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Biohydrogen production by anaerobic digestion of corn cob and stem of faba bean hydrolysates

机译:通过玉米玉米棒和豆腐水解产物的玉米棒消化的生物氢

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Biomass waste for hydrogen production is an important goal for the Hydrogen Economy. In this paper is reported the research of corn cob and stem of faba bean agricultural waste by hydrolysis for sugar production. Acid hydrolysis was performed in 1 g of dried raw material per 15 mL of different H_3PO_4 acid solutions heated at 100°C and 130°C during 2 h. The sugar yield was determined by dinitro salicylic acid technique. The maximum sugar recovery calculated in g of sugar per g of raw material were 0.43 and 0.17 for corncob and faba bean stalk respectively. For fermentation, hydrolysates were mixed in sealed vials with culture medium in anoxic atmosphere, an inoculum of 0.05 mL of Clostridium butyricum and 0.05 mL of Enterobacter cloacae was used, the vials were incubated at 37°C, two samples were taken every 2 h. The cell growing was monitored using a Petroff-Hausser counting chamber, hydrogen production was determined by gas chromatography and pH was also determined for each sample. In both substrates the cell growing lag time was 4 hours and after 11 hours hydrogen production was detected. The saccharide-biohydrogen production yields for sugars obtained from the hydrolysates were calculated according to the 2.75 mol H_2 per mol glucose reported experimentally in mexican fruits and vegetable waste. They were 18.9% and 12% for corncob and faba bean stem respectively.
机译:氢生产的生物质废物是氢气经济的重要目标。本文据报道,通过水解糖生产玉米玉米玉米玉米玉米玉米棒和茎干。在2小时内在100℃和130℃下在100℃和130℃下加热在100毫升不同的H_3PO_4酸溶液中在1g干燥的原料中进行酸水解。通过Dinitro水杨酸技术确定糖产率。用于每G的原料糖的最高糖恢复分别为玉米杆菌和Faba Bean茎的0.43和0.17。对于发酵,将水解产物与缺氧气氛中的培养基混合,使用0.05ml酸梭菌和0.05ml肠杆菌的含量,将小瓶在37℃下孵育,每2小时孵育两样样品。使用Petroff-hausser计数室监测细胞生长,通过气相色谱法测定氢气产生,并且还测定每个样品的pH。在两个基质中,细胞生长滞后时间为4小时,检测到11小时后氢产生。根据墨西哥水果和蔬菜废物在实验上报道的2.75mol H_2,计算从水解产物获得的糖的糖 - 生物氢产率。它们分别为玉米木和豆豆茎的18.9%和12%。

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