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Characteristics of hydrogen and methane production from cornstalks by an augmented two- or three-stage anaerobic fermentation process

机译:两步或三步厌氧发酵过程增强玉米秸秆产氢和甲烷的特性

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This paper presents the co-production of hydrogen and methane from cornstalks by a two- or three-stage anaerobic fermentation process augmented with effective artificial microbial community. Two-stage fermentation by using the anaerobic sludge and DGGE analysis showed that effective and stable strains should be introduced into the system. We introduced Enterobacter aerogens or Clostridium paraputrificum into the hydrogen stage, and C. poraputrificum was proven to be more effective. In the three-stage process consisting of the improved hydrolysis, hydrogen and methane production stages, the highest soluble sugars (0.482 kg/kg cornstalks) were obtained after the introduction of Clostridium thermocellum in the hydrolysis stage, under the thermophilic (55 degrees C) and acidic (pH 5.0) conditions. Hydrolysates from I kg of cornstalks could produce 2.61 mol (63.71) hydrogen by augmentation with C. parciputrificum and 4.69 mol (114.61) methane by anaerobic granular sludge, corresponding to 54.1% energy recovery.
机译:本文提出了玉米秸秆通过两阶段或三阶段厌氧发酵过程联合有效的人工微生物群落而联合生产氢和甲烷的方法。利用厌氧污泥进行两阶段发酵和DGGE分析表明,应将有效,稳定的菌株引入系统。我们将产气肠杆菌或副梭状芽胞杆菌引入了氢气阶段,事实证明,C。poraputrificum更为有效。在由改进的水解,氢气和甲烷生产阶段组成的三阶段过程中,在高温(55摄氏度)下,将水解梭状芽胞杆菌引入水解阶段后,可获得最高可溶性糖(0.482 kg / kg玉米秸秆)。和酸性(pH 5.0)条件。 1千克玉米秸秆的水解产物可通过添加棒状梭状芽胞杆菌和厌氧颗粒污泥增加4.69摩尔(114.61)甲烷来产生2.61摩尔(63.71)氢,相当于54.1%的能量回收率。

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