首页> 外文期刊>International journal of hydrogen energy >Fermentative Hydrogen Production By The Newly Isolated Clostridium Beijerinckii Fanp3
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Fermentative Hydrogen Production By The Newly Isolated Clostridium Beijerinckii Fanp3

机译:新分离的贝氏梭状芽胞杆菌Fanp3发酵产氢

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A hydrogen producing strain newly isolated from anaerobic sludge in an anaerobic bioreactor, was identified as Clostridium beijerincfeii Fanp3 by 16S rDNA gene sequence analysis and detection by BioMerieux Vitek. The strain could utilize various carbon and nitrogen sources to produce hydrogen, which indicates that it has the potential of converting renewable wastes into hydrogen. In batch cultivations, the optimal initial pH of the culture medium was between 6.47 and 6.98. Using 0.15 M phosphate as buffer could alleviate the medium acidification and improve the overall performance of C. beijerincfeii Fanp3 in hydrogen production. Culture temperature of 35 ℃ was established to be the most favorable for maximum rate of hydrogen production. The distribution of soluble metabolic products (SMP) was also greatly affected by temperature. Considering glucose as a substrate, the activation energy (E_a) for hydrogen production was calculated as 81.01 kcal/ mol and 21.4% of substrate energy was recovered in the form of hydrogen. The maximal hydrogen yield and the hydrogen production rate were obtained as 2.52 mol/mol-glucose and 39.0 ml/g-glucose h~(-1), respectively. These results indicate that C. beijerincfeii Fanp3 is an ideal candidate for the fermentative hydrogen production.
机译:通过厌氧生物反应器中的厌氧污泥新分离出的产氢菌株通过16S rDNA基因序列分析和BioMerieux Vitek检测被鉴定为拜氏梭状芽胞杆菌Fanp3。该菌株可以利用各种碳和氮源产生氢,这表明它具有将可再生废物转化为氢的潜力。在分批培养中,培养基的最佳初始pH在6.47至6.98之间。使用0.15 M磷酸盐作为缓冲液可以减轻培养基酸化并提高产氢拜氏梭菌Fanp3在制氢中的整体性能。建立35℃的培养温度是最有利于最大产氢速率的条件。可溶性代谢产物(SMP)的分布也受到温度的极大影响。以葡萄糖为底物,用于制氢的活化能(E_a)经计算为81.01 kcal / mol,并且以氢的形式回收了底物能量的21.4%。得到的最大氢产量和产氢速率分别为2.52 mol / mol-葡萄糖和39.0 ml / g-葡萄糖h〜(-1)。这些结果表明,拜氏梭状芽胞杆菌Fanp3是发酵产氢的理想候选者。

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