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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Yields from Glucose,Xylose,and Paper Sludge Hydrolysate During Hydrogen Production by the Extreme Thermophile Caldicellulosiruptor saccharolyticus
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Yields from Glucose,Xylose,and Paper Sludge Hydrolysate During Hydrogen Production by the Extreme Thermophile Caldicellulosiruptor saccharolyticus

机译:极端嗜热的卡尔迪纤维素分解酶糖分解氢产生葡萄糖,木糖和纸污泥水解产物的产率

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This study addressed the utilization of an industrial waste stream,paper sludge,as a renewable cheap feedstock for the fermentative production of hydrogen by the extreme thermophile Caldicellulosiruptor saccharolyticus.Hydrogen,acetate,and lactate were produced in medium in which paper sludge hydrolysate was added as the sole carbon and energy source and in control medium with the same concentration of analytical grade glucose and xylose.The hydrogen yield was dependent on lactate formation and varied between 50 and 94% of the theoretical maximum.The carbon balance in the medium with glucose and xylose was virtually 100%.The carbon balance was not complete in the paper sludge medium because the measurement of biomass was impaired owing to interfering components in the paper sludge hydrolysate.Nevertheless,>85% of the carbon could be accounted for in the products acetate and lactate.The maximal volumetric hydrogen production rate was 5 to 6 mmol/(L-h),which was lower than the production rate in media with glucose,xylose,or a combination of these sugars (9-11 mmol/ [L-h]).The reduced hydrogen production rate suggests the presence of inhibiting components in paper sludge hydrolysate.
机译:这项研究的目的是利用工业废料流,纸浆作为可再生廉价原料,通过嗜热卡尔迪纤维素分解酵母发酵生产氢气。在添加了纸浆水解产物的培养基中生产氢,乙酸和乳酸。具有相同浓度的分析级葡萄糖和木糖的唯一碳源和能源以及在控制培养基中的氢产量取决于乳酸的形成,且在理论最大值的50%到94%之间变化。木糖实际上是100%。由于污泥水解产物中的干扰成分而影响了生物量的测量,因此纸污泥介质中的碳平衡不完全,尽管如此,仍有超过85%的碳可用于乙酸产品中最大体积产氢速率为5至6 mmol /(Lh),低于产氢速率葡萄糖,木糖或这些糖的组合(9-11 mmol / [L-h])在培养基中的速率最高。降低的氢气产生速率表明,造纸污泥水解物中存在抑制成分。

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