首页> 外文期刊>World Journal of Microbiology & Biotechnology >Effects of pH and substrate concentrations on dark fermentative biohydrogen production from xylose by extreme thermophilic mixed culture
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Effects of pH and substrate concentrations on dark fermentative biohydrogen production from xylose by extreme thermophilic mixed culture

机译:pH与底物浓度对极端嗜热混合培养的木糖暗发酵生物氢生产的影响

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摘要

Biohydrogen is considered as one of the most promising energy alternatives considering the climate and energy crisis. The dark fermentative hydrogen production from xylose at extreme thermophilic condition (70 degrees C) using mixed culture was conducted in this study. The effects of initial pH values (ranged from 5.0 to 10.0) and substrate concentrations (ranged from 2.5 to 15.0 g/L) on the hydrogen production, substrate degradation and metabolite distributions were investigated using batch-mode operations. Results showed that initial substrate pH values in the neutral region (6.0-7.0) were beneficial for hydrogen production. The fermentation at initial pH 7.0 and 7.5 g/L xylose reached an optimal hydrogen yield of 1.29 mol-H-2/mol-xyloseconsumed. Ethanol, butyrate, and propionate were the major liquid metabolites. The xylose biodegradation efficiency of the mixed culture decreased sharply at high initial culture pH values. The increase of xylose concentration resulted in the accumulation of propionate and an obvious decrease in the final pH value, as well as a low hydrogen yield. Polymerase chain reaction-denaturing gradient gel electrophoresis analysis indicated that hydrogen producing bacteria were enriched by repeated culture under extreme thermophilic conditions. Also, the mixed culture was dominated with bacterial species related to Clostridium and Thermoanaerobacterium.
机译:生物氢被认为是考虑气候和能源危机最有前途的能源替代品之一。本研究进行了使用混合培养的极端嗜热条件(70摄氏度)的木糖的黑暗发酵氢气产生。使用批量模式操作研究了初始pH值(范围为5.0至10.0)和底物浓度(范围为2.5至15.0g / L)的效果。结果表明,中性地区(6.0-7.0)中的初始衬底pH值是有益的氢生产。初始pH7.0和7.5g / L木糖处的发酵达到了1.29mol-H-2 / Mol-Xylosoxumed的最佳氢气产率。乙醇,丁酸盐和丙酸盐是主要的液体代谢物。在高初始培养pH值下,混合培养的木糖生物降解效率急剧下降。木糖浓度的增加导致丙酸盐的积累和最终pH值的明显降低,以及低氢屈服。聚合酶链反应变性梯度凝胶电泳分析表明,在极端嗜热条件下,通过反复培养物富集产生氢气。而且,混合培养物用与梭菌和热橘杆菌相关的细菌物种。

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