首页> 外文会议>International Conference on Environmental Science and Technology >(00364)Life cycle evaluation of production and utilisation pathways of coupled anaerobic digestion (AD)and gasification/pyrolysis systems using the anaerobic biorefinery concept.
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(00364)Life cycle evaluation of production and utilisation pathways of coupled anaerobic digestion (AD)and gasification/pyrolysis systems using the anaerobic biorefinery concept.

机译:(00364)使用厌氧生物遗料概念的偶联厌氧消化(AD)和气化/热解系统的生产和利用途径的生命周期评估。

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Life Cycle Analysis modelling has been applied to an operational Anaerobic Digestion (AD)plant, (utilising Cattle Slurry/Grass Silage), currently producing biogas for electricity and heat production, with digestate going to land-spreading. The aim of the research was to evaluate the environmental costs and benefits of coupling the existing plant with Gasification or Pyrolysis systems for the utilisation of digestate from the plant, producing either predominantly Syngas (Gasification)or Oils/Tars (Pyrolysis). Utilisation pathways evaluated as part of the research include the following: Gasification: Syngas to Methanation to Synthetic Natural Gas (SNG); and Pyrolysis: Syngas and bio-oil to dual-fuel electricity production. While the focus of the evaluation will be the potential GHG-eq emissions reductions achievable from the different processing and utilisation pathways, the full range of impact areas are included in the analysis. The analysis will include reflection on the challenges of applying LCA to complex biorefinery/bioenergy systems to inform future methodological developments and guidance.
机译:生命周期分析建模已应用于运营的厌氧消化(AD)植物,(利用牛浆/草青贮饲料),目前为电力和热量生产产生沼气,用消化物将落地蔓延。该研究的目的是评估将现有植物与气化或热解系统偶联的环境成本和益处,以利用来自植物的消化物,生产主要是合成气(气化)或油/焦油(热解)。作为研究的一部分评估的利用途径包括以下内容:气化:合成甲烷化为合成天然气(SNG);和热解:合成气和生物油到双燃料生产。虽然评估的重点是从不同的加工和利用途径可实现的潜在的温室气体排放减少,但在分析中包括全方位的冲击区域。分析将包括对应用LCA对复杂的生物食品/生物能源系统应用挑战的思考,以告知未来的方法论发展和指导。

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