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首页> 外文期刊>Waste Management >Increasing 2 -Bio- (H_2 and CH_4) production from food waste by combining two-stage anaerobic digestion and electrodialysis for continuous volatile fatty acids removal
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Increasing 2 -Bio- (H_2 and CH_4) production from food waste by combining two-stage anaerobic digestion and electrodialysis for continuous volatile fatty acids removal

机译:通过组合两级厌氧消化和电渗析来增加2-β(H_2和CH_4)生产,用于连续挥发性脂肪酸去除

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摘要

A novel approach of using two stage anaerobic digestion coupled with electrodialysis technology has been investigated. This approach was used to improving bio hydrogen and methane yields from food waste while simultaneously producing a green chemical feedstock. The first digester was used for hydrogen production and the second digester was used for methane production. The first digester was combined with continuous separation of volatile fatty acids using electrodialysis. The concentrations of carbohydrates, proteins and fats in the prepared food waste were 22.7%, 5.7% and 5.2% respectively. Continuous removal of volatile fatty acids during fermentation in the hydrogen digester not only increased hydrogen yields but also increased the production rate of volatile fatty acids. As a result of continuous VFA separation, hydrogen yields increased from 17.3 mL H_2/g VS_(fermenter) to 33.68 mL H_2/g VS_(fermenter). Methane yields also increased from 28.94 mL CH_4/g VS_(fermenter) to 43.94 mL CH_4/g VS_(fermenter). This represents a total increase in bio-energy yields of 77.1%. COD reduced by 73% after using two stage anaerobic digestion, however, this reduction increased to 86.7% after using electrodialysis technology for separation of volatile fatty acids. Electrodialysis technology coupled with anaerobic digestion improved substrate utilization, increased bioenergy yields and looks to be promising for treating complex wastes such as food waste.
机译:研究了一种使用两级厌氧消化的新方法,其与电渗析技术相结合。这种方法用于改善食物废物的生物氢和甲烷产率,同时产生绿色化学原料。第一个消化器用于氢气生产,第二消化器用于甲烷生产。第一个消化器结合使用电渗析的连续分离挥发性脂肪酸。制备的食品废物中碳水化合物,蛋白质和脂肪的浓度分别为22.7%,5.7%和5.2%。在发酵过程中连续除去挥发性脂肪酸在氢气中的发酵过程中不仅增加了氢产率而且增加了挥发性脂肪酸的生产率。由于连续VFA分离,氢率从17.3ml H_2 / g Vs_(发酵罐)增加至33.68ml H_2 / g Vs_(发酵罐)。甲烷产率也从28.94ml CH_4 / g Vs_(发酵罐)增加到43.94ml CH_4 / g VS_(发酵罐)。这表示生物能源产量的总增加77.1%。使用两级厌氧消化后,COD减少了73%,但使用电渗析技术进行挥发性脂肪酸的电渗析后,这种减少增加到86.7%。电渗析技术加上厌氧消化改善的基材利用,增加生物能源产量,并且希望对处理食物垃圾等复杂废物的兴趣。

著录项

  • 来源
    《Waste Management》 |2021年第15期|20-25|共6页
  • 作者单位

    Sustainable Environment Research Centre Faculty of Computing Engineering and Science University of South Wales Pontypridd CF37 WL United Kingdom Water Pollution Research Department National Research Centre 33 Bohouth St. P.O. Box 12622 Dokki Giza Egypt;

    Sustainable Environment Research Centre Faculty of Computing Engineering and Science University of South Wales Pontypridd CF37 WL United Kingdom;

    Sustainable Environment Research Centre Faculty of Computing Engineering and Science University of South Wales Pontypridd CF37 WL United Kingdom;

    Sustainable Environment Research Centre Faculty of Computing Engineering and Science University of South Wales Pontypridd CF37 WL United Kingdom;

    Chemistry Department Faculty of Science Ain Shams University Cairo Egypt;

    Water Pollution Research Department National Research Centre 33 Bohouth St. P.O. Box 12622 Dokki Giza Egypt;

    Sustainable Environment Research Centre Faculty of Computing Engineering and Science University of South Wales Pontypridd CF37 WL United Kingdom;

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

    Food waste; Hydrogen; Methane; Energy yield; Electrodialysis;

    机译:食物垃圾;氢;甲烷;能源产量;电渗析;

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