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Impact of including land-use change emissions from biofuels on meeting GHG emissions reduction targets: the example of Ireland

机译:将生物燃料的土地利用变化排放包括在内对实现温室气体减排目标的影响:爱尔兰的例子

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The greenhouse gases (GHG) emissions from land-use change are of particular concern for land-based biofuels. Emissions avoided by substituting fossil fuels with biofuels may be offset by emissions from direct and indirect land-use changes (LUC). There is an urgent need to investigate what impact land-use change emissions may have on the expansion of bioenergy and biofuels, in the context of EU mitigation policies. This paper focuses on Ireland, which faces a number of challenges in delivering its renewable energy and GHG reduction targets. The Irish TIMES energy systems model was used to assess the impact of a range of land-use change emissions' levels on the evolution of Ireland's low-carbon energy system. A reference scenario was developed where LUC is ignored and Ireland achieves a least-cost low-carbon energy system by 2050. If high indirect land-use change (ILUC) emissions are included, this results in a decrease by 30 % in bioenergy and a 68 % increase in marginal abatement costs by 2050. Hydrogen is used instead of bioenergy in the freight sector in this scenario, while private cars are fuelled by renewable electricity. If GHG emissions from ILUC were considered less severe, indigenous grass biomethane becomes the key biofuel representing 31 % of total bioenergy consumption. This is in line with recent research in Ireland of the key role that grass biomethane can play.
机译:土地用途变化产生的温室气体排放特别关注陆地生物燃料。用化石燃料代替生物燃料避免的排放可能会被直接和间接土地利用变化(LUC)的排放所抵消。在欧盟缓解政策的背景下,迫切需要调查土地用途变化的排放可能对生物能源和生物燃料的扩张产生什么影响。本文重点关注爱尔兰,在实现其可再生能源和减少温室气体排放目标方面面临许多挑战。爱尔兰TIMES能源系统模型用于评估一系列土地利用变化排放水平对爱尔兰低碳能源系统演变的影响。在参考情景中,忽略了LUC,爱尔兰到2050年实现了成本最低的低碳能源系统。如果包括高间接土地利用变化(ILUC)排放,这将导致生物能源减少30%,而到2050年,边际减排成本将增加68%。在这种情况下,货运部门使用氢气代替生物能源,而私家车则由可再生电力提供燃料。如果认为来自ILUC的温室气体排放不那么严重,那么本地草类生物甲烷将成为主要生物燃料,占生物能源总消费量的31%。这与爱尔兰最近对草类生物甲烷可以发挥关键作用的研究相一致。

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