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Integrated gasification and plasma cleaning for waste treatment: A life cycle perspective

机译:集成式气化和等离子体清洁技术用于废物处理:生命周期的观点

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摘要

In the past, almost all residual municipal waste in the UK was landfilled without treatment Recent European waste management directives have promoted the uptake of more sustainable treatment technologies, especially for biodegradable waste. Local authorities have started considering other options for dealing with residual waste. In this study, a life cycle assessment of a future 20 MWe plant using an advanced two-stage gasification and plasma technology is undertaken. This plant can thermally treat waste feedstocks with different composition and heating value to produce electricity, steam and a vitrified product. The objective of the study is to analyse the environmental impacts of the process when fed with seven different feedstocks (including municipal solid waste, solid refuse fuel, reuse-derived fuel, wood biomass and commercial & industrial waste) and identify the process steps which contribute more to the environmental burden. A scenario analysis on key processes, such as oxygen production technology, metal recovery and the appropriate choice for the secondary market aggregate material, is performed. The influence of accounting for the biogenic carbon content in the waste from the calculations of the global warming potential is also shown. Results show that the treatment of the refuse-derived fuel has the lowest impact in terms of both global warming potential and acidification potential because of its high heating value. For all the other impact categories analysed, the two-stage gasification and plasma process shows a negative impact for all the waste streams considered, mainly due to the avoided burdens associated with the production of electricity from the plant The plasma convenor, key characteristic of the thermal process investigated, although utilising electricity shows a relatively small contribution to the overall environmental impact of the plant The results do not significantly vary in the scenario analysis. Accounting for biogenic carbon enhanced the performance of biomass and refuse-derived fuel in terms of global warming potential. The main analysis of this study has been performed from a waste management perspective, using 1 ton of waste as functional unit A comparison of the results when 1 kWhe of electricity produced is used as functional unit shows similar trends for the environmental impact categories considered.
机译:过去,英国几乎所有残留的城市垃圾都未经处理就被填埋。最近的欧洲垃圾管理指令促进了对更具可持续性的处理技术的采用,尤其是对可生物降解垃圾的处理。地方当局已开始考虑其他处理残余废物的方案。在这项研究中,使用先进的两级气化和等离子技术对未来的20 MWe工厂进行了生命周期评估。该工厂可以对具有不同成分和热值的废料进行热处理,以产生电,蒸汽和玻璃化产品。这项研究的目的是分析使用七种不同原料(包括城市固体废物,固体垃圾燃料,可重复使用的燃料,木材生物质以及商业和工业废物)进料时工艺对环境的影响,并确定有助于生产的工艺步骤。更给环境带来负担。进行了关键过程的方案分析,例如氧气生产技术,金属回收以及二级市场聚集材料的适当选择。还显示了通过计算全球变暖潜能计算废物中生物碳含量的影响。结果表明,垃圾衍生燃料的处理具有很高的发热量,因此对全球变暖潜力和酸化潜力的影响最小。对于分析的所有其他影响类别,两阶段气化和等离子工艺对所考虑的所有废物流均具有负面影响,这主要是由于避免了与电厂发电相关的负担。在热过程中进行了调查,尽管使用电力对电厂整体环境的影响相对较小。在情景分析中,结果没有显着差异。就全球变暖潜力而言,对生物碳的核算可以提高生物质和垃圾衍生燃料的性能。本研究的主要分析是从废物管理的角度进行的,使用1吨废物作为功能单元。当将1 kWhe的电力用作功能单元时,结果的比较显示出所考虑的环境影响类别的趋势相似。

著录项

  • 来源
    《Waste Management》 |2015年第9期|485-496|共12页
  • 作者单位

    Chemical Engineering Department, University College London, Torrington Place, London WC1E 7JE, UK;

    Chemical Engineering Department, University College London, Torrington Place, London WC1E 7JE, UK,Advanced Plasma Power (APP), Unit B2, Marston Gate, South Marston Business Park, Swindon SN3 4DE, UK;

    Centre for Environmental Strategy, The University of Surrey, Guildford, Surrey GU2 7XH, UK;

    Department of Chemical Engineering, UCL, Torrington Place, Roberts Building, Room 312, London WC1E 7JE, UK;

    Advanced Plasma Power (APP), Unit B2, Marston Gate, South Marston Business Park, Swindon SN3 4DE, UK;

    Advanced Plasma Power (APP), Unit B2, Marston Gate, South Marston Business Park, Swindon SN3 4DE, UK;

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

    Life cycle assessment; Gasification; Plasma; Energy-from-waste technology; Metal recovery;

    机译:生命周期评估;气化;等离子体;废物能源技术;金属回收;

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