RCP 8.5—A scenario of comparatively high greenhouse gas emissions
RCP 8.5 — сценарий сравнительно высоких выбросов парниковых газов
2011-08-12
SCID: 54.1/pkzgzqw5
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Integrated Assessment FrameworkMESSAGE modelRCP8.5 scenariogreenhouse gas emissionsland-use and land-cover change
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Abstract (AI)
This paper summarizes the main characteristics of the RCP8.5 scenario. The RCP8.5 combines assumptions about high population and relatively slow income growth with modest rates of technological change and energy intensity improvements, leading in the long term to high energy demand and GHG emissions in absence of climate change policies. Compared to the total set of Representative Concentration Pathways (RCPs), RCP8.5 thus corresponds to the pathway with the highest greenhouse gas emissions. Using the IIASA Integrated Assessment Framework and the MESSAGE model for the development of the RCP8.5, we focus in this paper on two important extensions compared to earlier scenarios: 1) the development of spatially explicit air pollution projections, and 2) enhancements in the land-use and land-cover change projections. In addition, we explore scenario variants that use RCP8.5 as a baseline, and assume different degrees of greenhouse gas mitigation policies to reduce radiative forcing. Based on our modeling framework, we find it technically possible to limit forcing from RCP8.5 to lower levels comparable to the other RCPs (2.6 to 6 W/m 2 ). Our scenario analysis further indicates that climate policy-induced changes of global energy supply and demand may lead to significant co-benefits for other policy priorities, such as local air pollution.
Key Findings
1
Climate policies that alter global energy supply and demand may also produce substantial co-benefits, including reductions in local air pollution.
2
Model variants indicate that mitigation can technically reduce RCP8.5 radiative forcing to levels comparable with other RCPs, ranging from 2.6 to 6 W/m².
3
RCP8.5 represents the highest greenhouse-gas-emissions pathway among the Representative Concentration Pathways, driven by high population, slow income growth, and limited technological progress.
4
The IIASA Integrated Assessment Framework and MESSAGE model extend earlier scenarios with spatially explicit air-pollution projections and improved land-use and land-cover projections.
5
The scenario projects high long-term energy demand and greenhouse-gas emissions in the absence of climate policies.
Research Object
The RCP8.5 scenario of high greenhouse gas emissions, including its energy, air-pollution, and land-use/land-cover projections
Research Subject
The scenario’s long-term emissions and energy-demand pathway, spatially explicit air-pollution and land-use/land-cover projections, and the effects of greenhouse-gas mitigation variants on radiative forcing and co-benefits
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2011-08-12
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