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Key performance indicators for biogas production-methodological insights on the life-cycle analysis of biogas production from source- separated food waste

机译:沼气生产方法洞察源自源分离食品垃圾生物糖生物循环分析的关键绩效指标

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摘要

The anaerobic digestion of food waste can not only enhance the treatment of organic wastes, but also contributes to renewable energy production and the recirculation of nutrients. These multiple benefits are among the main reasons for the expansion of biogas production from food waste in many countries. We present methodological insights and recommendations on assessing the environmental and economic performance of these systems from a life-cycle perspective. We provide a taxonomy of the value chain of biogas from food waste which describes major activities, flows, and parameters across the value chain with a relatively high detail. By considering the multiple functions of biogas production from food waste, we propose a few key performance indicators (KPI) to allow comparison of different biogas production systems from the perspectives of climate impact, primary energy use, nutrients recycling, and cost. We demonstrate the operational use of our method through an example, where alternatives regarding the heat supply of the biogas plant are investigated. We demonstrate how global and local sensitivity analyses can be combined with the suggested taxonomy and KPIs for uncertainty management and additional analyses. The KPIs provide useful input into decision-making processes regarding the future development of biogas solutions from food waste.
机译:食物废物的厌氧消化不仅可以增强有机废物的治疗,而且还有助于可再生能源生产和营养素的再循环。这些多种效益是扩大许多国家食品垃圾生产沼气生产的主要原因。我们提出了关于评估这些系统的环境和经济绩效,从生命周期的角度来评估这些系统的环境和经济绩效。我们提供食物废物的沼气价值链的分类,这些食物垃圾描述了具有相对高的细节的价值链中的主要活动,流动和参数。通过考虑从食物垃圾生产的沼气生产的多种功能,我们提出了一些关键的绩效指标(KPI),以便将不同的沼气生产系统从气候影响,初级能源使用,营养素回收和成本的角度进行比较。我们通过示例展示了我们的方法的操作使用,其中研究了关于沼气厂的热源的替代方案。我们展示了全球和局部敏感性分析如何与建议的分类和KPI结合,以进行不确定性管理和其他分析。 KPI提供了有关沼气垃圾沼气解决方案的未来发展的决策过程的有用投入。

著录项

  • 来源
    《Energy》 |2020年第1期|117462.1-117462.14|共14页
  • 作者单位

    Department of Management and Engineering Division of Environmental Technology and Management Linkoeping University SE-581 83 Linkoeping Sweden Biogas Research Center Linkoeping University SE-581 83 Linkoeping Sweden;

    Department of Management and Engineering Division of Energy Systems Linkoeping University SE-581 83 Linkoeping Sweden Biogas Research Center Linkoeping University SE-581 83 Linkoeping Sweden;

    Department of Management and Engineering Division of Energy Systems Linkoeping University SE-581 83 Linkoeping Sweden Biogas Research Center Linkoeping University SE-581 83 Linkoeping Sweden;

    Tekniska verken i Linkoeping AB (public) Department of Technology and Systems Box 1500 SE-581 15 Linkoeping Sweden Biogas Research Center Linkoeping University SE-581 83 Linkoeping Sweden Department of Environmental Change Linkoeping University SE-581 83 Linkoeping Sweden;

    Tekniska verken i Linkoeping AB (public) Department of Technology and Systems Box 1500 SE-581 15 Linkoeping Sweden Biogas Research Center Linkoeping University SE-581 83 Linkoeping Sweden;

    Department of Management and Engineering Division of Environmental Technology and Management Linkoeping University SE-581 83 Linkoeping Sweden Biogas Research Center Linkoeping University SE-581 83 Linkoeping Sweden;

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

    Biogas; Anaerobic digestion; Food waste; Systems analysis; Key performance indicators; Life-cycle assessment;

    机译:沼气;厌氧消化;食物垃圾;系统分析;关键绩效指标;生命周期评估;
  • 入库时间 2022-08-18 22:23:05

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