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首页> 外文期刊>Environmental progress & sustainable energy >Dark Fermentation of Hydrogen from Waste Glycerol Using Hypertliermophilic Eubacterium Thermotoga neapolitana
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Dark Fermentation of Hydrogen from Waste Glycerol Using Hypertliermophilic Eubacterium Thermotoga neapolitana

机译:使用超嗜温性嗜热嗜热杆菌(Eubacterium Thermotoga neapolitana)对甘油中的氢进行暗发酵

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摘要

Waste glycerol from bio-diesel manufacturing is currently held to be a new, attractive, and abundant resource for future bio-fuel. Bio-hydrogen production via the fermentation route was examined for the first time from pure glycerol and discharged waste glycerol as the sole substrate by the hyperthermophilic eubacterium Thermotoga neapolitana. The bacterium, directly fermenting pure glycerol and crude waste glycerol in the medium, showed respective retarded growth and low H_2 production 447 ± 22 mL H_2 L~(-1) and 437 ± 21 mL H2 L~(-1). Attempting to improve the growth and H2 production, small amount (1.5 g L~(-1)) of itaconic acid was added into the culture medium. In this case, H_2 production from fermentation was approximately 620 ± 30 mL H_2 L~(-1) for both pure glycerol and pre-treated waste glycerol as main substrate, an increase of 36.6% compared with cultures grown without itaconic acid, respectively. Further optimization of the glycerol concentration and culture conditions revealed enhancements in growth, H2 production, and glycerol utilization. The H2 fermentation from waste glycerol is of potential importance as wastes from bio-diesel processes can be utilized to produce bio-hydrogen.
机译:目前,生物柴油生产中的废甘油被认为是未来生物燃料的一种新颖,有吸引力且丰富的资源。首次通过纯高温甘油和排放的废甘油作为唯一底物,通过超嗜热真细菌Thermotoga neapolitana检查了发酵路线中生物氢的产生。该细菌在培养基中直接发酵纯甘油和粗废甘油,分别显示出生长受阻和低H_2产生447±22 mL H_2 L〜(-1)和437±21 mL H2 L〜(-1)。为了改善生长和H 2产生,向培养基中加入少量(1.5 g L〜(-1))衣康酸。在这种情况下,以纯甘油和预处理的废甘油为主要底物,发酵产生的H_2约为620±30 mL H_2 L〜(-1),与无衣康酸的培养物相比分别增加了36.6%。甘油浓度和培养条件的进一步优化揭示了生长,H 2产生和甘油利用率的提高。废甘油中的H2发酵具有潜在的重要性,因为来自生物柴油工艺的废物可用于生产生物氢。

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