首页> 外文期刊>International journal of hydrogen energy >Phototrophic hydrogen production from glucose by pure and co-cultures of Clostridium butyricum and Rhodobacter sphaeroides
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Phototrophic hydrogen production from glucose by pure and co-cultures of Clostridium butyricum and Rhodobacter sphaeroides

机译:酪酸梭状芽孢杆菌和球形红球菌纯培养物和共培养物从葡萄糖中产生光养氢

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Phototrophic hydrogen production from glucose by pure and co-cultures of Clostridium butyricum and Rhodobacter sphaeroides was studied in batch experiments. Results showed that in all batches hydrogen was produced after a lag phase of about 10h; pure culture of R. sphaeroides produced hydrogen at rates substantially lower than C. butyricum. In co-culture systems, R. sphaeroides even with cell populations 5.9 times higher still could not compete with C. butyricum for glucose. In co-culture systems, R. sphaeroides syntrophically interacted with C. butyricum, using the acetate and butyrate produced by the latter as substrate for hydrogen production. Hydrogen production was ceased in all batches when the pH was lowered to the level of pH 6.5, resulting from the accumulation of fatty acids. It was also demonstrated in this study that fluorescence in situ hybridization (FISH) was an effective means for the quantification of the relative abundance of individual bacteria in a co-culture system.
机译:在批处理实验中研究了通过葡萄糖酸丁酸梭菌和球形红细菌的纯培养物和共培养物从葡萄糖产生的光养氢。结果表明,在所有批次中,在约10h的滞后阶段后均产生了氢气。球形红球菌的纯培养物产生的氢的速率大大低于丁酸梭菌。在共培养系统中,即使球菌数量高5.9倍,球形红球菌仍无法与丁酸梭菌竞争葡萄糖。在共培养系统中,球形红球菌与丁酸梭菌同养相互作用,使用后者产生的乙酸盐和丁酸盐作为制氢的底物。当pH降低至pH 6.5时,由于脂肪酸的积累,所有批次的制氢都停止了。在这项研究中还证明,荧光原位杂交(FISH)是定量共培养系统中单个细菌相对丰度的有效手段。

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