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Pyrolyzed waste stream and biochar performance evaluation in food waste anaerobic digestion

机译:热解的废物流和食物废物厌氧消化中的生物炭绩效评估

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摘要

The requirements for enhanced technologies, such as pyrolysis and anaerobic digestion, are crucial to improve food waste and sewage sludge and address the difficulty in disposing of hardly biodegradable residues. The pyrolysis process was applied to two waste streams, namely hardly biodegradable residues and sewage sludge, at 500 °C with a heating rate of 25 °C min~(-1) to obtain hardly biodegradable residues biochar (DBR-Char) and sewage sludge biochar (SS-Char). The two biochars were then used as additives during anaerobic digestion of food waste treatment to enhance biogas production and reactor robustness to achieve average methane contents in biogas up to 75% compared with the control. Biochar addition also improved process stability, with the Methanosaeta/Methanothrix 99.55% in the CK1 (reactor with inoculum, food waste, and DBR-Char) and 98.13% in the CK2 (reactor with inoculum, food waste, and SS-Char) as the dominant genera among the anaerobic consortia. This study averted the hardly biodegradable residues and sewage sludge disposal challenges via pyrolysis and offered biochar utilization to promote reactor stability and biogas production in food waste fermentation.
机译:增强技术的要求,例如热解和厌氧消化,对改善食物垃圾和污水污泥并解决了处理难以生物降解的残留物的困难至关重要。将热解过程应用于两个废物流,即在500℃下难以生物降解的残留物和污水污泥,加热速率为25℃min〜(-1),以获得几乎无法生物降解的残留物生物炭(DBR-Char)和污水污泥生物炭(SS-CHAR)。然后将两种生物脉体用作厌氧消化食物废物处理过程中的添加剂,以增强沼气生产和反应堆稳健性,与对照相比,脂肪量达到75%的沼气中的平均甲烷含量。生物炭加入还改善了过程稳定性,在CK1(具有接种物,食物废物和DBR-CHAR)中的CK1(反应器,CK2(反应器有接种物,食物废物和SS-CHAR)中的98.13%的甲蛋白酶稳定性99.55%。 Anaerobic Consortia中的主导属。本研究避免了通过热解难以生物降解的残留物和污水处理污泥处理挑战,并提供生物炭利用,以促进食品废物发酵中的反应堆稳定性和沼气生产。

著录项

  • 来源
    《Clean technologies and environmental policy》 |2020年第5期|1199-1211|共13页
  • 作者单位

    Green Intelligence Environment School Yangtze Normal University Chongqing 408100 People's Republic of China State Key Joint Laboratory of Environment Simulation and Pollution Control School of Environment Tsinghua University Beijing 100084 People's Republic of China;

    Chinese Academy of Environmental Planning Beijing 100012 People's Republic of China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control School of Environment Tsinghua University Beijing 100084 People's Republic of China School of Chemical and Environmental Engineering University of Mining and Technology (Beijing) Beijing China;

    Green Intelligence Environment School Yangtze Normal University Chongqing 408100 People's Republic of China;

    Green Intelligence Environment School Yangtze Normal University Chongqing 408100 People's Republic of China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control School of Environment Tsinghua University Beijing 100084 People's Republic of China;

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

    Anaerobic digestion; Biomass; Biogas; Biochar; Pyrolysis; Waste streams;

    机译:厌氧消化;生物质;沼气;生物炭;热解;废物流;

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