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Biohydrogen from complex carbohydrate wastes as feedstocks-Cellulose degraders from a unique series enrichment

机译:来自复杂碳水化合物废料的生物氢作为原料-来自独特系列浓缩的纤维素降解剂

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摘要

Fermentative biohydrogen production is a particularly promising approach offering high hydrogen yields and fast rates. Its drawback is that it uses mono- and disaccharides for substrates and these are relatively expensive. However, more complex carbohydrates may be converted to the feedstocks for fermentative biohydrogen production using approaches derived from select organisms. Early data from a consortium with cellulolytic activity recovered from aerobic thermophilic swine waste product and sequentially selected with batch operation on distiller's dry grain (a product of dry grind ethanol manufacture) has been used as a source of inoculum. Mesophilic and thermophilic cellulose-degrading organisms have been isolated from this inoculum and are reported here. Work continues on further characterization of these organisms and their potential. This work will be considered in light of an organizational scheme of processes using aerobic or anaerobic as well as mesophilic or thermophilic organisms. Some literature examples will be discussed. It is possible that these organisms could be used in a saccharification/fermentation process using separate reactors or a single reactor with coimmobilized cells providing both aerobic saccharification and anaerobic hydrogen fermentation.
机译:发酵生物制氢是一种特别有希望的方法,可提供高氢产率和快速速率。它的缺点是它使用单糖和二糖作为底物,并且它们相对昂贵。但是,可以使用衍生自某些生物的方法,将更复杂的碳水化合物转化为用于发酵性生物氢生产的原料。从有氧嗜热猪粪便中回收的具有纤维素分解活性的财团的早期数据,并在蒸馏器的干粮(干磨乙醇生产的产品)上分批操作依次选择,作为接种源。从该接种物中已分离出嗜温和嗜热纤维素降解生物,并在此处进行了报道。这些生物及其潜力的进一步表征工作仍在继续。将根据使用好氧或厌氧以及嗜温或嗜热生物的过程的组织方案来考虑这项工作。将讨论一些文献实例。这些生物有可能在糖化/发酵过程中使用分离的反应器或具有共固定化细胞的单个反应器来提供有氧糖化和厌氧氢发酵。

著录项

  • 来源
    《International journal of hydrogen energy》 |2009年第17期|7428-7434|共7页
  • 作者单位

    Mechanical Engineering and Energy Processes, Southern Illinois University, Mailcode 6603, Carbondale, IL 62903, USA;

    Mechanical Engineering and Energy Processes, Southern Illinois University, Mailcode 6603, Carbondale, IL 62903, USA;

    Mechanical Engineering and Energy Processes, Southern Illinois University, Mailcode 6603, Carbondale, IL 62903, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biomass; waste; biohydrogen;

    机译:生物质浪费;生物氢;
  • 入库时间 2022-08-18 00:29:55

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