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Roberto Schaeffer

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Open access Sep 2026

Sector-detailed urban greenhouse gas emission futures derived from the ScenarioMIP-CMIP7 ensemble

Emission reductions required to meet the goals of the Paris Agreement have been extensively analyzed using integrated assessment modeling scenarios. However, the contribution of urban areas in aggregate, globally, by region and by city type, remains underexplored. Here, we develop a spatially explicit framework to downscale global emissions pathways to urban areas, differentiated by region and city type. Ambitious climate change mitigation could deliver 21 GtCO₂e of greenhouse gas (GHG) emission reductions in urban areas by 2050 relative to a continuation of current policies and trends, primarily by transitioning away from fossil fuels in electricity and heat supply, deep decarbonization of industry, and mitigation in the transport and buildings sectors. Mitigation potential is concentrated in established and rapidly growing cities, reflecting their high current per-capita emission levels. Asian regions with high urbanization levels dominate global urban emissions and reduction potentials. The findings underscore the central role of cities in achieving global climate targets and highlight the importance of differentiated mitigation strategies across regions and city types.

Gunnar Luderer, Pascal Weigmann, Mark Roelfsema et al. · 0 citations
Open access Jul 2026

A mix of policies is needed to close the climate ambition gap

We compare eight integrated assessment models to analyze the effects of additional climate policies targeting production and energy supply, consumption and energy demand, and the land sector on top of a moderate carbon price. We find that the combination of these additional policies can close the gap between well-below 2 °C and 1.5 °C pathways with overshoot assuming the same carbon price trajectory. While production and energy supply policies are necessary to decarbonize the energy sector in the long run, consumption and demand-side transformations can reduce emissions especially in the short-term, thus enabling lower cumulative emissions leading to lower peak temperature. Additional land policies can not only reduce CO2 emissions further, but also target non-CO2 emissions and reduce global warming even further.

J. Strefler, E. Kriegler, N. Bauer et al. · 0 citations

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