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Two-stage anaerobic process for bio-hydrogen and bio-methane combined production from biodegradable solid wastes

机译:从生物可降解固体废物中联合生产生物氢和生物甲烷的两阶段厌氧工艺

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摘要

A two-stage anaerobic digestion process intended for biohydrogen and bio-methane combined production from organic fraction of municipal solid wastes was investigated. In thermophilic conditions blocking of methanogenesis at the first stage of the anaerobic fermentation was achieved at pH 9.0. Cumulative hydrogen production made 82.5 I/kg volatile solids. Pretreatment of organic fraction of municipal solid wastes and exploitation of mixed cultures of anaerobic thermophilic cellulolytic and saccharolytic bacteria of Clostridia sp resulted in the increase of hydrogen cumulative production up to 104 I/kg volatile solids. Content of methane in biohydrogen didn't exceed 0.1%. Cumulative bio-methane production made 520 I/kg volatile solids. Methane percentage in produced biogas was 78.6%. Comparison of energy data for two-stage anaerobic digestion with those for solely methane production shows the increase in energy recovery from biodegradable fraction of municipal solid wastes. Results obtained make a foolproof basis for the development of cost-effective technological process providing hydrogen and methane combined production from solid organic wastes. Technology can be implemented at large scale biogas plants improving economical and ecological characteristics of the overall process.
机译:研究了用于从城市固体废物的有机部分中生物氢和生物甲烷联合生产的两阶段厌氧消化工艺。在嗜热条件下,在pH 9.0下可阻止厌氧发酵第一阶段甲烷生成。氢气的累积产生了82.5 I / kg的挥发性固体。预处理城市固体废物中的有机部分,并利用梭状芽孢杆菌厌氧嗜热性纤维素分解和糖解细菌的混合培养物,导致氢气累积产量增加至104 I / kg挥发性固体。生物氢气中甲烷含量不超过0.1%。累计生产生物甲烷可产生520 I / kg挥发性固体。产生的沼气中的甲烷百分比为78.​​6%。将两阶段厌氧消化的能量数据与仅用于甲烷生产的能量数据进行比较,结果表明,从城市固体废物的可生物降解部分中回收的能量有所增加。获得的结果为开发具有成本效益的工艺流程提供了万无一失的基础,该工艺流程可从固体有机废物中联合生产氢气和甲烷。可以在大型沼气厂实施该技术,从而改善整个过程的经济和生态特征。

著录项

  • 来源
    《Energy》 |2012年第1期|p.94-102|共9页
  • 作者单位

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

    Durmishidze Institute of Biochemistry and Biotechnology of NLE Agrarian University of Georgia, Tbilisi, Georgia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    anaerobic digestion; methanogenesis; biohydrogen; combined heat power (CHP); clostridia sp.;

    机译:厌氧消化;甲烷生成生物氢联合热能(CHP);梭状芽胞杆菌;

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