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Bioprospecting Thermophilic Microorganisms from Icelandic Hot Springs for Hydrogen and Ethanol Production

机译:来自冰岛温泉的嗜热微生物的生物勘探,用于生产氢气和乙醇

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Fermentations can be used to produce sustainable energy carriers, such as hydrogen and ethanol (EtOH), from biomass or organic waste materials. The aim of this research was to prospect efficient H_2- and EtOH-producing thermophilic microorganisms derived from hot spring environments in Iceland. Hydrogen- and EtOH-producing enrichment cultures were obtained from various hot spring samples over a temperature range of 50-78 ℃. The temperature dependencies for the most promising enrichments were determined with a temperature-gradient incubator. One of the enrichments (33HL) produced 2.10 mol of H_2/mol of glucose at 59 ℃. Another enrichment (9HG), dominated by bacteria closely affiliated with Thermoanaerobacter thermo-hydrosulfuricus, produced 0.68 mol of H_2/mol of glucose, and 1.21 mol of EtOH/mol of glucose at 78 ℃. Hydrogen and EtOH production by 9HG was characterized further in a continuous-flow bioreactor at 74 ℃. The highest H_2 and EtOH yields of 9HG were obtained at pH 6.8 ± 0.3. Lactate production decreased the H_2 and EtOH yields in the continuous-flow bioreactor, and the yields were lower than those obtained in the batch fermentations. In conclusion, the thorough batch screening of Icelandic hot spring samples indicated some promising enrichments for H_2 or H_2 plus EtOH production from carbohydrate materials.
机译:发酵可用于从生物质或有机废物中产生可持续的能源载体,例如氢和乙醇(EtOH)。这项研究的目的是从冰岛的温泉环境中获得高效产生H_2和EtOH的嗜热微生物。在50-78℃的温度范围内,从各种温泉样品中获得了产生氢气和EtOH的富集培养物。用温度梯度培养箱确定最有希望的富集的温度依赖性。其中一种浓缩物(33HL)在59℃时产生2.10 mol H_2 / mol葡萄糖。另一个富集(9HG)由与热厌氧嗜热厌氧尿杆菌密切相关的细菌所控制,在78℃时产生0.68 mol H_2 / mol葡萄糖和1.21 mol EtOH / mol葡萄糖。在74℃的连续流生物反应器中进一步表征了9HG产生的氢气和乙醇。在pH 6.8±0.3时获得了9HG的最高H_2和EtOH产率。乳酸的产生降低了连续流生物反应器中H_2和EtOH的产量,且其产率低于分批发酵获得的产率。总之,对冰岛温泉样品的彻底分批筛查表明,从碳水化合物原料中生产H_2或H_2以及EtOH的富集潜力很大。

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