Chen Shuang-Ya, Niu Li-Li, Dong Xiu-Zhu
State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100080, China.
Wei Sheng Wu Xue Bao. 2006 Apr;46(2):233-7.
Studying the possible factors affecting hydrogen production from glucose by Acetanaerobacterium elongatum, an acetateethanol fermenting anaerobe isolated from sludge of wastewater of a papermill. The results revealed that the maximum hydrogen production could be achieved in PYG liquid at 37 degrees C and initial pH 8.0. The strain produced more hydrogen from glucose and arabiose, with the hydrogen yields of 1.55 mol H2/mol glucose and 1.50 mol H2/mol arabiose, respectively. pH and hydrogen partial pressure were the most severe inhibitors in hydrogen production from glucose, by controlling the broth at neutral pH during the fermentation period could increase hydrogen yield twice, concomitantly glucose consumption for 2.8 times. Hydrogen was another inhibitor for fermentative H2 production, and removing hydrogen by cultivating Acetanaerobacterium elongatum Z7 with a H2-trophic methanogen resulted in higher deduced H2 production for about 4 times. Yeast extract stimulated H2 production by stains Z7. Coculturing A. elongatum Z7 and P. acetatigenes TB107, a proteineous-trophic bacterium, increased the conversion of the glucose and thereby increased the H2 production on peptone. Moreover, acetate when at higher concentration ( > 60 mmol/L) in the medium inhibited the hydrogen production by strain Z7.
研究从造纸厂废水污泥中分离出的乙酸乙醇发酵厌氧菌长形醋杆菌从葡萄糖产氢的可能影响因素。结果表明,在37℃和初始pH 8.0的PYG液体中可实现最大产氢量。该菌株从葡萄糖和阿拉伯糖产生更多氢气,氢气产率分别为1.55 mol H2/mol葡萄糖和1.50 mol H2/mol阿拉伯糖。pH和氢气分压是葡萄糖产氢过程中最严重的抑制剂,在发酵期间将发酵液控制在中性pH可使氢气产率提高两倍,同时葡萄糖消耗量增加2.8倍。氢气是发酵产氢的另一种抑制剂,通过将长形醋杆菌Z7与嗜氢产甲烷菌共培养来去除氢气,可使推测的产氢量提高约4倍。酵母提取物刺激菌株Z7产氢。将长形醋杆菌Z7与蛋白营养型细菌乙酸产乙酸杆菌TB107共培养,可提高葡萄糖的转化率,从而增加蛋白胨上的产氢量。此外,当培养基中乙酸浓度较高(>60 mmol/L)时,会抑制菌株Z7产氢。