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Assessment of micro-scale anaerobic digestion for management of urban organic waste: A case study in London, UK

机译:微型厌氧消化法处理城市有机废物的评估:以英国伦敦为例

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摘要

This paper describes the analysis of an AD plant that is novel in that it is located in an urban environment, built on a micro-scale, fed on food and catering waste, and operates as a purposeful system. The plant was built in 2013 and continues to operate to date, processing urban food waste and generating biogas for use in a community cafe. The plant was monitored for a period of 319 days during 2014, during which the operational parameters, biological stability and energy requirements of the plant were assessed. The plant processed 4574 kg of food waste during this time, producing 1008 m~3 of biogas at average 60.6% methane. The results showed that the plant was capable of stable operation despite large fluctuations in the rate and type of feed. Another innovative aspect of the plant was that it was equipped with a pre-digester tank and automated feeding, which reduced the effect of feedstock variations on the digestion process. Towards the end of the testing period, a rise in the concentration of volatile fatty acids and ammonia was detected in the digestate, indicating biological instability, and this was successfully remedied by adding trace elements. The energy balance and coefficient of performance (COP) of the system were calculated, which concluded that the system used 49% less heat energy by being housed in a greenhouse, achieved a net positive energy balance and potential COP of 3.16 and 5.55 based on electrical and heat energy, respectively. Greenhouse gas emissions analysis concluded that the most important contribution of the plant to the mitigation of greenhouse gases was the avoidance of on-site fossil fuel use, followed by the diversion of food waste from landfill and that the plant could result in carbon reduction of 2.95 kg CO_(2eq) kW h~(-1) electricity production or 0.741 kg CO_(2eq) kg~(-1) waste treated.
机译:本文描述了一种新颖的AD植物的分析,该植物位于城市环境中,建立在微观规模上,以食物和餐饮垃圾为食,并作为有目的的系统运行。该工厂建于2013年,迄今为止一直在运营,处理城市食物垃圾并产生沼气以供社区咖啡馆使用。 2014年期间对该工厂进行了319天的监控,在此期间评估了该工厂的运行参数,生物稳定性和能源需求。在此期间,该工厂处理了4574千克的餐厨垃圾,产生了1008 m〜3的沼气,平均甲烷率为60.6%。结果表明,尽管进料速度和类型存在较大波动,该装置仍能够稳定运行。该设备的另一个创新方面是,它配备了一个消化前的水箱和自动进料,从而减少了原料变化对消化过程的影响。在测试期即将结束时,在消化液中检测到挥发性脂肪酸和氨的浓度上升,表明生物不稳定性,并通过添加微量元素成功地解决了这一问题。计算了系统的能量平衡和性能系数(COP),得出的结论是,通过装在温室中,该系统减少了49%的热能,实现了净正能量平衡,基于电的潜在COP为3.16和5.55和热能。温室气体排放分析得出的结论是,该工厂对减少温室气体的最重要贡献是避免现场使用化石燃料,其次是将食物垃圾从垃圾填埋场转移,该工厂可能导致碳减少2.95千克CO_(2eq)kW h〜(-1)发电量或0.741千克CO_(2eq)kg〜(-1)废物处理量。

著录项

  • 来源
    《Waste Management》 |2017年第3期|258-268|共11页
  • 作者单位

    Energy Building, Department of Mechanical Engineering, The University of Sheffield, Sheffield S1 3JD, UK;

    Department of Mechanical Engineering, University of Sheffield, Sheffield S1 3JD, UK;

    Community by Design, 193 Downham Way, London BR1 5EL, UK;

    Centre for Research in Social Simulation (CRESS), Department of Sociology, Faculty of Arts and Human Sciences, University of Surrey, Guildford GU2 7XH, UK;

    Department of Mechanical Engineering, University of Sheffield, Sheffield S1 3JD, UK;

    University of Southampton, University Road, Southampton SO17 1BJ, UK;

    GBBD Ltd., The Bothy, Uley, Gloucestershire GL11 5BW, UK;

    Department of Mechanical Engineering, University of Sheffield, Sheffield S1 3JD, UK;

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

    Anaerobic digestion; Biogas; Food waste; Urban organic waste; Ammonia inhibition; Micro-scale;

    机译:厌氧消化;沼气食物浪费;城市有机废物;氨气抑制;微量;

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