On the optimality of 2°C targets and a decomposition of uncertainty
Publication date
2021-12
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Article
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Abstract
Determining international climate mitigation response strategies is a complex task. Integrated Assessment Models support this process by analysing the interplay of the most relevant factors, including socio-economic developments, climate system uncertainty, damage estimates, mitigation costs and discount rates. Here, we develop a meta-model that disentangles the uncertainties of these factors using full literature ranges. This model allows comparing insights of the cost-minimising and cost-benefit modelling communities. Typically, mitigation scenarios focus on minimum-cost pathways achieving the Paris Agreement without accounting for damages; our analysis shows doing so could double the initial carbon price. In a full cost-benefit setting, we show that the optimal temperature target does not exceed 2.5 °C when considering medium damages and low discount rates, even with high mitigation costs. With low mitigation costs, optimal temperature change drops to 1.5 °C or less. The most important factor determining the optimal temperature is the damage function, accounting for 50% of the uncertainty.
Keywords
Environmental economics, Environmental sciences, environmental social sciences, Socioeconomic scenarios, General Physics and Astronomy, General Chemistry, General Biochemistry,Genetics and Molecular Biology, SDG 13 - Climate Action
Citation
van der Wijst, K-I, Hof, A F & van Vuuren, D P 2021, 'On the optimality of 2°C targets and a decomposition of uncertainty', Nature Communications, vol. 12, no. 1, 2575, pp. 1-11. https://doi.org/10.1038/s41467-021-22826-5