2025/02/10 by Marten Ovaere, Stef Proost · 1 voice
Environmental Science · Economics, Econometrics and Finance · #Advanced Aircraft Design and Technologies #Aviation Industry Analysis and Trends #Climate Change Policy and Economics
paper · doi:10.1016/j.ecotra.2025.100397
openalex publication_date 2025/02/10 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22
We develop a three-stage game with three governments, a EU-US aircraft production duopoly, and competitive airlines. The model determines the optimal combination of fossil fuel taxes and fuel efficiency standards to decarbonize the aviation sector with imperfect competition and technological spillovers, under various government cooperation levels. We find that without international cooperation, technology spillovers prevent large efficiency investments. Fuel taxes are low but exceed domestic climate damages in regions without aircraft production. Regions with domestic aircraft producers subsidize aviation when the social cost of carbon is low. Second, EU-US cooperation increases fuel efficiency, but fuel taxes are lower than without cooperation, such that carbon emission reductions are limited both with and without cooperation. Third, global cooperation yields the largest efficiency gains, but fuel taxes remain below the world climate damage. Finally, achieving net-zero emissions requires a combination of fuel efficiency, demand reduction through higher fuel taxes, and new aviation fuels. • Three-stage game with three governments and a EU-US aircraft production duopoly. • Optimal fossil fuel taxes and fuel efficiency standards to decarbonize aviation. • Taxes are below/above climate damages in regions with/without aircraft production. • EU-US cooperation increases fuel efficiency but decreases fuel taxes. • Global cooperation has largest fuel efficiency, but taxes stay below climate damage.