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首页> 外文期刊>The International Journal of Life Cycle Assessment >Calculating the Influence of Alternative Allocation Scenarios in Fossil Fuel Chains
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Calculating the Influence of Alternative Allocation Scenarios in Fossil Fuel Chains

机译:计算化石燃料链中替代分配方案的影响

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Goal, Scope and Background. As part of an LCA study comparing an average Dutch passenger car running on petrol with a similar car running on bio-ethanol and comparing an average Dutch passenger car running on diesel with a similar car running on biodiesel, the question raised to get more insight into the allocations made in fossil fuel chains in existing databases such as ecoinvent. Both biofuel and fossil fuel chains contain various allocation situations that have been approached differently by various authors leading to differing and incomparable results. For biofuel chains, stakeholders had obtained insight into the allocations in earlier studies, but for the allocations made for the fossil chains, this was not the case. Therefore, one part of the study, which is reported in this paper, focused on a quick scan of different allocation scenarios for fossil fuels chains using the Swiss ecoinvent v1.1 database. Methods. The quick scan focused on three different allocation scenarios for fossil fuel chains: economic allocation, physical allocation and the ecoinvent default allocation. There appeared to be 54 multi-output (MO) processes linked to both the passenger car and the diesel system in the ecoinvent v1.1 database. Based on contribution analyses identifying which multi-output processes contribute most to one of the environmental impact categories of the characterisation, seven multi-output processes were selected that have been further analysed with the three allocation scenarios mentioned. Results. The results show that although at the process level allocation factors may differ significantly (up to almost 250), the total results only differ modestly (1-1.5), at least for the present case. Discussion. There is no general rule between these two. They depend on the scaling factor and the environmental impact related to the resource extractions and emissions of a particular multi-output process and its upstream processes in the total system analysed. Conclusions. The results of this quick scan are mainly intended for illustrating and learning purposes focusing on the possible influence of different allocation scenarios for fossil fuel chains. Bearing these limitations in mind, it can be concluded that different allocation methods can generate large differences in allocation factors and thus also at the level of environmental impacts allocated to the derived single-output processes. Nevertheless, the aggregated results for the present case only differ modestly.
机译:目标,范围和背景。作为一项LCA研究的一部分,该研究比较了荷兰普通汽油乘用车和类似生物乙醇的汽车,以及荷兰普通柴油与生物柴油用车的相似性,这个问题引起了人们更多的了解现有数据库(例如ecoinvent)中化石燃料链中的分配情况。生物燃料链和化石燃料链都包含各种分配情况,不同的作者对此进行了不同的处理,从而导致了不同且无可比拟的结果。对于生物燃料链,利益相关者已经在较早的研究中了解了分配情况,但是对于化石链的分配情况却并非如此。因此,本文报道的研究的一部分集中于使用瑞士ecoinvent v1.1数据库快速扫描化石燃料链的不同分配方案。方法。快速扫描的重点是化石燃料链的三种不同分配方案:经济分配,物理分配和ecoinvent默认分配。在ecoinvent v1.1数据库中,似乎有54个与乘用车和柴油系统相关的多输出(MO)流程。基于确定哪些多输出过程对表征的一种环境影响类别贡献最大的贡献分析,选择了七个多输出过程,并使用上述三种分配方案对其进行了进一步分析。结果。结果表明,尽管在过程级别分配因子可能存在显着差异(最多为250),但至少对于当前情况而言,总结果仅相差不大(1-1.5)。讨论。两者之间没有一般规则。它们取决于比例因子和与特定多输出过程及其上游过程在整个系统中的资源提取和排放有关的环境影响。结论。快速扫描的结果主要用于说明和学习目的,重点放在化石燃料链的不同分配方案的可能影响上。考虑到这些限制,可以得出结论,不同的分配方法可能会在分配因子上产生很大差异,从而在分配给派生的单项输出过程的环境影响方面也会产生很大差异。然而,本案的汇总结果仅略有不同。

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