globalchange  > 过去全球变化的重建
DOI: 10.1039/c8ee03682a
WOS记录号: WOS:000471283100004
论文题名:
The mutual dependence of negative emission technologies and energy systems
作者: Creutzig, Felix1,2; Breyer, Christian3; Hilaire, Jerome1,4,5; Minx, Jan1,6; Peters, Glen P.7; Socolow, Robert8
通讯作者: Creutzig, Felix
刊名: ENERGY & ENVIRONMENTAL SCIENCE
ISSN: 1754-5692
EISSN: 1754-5706
出版年: 2019
卷: 12, 期:6, 页码:1805-1817
语种: 英语
WOS关键词: CLIMATE-CHANGE MITIGATION ; DIRECT AIR CAPTURE ; TRANSITION ; CO2 ; BIOFUELS ; BECCS ; LAND ; COST
WOS学科分类: Chemistry, Multidisciplinary ; Energy & Fuels ; Engineering, Chemical ; Environmental Sciences
WOS研究方向: Chemistry ; Energy & Fuels ; Engineering ; Environmental Sciences & Ecology
英文摘要:

While a rapid decommissioning of fossil fuel technologies deserves priority, most climate stabilization scenarios suggest that negative emission technologies ( NETs) are required to keep global warming well below 2 degrees C. Yet, current discussions on NETs are lacking a distinct energy perspective. Prominent NETs, such as bioenergy with carbon capture and storage ( BECCS) and direct air carbon capture and storage ( DACCS), will integrate differently into the future energy system, requiring a concerted research effort to determine adequate means of deployment. In this perspective, we discuss the importance of energy per carbon metrics, factors of future cost development, and the dynamic response of NETs in intermittent energy systems. The energy implications of NETs deployed at scale are massive, and NETs may conceivably impact future energy systems substantially. DACCS outperform BECCS in terms of primary energy required per ton of carbon sequestered. For different assumptions, DACCS displays a sequestration efficiency of 75-100%, whereas BECCS displays a sequestration efficiency of 50-90% or less if indirect land use change is included. Carbon dioxide removal costs of DACCS are considerably higher than BECCS, but if DACCS modularity and granularity helps to foster technological learning to o100$ per tCO(2), DACCS may remove CO2 at gigaton scale. DACCS also requires two magnitudes less land than BECCS. Designing NET systems that match intermittent renewable energies will be key for stringent climate change mitigation. Our results contribute to an emerging understanding of NETs that is notably different to that derived from scenario modelling.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/139181
Appears in Collections:过去全球变化的重建

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作者单位: 1.Mercator Res Inst Global Commons & Climate Change, Berlin, Germany
2.Tech Univ Berlin, Chair Sustainabil Econ Human Settlements, Berlin, Germany
3.Lappeenranta Univ Technol, Lappeenranta, Finland
4.Potsdam Inst Climate Impact Res, POB 601203, D-14412 Potsdam, Germany
5.Leibniz Assoc, POB 601203, D-14412 Potsdam, Germany
6.Univ Leeds, Leeds, W Yorkshire, England
7.Ctr Int Climate & Environm Res Oslo, Oslo, Norway
8.Princeton Univ, Mech & Aerosp Engn, Princeton, NJ 08544 USA

Recommended Citation:
Creutzig, Felix,Breyer, Christian,Hilaire, Jerome,et al. The mutual dependence of negative emission technologies and energy systems[J]. ENERGY & ENVIRONMENTAL SCIENCE,2019-01-01,12(6):1805-1817
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