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The Shared Socioeconomic Pathways and their energy, land use, and greenhouse gas emissions implications: An overview

温室气体 基线(sea) 气候变化 土地利用 自然资源经济学 减缓气候变化 环境资源管理 土地利用、土地利用的变化和林业 可持续发展 社会经济发展 环境科学 环境规划 地理 环境经济学 经济 经济增长 政治学 工程类 土木工程 生物 生态学 法学
作者
Keywan Riahi,Detlef P. van Vuuren,Elmar Kriegler,Jae Edmonds,Brian C. O’Neill,Shinichiro Fujimori,Nico Bauer,Katherine Calvin,Rob Dellink,Oliver Fricko,Wolfgang Lutz,Alexander Popp,Jesús Crespo Cuaresma,Samir KC,Marian Leimbach,Leiwen Jiang,Tom Kram,Shilpa Rao,Johannes Emmerling,Kristie L. Ebi,Tomoko Hasegawa,Peter Havlík,Florian Humpenöder,Lara Aleluia Reis,Steven J. Smith,Elke Stehfest,Valentina Bosetti,Jiyong Eom,David Gernaat,Toshihiko Masui,Joeri Rogelj,Jessica Strefler,Laurent Drouet,Volker Krey,Gunnar Luderer,Mathijs Harmsen,Kiyoshi Takahashi,Lavinia Baumstark,Jonathan Doelman,Mikiko Kainuma,Zbigniew Klimont,Giacomo Marangoni,Hermann Lotze‐Campen,Michael Obersteiner,Andrzej Tabeau,Massimo Tavoni
出处
期刊:Global Environmental Change-human and Policy Dimensions [Elsevier]
卷期号:42: 153-168 被引量:4706
标识
DOI:10.1016/j.gloenvcha.2016.05.009
摘要

This paper presents the overview of the Shared Socioeconomic Pathways (SSPs) and their energy, land use, and emissions implications. The SSPs are part of a new scenario framework, established by the climate change research community in order to facilitate the integrated analysis of future climate impacts, vulnerabilities, adaptation, and mitigation. The pathways were developed over the last years as a joint community effort and describe plausible major global developments that together would lead in the future to different challenges for mitigation and adaptation to climate change. The SSPs are based on five narratives describing alternative socio-economic developments, including sustainable development, regional rivalry, inequality, fossil-fueled development, and middle-of-the-road development. The long-term demographic and economic projections of the SSPs depict a wide uncertainty range consistent with the scenario literature. A multi-model approach was used for the elaboration of the energy, land-use and the emissions trajectories of SSP-based scenarios. The baseline scenarios lead to global energy consumption of 400–1200 EJ in 2100, and feature vastly different land-use dynamics, ranging from a possible reduction in cropland area up to a massive expansion by more than 700 million hectares by 2100. The associated annual CO2 emissions of the baseline scenarios range from about 25 GtCO2 to more than 120 GtCO2 per year by 2100. With respect to mitigation, we find that associated costs strongly depend on three factors: (1) the policy assumptions, (2) the socio-economic narrative, and (3) the stringency of the target. The carbon price for reaching the target of 2.6 W/m2 that is consistent with a temperature change limit of 2 °C, differs in our analysis thus by about a factor of three across the SSP marker scenarios. Moreover, many models could not reach this target from the SSPs with high mitigation challenges. While the SSPs were designed to represent different mitigation and adaptation challenges, the resulting narratives and quantifications span a wide range of different futures broadly representative of the current literature. This allows their subsequent use and development in new assessments and research projects. Critical next steps for the community scenario process will, among others, involve regional and sectoral extensions, further elaboration of the adaptation and impacts dimension, as well as employing the SSP scenarios with the new generation of earth system models as part of the 6th climate model intercomparison project (CMIP6).
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