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首页> 外文期刊>The Science of the Total Environment >Environmental life cycle assessment of methanol and electricity co-production system based on coal gasification technology
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Environmental life cycle assessment of methanol and electricity co-production system based on coal gasification technology

机译:基于煤气化技术的甲醇与电力联产系统的环境生命周期评价

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This paper presents a life cycle assessment (LCA) of greenhouse gas emissions generated through methanol and electricity co-production system based on coal gasification technology. The analysis focuses on polygeneration technologies from which two products are produced, and thus, issues related to an allocation procedure for LCA are addressed in this paper. In the LCA, two methods were used: a 'system expansion' method based on two approaches, the 'avoided burdens approach' and 'direct system enlargement' methods and an 'allocation' method involving proportional partitioning based on physical relationships in a technological process. Cause-effect relationships in the analysed production process were identified, allowing for the identification of allocation factors. The 'system expansion' method involved expanding the analysis to include five additional variants of electricity production technologies in Poland (alternative technologies). This method revealed environmental consequences of implementation for the analysed technologies. It was found that the LCA of polygeneration technologies based on the 'system expansion' method generated a more complete source of information on environmental consequences than the 'allocation' method. The analysis shows that alternative technologies chosen for generating LCA results are crucial, life cycle assessment was performed for the analysed, reference and variant alternative technologies. Comparative analysis was performed between the analysed technologies of methanol and electricity co-production from coal gasification as well as a reference technology of methanol production from the natural gas reforming process.
机译:本文提出了基于煤气化技术的甲醇和电力联产系统产生的温室气体排放的生命周期评估(LCA)。分析着重于生产两种产品的多联产技术,因此,本文解决了与LCA分配程序有关的问题。在LCA中,使用了两种方法:基于两种方法的“系统扩展”方法,“避免负担方法”和“直接系统扩展”方法,以及基于工艺过程中基于物理关系进行比例分配的“分配”方法。 。确定了所分析生产过程中的因果关系,从而可以确定分配因素。 “系统扩展”方法涉及将分析扩展到波兰的电力生产技术(替代技术)的五种其他变体。该方法揭示了所分析技术实施的环境后果。结果发现,与“分配”方法相比,基于“系统扩展”方法的多联产技术的生命周期评价产生了关于环境后果的更完整信息源。分析表明,为产生LCA结果而选择的替代技术至关重要,已对所分析,参考和替代的替代技术进行了生命周期评估。对分析过的煤气化联产甲醇和电技术以及天然气重整制甲醇的参考技术进行了比较分析。

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