Author
Listed:
- David E. H. J. Gernaat
(PBL Netherlands Environmental Assessment Agency
Utrecht University)
- Harmen Sytze Boer
(PBL Netherlands Environmental Assessment Agency
Utrecht University)
- Vassilis Daioglou
(PBL Netherlands Environmental Assessment Agency
Utrecht University)
- Seleshi G. Yalew
(Utrecht University
Technical University of Delft
Wageningen University and Research)
- Christoph Müller
(Potsdam Institute for Climate Impact Research, Member of the Leibniz Association)
- Detlef P. Vuuren
(PBL Netherlands Environmental Assessment Agency
Utrecht University)
Abstract
Renewable energy resources, which depend on climate, may be susceptible to future climate change. Here we use climate and integrated assessment models to estimate this effect on key renewables. Future potential and costs are quantified across two warming scenarios for eight technologies: utility-scale and rooftop photovoltaic, concentrated solar power, onshore and offshore wind energy, first-generation and lignocellulosic bioenergy, and hydropower. The generated cost–supply curves are then used to estimate energy system impacts. In a baseline warming scenario, the largest impact is increased availability of bioenergy, though this depends on the strength of CO2 fertilization. Impacts on hydropower and wind energy are uncertain, with declines in some regions and increases in others, and impacts on solar power are minor. In a future mitigation scenario, these impacts are smaller, but the energy system response is similar to that in the baseline scenario given a larger reliance of the mitigation scenario on renewables.
Suggested Citation
David E. H. J. Gernaat & Harmen Sytze Boer & Vassilis Daioglou & Seleshi G. Yalew & Christoph Müller & Detlef P. Vuuren, 2021.
"Climate change impacts on renewable energy supply,"
Nature Climate Change, Nature, vol. 11(2), pages 119-125, February.
Handle:
RePEc:nat:natcli:v:11:y:2021:i:2:d:10.1038_s41558-020-00949-9
DOI: 10.1038/s41558-020-00949-9
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