigated at constant substrate concentration by varying the biomass concentration between 0 and 6 g/L and the most suitable hydrogen production was obtained at 0.10 g/L. Then effects of initial substrate concentration was investigated at 0.10 g/L initial biomass concentration by varying the glucose concentration between 5 and 40 g/L. 21.33 g glucose/L resulted in the highest hydrogen formation yield and rate in the second set of experiments. When the effluent of dark fermentation operated at optimum initial biomass and substrate concentration was subjected to electrohydrolysis the overall hydrogen production of the sequential process was 30.12 mL H-2/mL. (C) 2015 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过顺序暗发酵和电水解评估废纸的氢气产生量。首先将酸水解的废纸巾水解产物进行黑暗发酵,以确定最合适的初始生物质浓度。在恒定的底物浓度下,通过在0至6 g / L之间改变生物质浓度来研究初始生物质浓度的影响,并以0.10 g / L获得最合适的制氢量。然后,通过在5至40 g / L之间改变葡萄糖浓度,在0.10 g / L初始生物质浓度下研究初始底物浓度的影响。在第二组实验中,21.33 g葡萄糖/ L导致最高的氢形成产率和速率。当黑暗发酵的流出物在最佳初始生物量和底物浓度下进行电水解时,顺序过程的总产氢量为30.12 mL H-2 / mL。 (C)2015 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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