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Dynamics of hydrogen-producing bacteria in a repeated batch fermentation process using lake sediment as inoculum

机译:以湖泊沉积物为接种物的分批重复发酵过程中产氢细菌的动力学

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摘要

In this study, we evaluated the effectiveness of lake sediment as inoculum for hydrogen production through dark fermentation in a repeated batch process. In addition, we investigated the effect of heat treatment, applied to enrich hydrogen-producing bacteria, on the bacterial composition and metabolism. Denaturing gradient gel electrophoresis and molecular cloning, both performed using the 16S rDNA gene as target gene, were used to monitor the structure of the bacterial community. Hydrogen production and bacterial metabolism were analysed via gas chromatography and high-performance liquid chromatography. Both treated and non-treated inocula were able to produce high amounts of hydrogen. However, statistical analysis showed a clear difference in their bacterial composition and metabolism. The heat treatment favoured the growth of different Clostridia sp., in particular of Clostridium bifermentans, allowing the production of a constant amount of hydrogen over prolonged time. These cultures showed both butyrate and ethanol fermentation types. Absence of heat treatment allowed species belonging to the genera Bacillus, Sporolactobacillus and Massilia to outgrow Clostridia sp. with a reduction in hydrogen production and a significant metabolic change. Our data indicate that lake sediment harbours bacteria that can efficiently produce hydrogen over prolonged fermentation time. Moreover, we could show that the heat treatment stabilizes the bacterial community composition and the hydrogen production.
机译:在这项研究中,我们评估了湖沉积物作为接种物在重复批处理过程中通过黑暗发酵产生氢的有效性。此外,我们研究了用于富集产氢细菌的热处理对细菌组成和代谢的影响。变性梯度凝胶电泳和分子克隆均使用16S rDNA基因作为靶基因进行,用于监测细菌群落的结构。通过气相色谱法和高效液相色谱法分析产氢和细菌代谢。处理过的和未处理过的接种物均能够产生大量的氢气。但是,统计分析表明它们的细菌组成和代谢存在明显差异。热处理有利于不同梭状芽胞杆菌,特别是双发酵梭菌的生长,从而允许在延长的时间内产生恒定量的氢。这些培养物显示了丁酸酯和乙醇发酵类型。缺乏热处理使属于芽孢杆菌属,芽孢杆菌属和马西利亚属的种超过了梭状芽胞杆菌。减少了氢气的产生,并且代谢发生了显着变化。我们的数据表明,湖泊沉积物中含有细菌,可以在延长的发酵时间内有效产生氢。此外,我们可以证明热处理能稳定细菌群落组成和产氢。

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