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Biohydrogen production from glycerol using Thermotoga spp

机译:使用Thermotoga spp从甘油生产生物氢

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Given the highly reduced state of carbon in glycerol and its availability as a substantial byproduct of biodiesel production, glycerol is of special interest for sustainable biofuel production. Glycerol was used as a substrate for biohydrogen production using the hyperthermophilic bacterium, Thermotoga mahtima and Thermotoga neapolitana. Both species metabolized glycerol to mainly acetate and hydrogen. At glycerol concentrations of 2.5 g/L, hydrogen was produced with a yield of 2.75 and 2.65 mol H_2/mol glycerol consumed by T. maritima and 7! neapolitana respectively. Additionally, the effect of initial pH (ranging between pH 5.0-8.5) and yeast extract concentrations (0.5, 1, 2, 4 g/L) on glycerol fermentation by T. neapolitana was investigated in batch systems. An initial pH value of around 7 was optimal for hydrogen production by T. neapolitana. Lower concentration of yeast extract resulted in a lower H_2 production, however increasing the concentration from 2 to 4 g/L did not affect H_2 production.
机译:鉴于甘油中碳的高度还原状态及其作为生物柴油生产的重要副产品的可用性,甘油对于可持续生物燃料生产具有特殊意义。甘油被用作使用超嗜热细菌,嗜热栖​​热菌和那不勒斯栖热菌生产生物氢的底物。两种物质都将甘油代谢为乙酸和氢。在甘油浓度为2.5 g / L的情况下,产生的氢气产率为2.75和2.65 mol H_2 / mol甘油三糖和7! neapolitana。另外,在分批系统中研究了初始pH(范围在pH 5.0-8.5之间)和酵母提取物浓度(0.5、1、2、4 g / L)对T. neapolitana发酵甘油的影响。最初的pH值约为7,这对于T. neapolitana生产氢气是最佳的。较低浓度的酵母提取物导致较低的H_2产生,但是将浓度从2 g / L增加到4 g / L不会影响H_2的产生。

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