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Sequential dark and photo-fermentative hydrogen gas production from agar embedded molasses

机译:琼脂嵌入糖蜜的顺序暗和光发酵氢气生产

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In this study, molasses and dark fermentation effluent were solidified using agar and used for H-2 production by dark and photo-fermentation. During dark fermentation, the solid jelly form of molasses enabled a slow release of the substrate to the liquid broth hindering fast pH decreases. The initial total sugar concentration, H-2 yield, H-2 rate and lag phase in dark fermentation were 36.2 g/L, 226.24 mL H-2/g TS, 29.85 mL H-2/h and 4.37 h, respectively. Photo-fermentation of 5.77 g TVFA/L embedded dark fermentation effluent did not lead to efficient H-2 production. The best performance in photo-fermentation was obtained with 1.55 g TVFA/L containing diluted dark fermentation effluent. The H-2 yield, H-2 rate and lag phase in photo-fermentation were 870.26 mL H-2/g TVFA, 0.913 mL H-2/h and 54.07 h, respectively. Embedding concentrated substrate using agar can enhance H-2 production performance but only if the release of the substrate does not exceed inhibitory levels and if the rate of diffusion is tolerable for microbial activity. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在该研究中,使用琼脂固化糖蜜和深色发酵污水,并通过黑暗和光发酵用于H-2产生。在深色发酵期间,糖蜜的固体果冻形式使得基材的缓慢释放到液体肉汤,妨碍快速pH降低。初始总糖浓度,H-2产量,H-2速率和滞后阶段分别为36.2g / L,226.24ml H-2 / g Ts,29.85ml H-2 / h和4.37 h。照片发酵为5.77克TVFA / L嵌入式黑暗发酵污水不会导致高效的H-2生产。使用1.55g TVFA / L含有稀释的深色发酵流出物,获得了光发酵的最佳性能。光发酵中的H-2产率,H-2速率和滞后阶段分别为870.26ml H-2 / g TVFA,0.913ml H-2 / h和54.07小时。使用琼脂嵌入浓缩底物可以增强H-2的生产性能,但当如果基材的释放不超过抑制水平,并且如果扩散速率可耐受微生物活性。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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