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Life cycle assessment of fuels for district heating: A comparison of waste incineration, biomass- and natural gas combustion

机译:区域供热燃料的生命周期评估:垃圾焚烧,生物质和天然气燃烧的比较

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摘要

The aim of this consequential life cycle assessment (LCA) is to compare district heating based on waste incineration with combustion of biomass or natural gas. The study comprises two options for energy recovery (combined heat and power (CHP) or heat only), two alternatives for external, marginal electricity generation (fossil lean or intense), and two alternatives for the alternative waste management (landfill disposal or material recovery). A secondary objective was to test a combination of dynamic energy system modelling and LCA by combining the concept of complex marginal electricity production in a static, environmental systems analysis. Furthermore, we wanted to increase the methodological knowledge about how waste can be environmentally compared to other fuels in district-heat production. The results indicate that combustion of biofuel in a CHP is environmentally favourable and robust with respect to the avoided type of electricity and waste management. Waste incineration is often (but not always) the preferable choice when incineration substitutes landfill disposal of waste. It is however, never the best choice (and often the worst) when incineration substitutes recycling. A natural gas fired CHP is an alternative of interest if marginal electricity has a high fossil content. However, if the marginal electricity is mainly based on non-fossil sources, natural gas is in general worse than biofuels.
机译:相应的生命周期评估(LCA)的目的是将基于垃圾焚烧的区域供暖与生物质或天然气的燃烧进行比较。该研究包括两种能源回收方法(热电联产(CHP)或仅供热),两种用于外部边际发电(贫化或高强度化石燃料)的替代方案,以及两种用于废物管理的替代方案(垃圾掩埋处置或材料回收) )。第二个目标是通过在静态,环境系统分析中结合复杂边际电力生产的概念来测试动态能源系统建模和LCA的组合。此外,我们想增加关于在区域供热中如何将废物与其他燃料相比在环境上进行方法学的知识。结果表明,就避免的电力和废物管理类型而言,热电联产中的生物燃料燃烧对环境有利且稳健。当焚化代替垃圾掩埋处置时,废物焚化通常(但并非总是)是首选。但是,用焚化代替回收永远不是最好的选择(通常是最坏的选择)。如果边际电具有较高的化石含量,则使用天然气热电联产是人们关注的替代方案。但是,如果边际电力主要基于非化石能源,那么天然气通常比生物燃料差。

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