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Limiting Global Warming to Well Below 2 degreesC: Energy System Modelling and Policy Development. 2018 ed.
・ISBN 978-3-319-74423-0 hard EUR 139.99
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| 著者・編者 | Giannakidis, George / Karlsson, Kenneth / Labriet, Maryse / O Gallachoir, B. (eds.), |
|---|---|
| シリーズ | (Lecture Notes in Energy) |
| 出版社 | (Springer International Publishing AG, SZ) |
| 出版年月 | 2018 |
| ページ数 | 423 pp. |
| 言語 | ENG |
| ニュース番号 | <A02-75359> |
解説
This book presents the energy system roadmaps necessary to limit global temperature increase to below 2 degreesC, in order to avoid the catastrophic impacts of climate change. It provides a unique perspective on and critical understanding of the feasibility of a well-below-2 degreesC world by exploring energy system pathways, technology innovations, behaviour change and the macro-economic impacts of achieving carbon neutrality by mid-century. The transformative changes in the energy transition are explored using energy systems models and scenario analyses that are applied to various cities, countries and at a global scale to offer scientific evidence to underpin complex policy decisions relating to climate change mitigation and interrelated issues like energy security and the energy-water nexus. It includes several chapters directly related to the Nationally Determined Contributions proposed in the context of the recent Paris Agreement on Climate Change.
In summary, the book collates a range of concrete analyses at different scales from around the globe, revisiting the roles of countries, cities and local communities in pathways to significantly reduce greenhouse gas emissions and make a well-below-2 degreesC world a reality.
A valuable source of information for energy modellers in both the industry and public sectors, it provides a critical understanding of both the feasibility of roadmaps to achieve a well-below-2 degreesC world, and the diversity and wide applications of energy systems models. Encompassing behaviour changes; technology innovations; macro-economic impacts; and other environmental challenges, such as water, it is also of interest to energy economists and engineers, as well as economic modellers working in the field of climate change mitigation.