Environmental trade-offs of direct air capture technologies in climate change mitigation toward 2100

Publication date

2022-12

Authors

Qiu, Yang
Lamers, Patrick
Daioglou, V.ORCID 0000-0002-6028-352XISNI 0000000419508234
McQueen, Noah
de Boer, Harmen-Sytze
Harmsen, Mathijs
Wilcox, Jennifer
Bardow, André
Suh, Sangwon

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Direct air capture (DAC) is critical for achieving stringent climate targets, yet the environmental implications of its large-scale deployment have not been evaluated in this context. Performing a prospective life cycle assessment for two promising technologies in a series of climate change mitigation scenarios, we find that electricity sector decarbonization and DAC technology improvements are both indispensable to avoid environmental problem-shifting. Decarbonizing the electricity sector improves the sequestration efficiency, but also increases the terrestrial ecotoxicity and metal depletion levels per tonne of CO 2 sequestered via DAC. These increases can be reduced by improvements in DAC material and energy use efficiencies. DAC exhibits regional environmental impact variations, highlighting the importance of smart siting related to energy system planning and integration. DAC deployment aids the achievement of long-term climate targets, its environmental and climate performance however depend on sectoral mitigation actions, and thus should not suggest a relaxation of sectoral decarbonization targets.

Keywords

Climate Change, Electricity, Environment, Prospective Studies, Technology, General, General Physics and Astronomy, General Chemistry, General Biochemistry,Genetics and Molecular Biology, SDG 3 - Good Health and Well-being, SDG 7 - Affordable and Clean Energy, SDG 12 - Responsible Consumption and Production, SDG 13 - Climate Action

Citation

Qiu, Y, Lamers, P, Daioglou, V, McQueen, N, de Boer, H-S, Harmsen, M, Wilcox, J, Bardow, A & Suh, S 2022, 'Environmental trade-offs of direct air capture technologies in climate change mitigation toward 2100', Nature Communications, vol. 13, no. 1, 3635, pp. 1-13. https://doi.org/10.1038/s41467-022-31146-1