globalchange  > 科学计划与规划
DOI: 10.1080/14693062.2016.1242058
Scopus记录号: 2-s2.0-84999780401
论文题名:
Decarbonizing the EU energy system by 2050: an important role for BECCS
作者: Solano Rodriguez B; , Drummond P; , Ekins P
刊名: Climate Policy
ISSN: 1469-3062
EISSN: 1752-7457
出版年: 2017
卷: 17
起始页码: S93
结束页码: S110
语种: 英语
英文关键词: carbon capture and storage ; energy scenarios ; energy systems ; mitigation scenarios ; sectoral emissions
Scopus关键词: abatement cost ; biomass ; building ; carbon emission ; carbon sequestration ; emission control ; European Union ; road transport ; Europe
Scopus学科分类: nvironmental Science: General Environmental Science ; Earth and Planetary Sciences: Atmospheric Science
英文摘要: This article examines the implications for the EU’s energy system if an 80% reduction in CO2 emissions is to be achieved by 2050 against 1990 levels, using the European TIMES Model (ETM-UCL) to project a least-cost pathway that meets this CO2 constraint (‘Policy Success’), along with milestone targets for 2020. A Reference scenario (no CO2 constraints post-2020) was analysed to allow for comparison. The key conclusions are as follows: (a) the achievement of negative emissions in the power sector via the use of biomass with carbon capture and storage (BECCS) allows for much more limited decarbonization in the buildings and transport sectors; (b) CCS is also extensively used for decarbonization of the industrial sector; (c) because of the absence in the model of options for transport mode-switching and building fabric efficiency improvements, the transport and buildings sectors achieve relatively little abatement by 2050–the inclusion of these options could considerably reduce the need for BECCS and the cost of abatement; (d) decarbonization of the EU’s energy system by 2050 would increase energy system costs by 14% compared to a Reference scenario with no CO2 constraints; and (e) average EU-wide marginal CO2 abatement costs in Policy Success reach $300/tCO2 in 2050. Such a value is within the (wide) range of marginal carbon prices produced by comparable scenarios in other studies. Policy relevance The EU has set itself a target of reducing its greenhouse gas emissions by at least 80% by 2050, against 1990 levels. This will require a reduction of at least 80% in CO2 emissions from the energy system. This article, using results from the European TIMES Model (ETM-UCL), demonstrates that in the absence of significant decarbonization in the buildings and road transport sectors, substantial negative emissions in the power sector must be achieved, through as-yet unproven technologies (involving BECCS). Therefore, a comprehensive strategy to reduce emissions across all energy-using sectors is required if this outcome is to be avoided. In addition, this article adds further evidence to the notion that substantial decarbonization of the EU’s energy system may be achieved through a relatively small additional investment above that required anyway. © 2016 Informa UK Limited, trading as Taylor & Francis Group.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/80286
Appears in Collections:科学计划与规划

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作者单位: UCL Energy Institute, University College London, Central House, 14 Upper Woburn Place, London, United Kingdom; UCL Institute for Sustainable Resources, University College London, Central House, 14 Upper Woburn Place, London, United Kingdom

Recommended Citation:
Solano Rodriguez B,, Drummond P,, Ekins P. Decarbonizing the EU energy system by 2050: an important role for BECCS[J]. Climate Policy,2017-01-01,17
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