Using decomposition analysis to determine the main contributing factors to carbon neutrality across sectors

Publication date

2022-01-01

Authors

Chen, Hsing-HsuanISNI 0000000506355934
Hof, AndriesORCID 0000-0002-7568-5038ISNI 0000000390278972
Daioglou, VassilisISNI 0000000419508234
De Boer, Harmen SytzeISNI 0000000506358115
Edelenbosch, OreaneISNI 0000000493300992
van den Berg, MaartenISNI 000000049233156X
van der Wijst, Kaj-IvarORCID 0000-0002-9588-7059ISNI 0000000512671538
van Vuuren, DetlefORCID 0000-0003-0398-2831ISNI 0000000040910093

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Advisors

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Document Type

Article
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cc_by

Abstract

This paper uses decomposition analysis to investigate the key contributions to changes in greenhouse gas emissions in different scenarios. We derive decomposition formulas for the three highest-emitting sectors: power generation, industry, and transportation (both passenger and freight). These formulas were applied to recently developed 1.5 °C emission scenarios by the Integrated Model to Assess the Global Environment (IMAGE), emphasising the role of renewables and lifestyle changes. The decomposition analysis shows that carbon capture and storage (CCS), both from fossil fuel and bioenergy burning, renewables and reducing carbon intensity provide the larg-est contributions to emission reduction in the scenarios. Efficiency improvement is also critical, but part of the potential is already achieved in the Baseline scenario. The relative importance of different emission reduction drivers is similar in the OECD (characterised by relatively high per capita in-come levels and emissions) and non-OECD (characterised by relatively high carbon intensities of the economy) region, but there are some noteworthy differences. In the non-OECD region, improv-ing efficiency in industry and transport and increasing the share of renewables in power generation are more important in reducing emissions than in the OECD region, while CCS in power generation and electrification of passenger transport are more important drivers in the OECD region.

Keywords

Climate change, Decomposition analysis, Integrated assessment, Mitigation, Net-zero emission, Paris Agreement, Scenarios, Shared socioeconomic pathways, Renewable Energy, Sustainability and the Environment, Fuel Technology, Energy Engineering and Power Technology, Energy (miscellaneous), Control and Optimization, Electrical and Electronic Engineering, SDG 7 - Affordable and Clean Energy, SDG 13 - Climate Action, SDG 9 - Industry, Innovation, and Infrastructure

Citation

Chen, H H, Hof, A F, Daioglou, V, de Boer, H S, Edelenbosch, O Y, van den Berg, M, van der Wijst, K I & van Vuuren, D P 2022, 'Using decomposition analysis to determine the main contributing factors to carbon neutrality across sectors', Energies, vol. 15, no. 1, 132, pp. 1-18. https://doi.org/10.3390/en15010132