Early action on Paris Agreement allows for more time to change energy systems

Publication date

2017-09-01

Authors

van Soest, Heleen L.ORCID 0000-0001-5307-5880ISNI 0000000527843566
De Boer, Harmen SytzeISNI 0000000506358115
Roelfsema, Mark
den Elzen, Michel G J
Admiraal, Annemiek
van Vuuren, Detlef P.ORCID 0000-0003-0398-2831ISNI 0000000040910093
Hof, Andries F.ORCID 0000-0002-7568-5038ISNI 0000000390278972
van den Berg, MaartenORCID 0000-0001-9649-7995ISNI 000000049233156X
Harmsen, MathijsORCID 0000-0001-6755-1569ISNI 0000000436397046
Gernaat, David E.H.J.ORCID 0000-0003-4994-1453ISNI 0000000492481517

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

Abstract

The IMAGE integrated assessment model was used to develop a set of scenarios to evaluate the Nationally Determined Contributions (NDCs) submitted by Parties under the Paris Agreement. The scenarios project emissions and energy system changes under (i) current policies, (ii) implementation of the NDCs, and (iii) various trajectories to a radiative forcing level of 2.8 W/m2 in 2100, which gives a probability of about two thirds to limit warming to below 2 °C. The scenarios show that a cost-optimal pathway from 2020 onwards towards 2.8 W/m2 leads to a global greenhouse gas emission level of 38 gigatonne CO2 equivalent (GtCO2eq) by 2030, equal to a reduction of 20% compared to the 2010 level. The NDCs are projected to lead to 2030 emission levels of 50 GtCO2eq, which is still an increase compared to the 2010 level. A scenario that achieves the 2.8 W/m2 forcing level in 2100 from the 2030 NDC level requires more rapid transitions after 2030 to meet the forcing target. It shows an annual reduction rate in greenhouse gas emissions of 4.7% between 2030 and 2050, rapidly phasing out unabated coal-fired power plant capacity, more rapid scale-up of low-carbon energy, and higher mitigation costs. A bridge scenario shows that enhancing the ambition level of NDCs before 2030 allows for a smoother energy system transition, with average annual emission reduction rates of 4.5% between 2030 and 2050, and more time to phase out coal capacity.

Keywords

Global and Planetary Change, Atmospheric Science

Citation

van Soest, H L, de Boer, H S, Roelfsema, M, den Elzen, M G J, Admiraal, A, van Vuuren, D P, Hof, A F, van den Berg, M, Harmsen, M J H M, Gernaat, D E H J & Forsell, N 2017, 'Early action on Paris Agreement allows for more time to change energy systems', Climatic Change, vol. 144, no. 2, pp. 165-179. https://doi.org/10.1007/s10584-017-2027-8