G2TT
来源类型FEEM working papers "Note di lavoro" series
规范类型论文
Beyond 2020 - Strategies and Costs for Transforming the European Energy System
Brigitte Knopf; Yen-Heng Henry Chen; Enrica De Cian; Hannah Förster; Amit Kanudia; Ioanna Karkatsouli; Ilkka Keppo; Tiina Koljonen; Katja Schumacher; Detlef van Vuuren
发表日期2014
出处Climate Change and Sustainable Development
出版年2014
语种英语
摘要The Energy Modeling Forum 28 (EMF28) study systematically explores the energy system transition required to meet the European goal of reducing greenhouse gas (GHG) emissions by 80% by 2050. The 80% scenario is compared to a reference case that aims to achieve a 40% GHG reduction target. The paper investigates mitigation strategies beyond 2020 and the interplay between different decarbonization options. The models present different technology pathways for the decarbonization of Europe, but a common finding across the scenarios and models is the prominent role of energy efficiency and renewable energy sources. In particular, wind power and bioenergy increase considerably beyond current deployment levels. Up to 2030, the transformation strategies are similar across all models and for both levels of emission reduction. However, mitigation becomes more challenging after 2040. With some exceptions, our analysis agrees with the main findings of the “Energy Roadmap 2050” presented by the European Commission. *** Suggested citation: Brigitte Knopf et al, Clim. Change Econ. 04, 1340001 (2013), http://www.worldscientific.com/doi/abs/10.1142/S2010007813400010
特色分类Q2;Q4
关键词European Decarbonisation Mitigation Scenarios Model Comparison Climate Change EU Energy Roadmap 2050
URLhttps://www.feem.it/en/publications/feem-working-papers-note-di-lavoro-series/beyond-2020-strategies-and-costs-for-transforming-the-european-energy-system/
来源智库Fondazione Eni Enrico Mattei (Italy)
资源类型智库出版物
条目标识符http://119.78.100.153/handle/2XGU8XDN/118255
推荐引用方式
GB/T 7714
Brigitte Knopf,Yen-Heng Henry Chen,Enrica De Cian,et al. Beyond 2020 - Strategies and Costs for Transforming the European Energy System. 2014.
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