Uncertain Environmental Footprint of Current and Future Battery Electric Vehicles

Publication date

2018

Authors

Cox, Brian
Mutel, Christopher L
Bauer, Christian
Mendoza Beltran, Angelica
van Vuuren, DetlefORCID 0000-0003-0398-2831ISNI 0000000040910093

Editors

Advisors

Supervisors

Document Type

Article
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Abstract

The future environmental impacts of battery electric vehicles (EVs) are very important given their expected dominance in future transport systems. Previous studies have shown these impacts to be highly uncertain, though a detailed treatment of this uncertainty is still lacking. We help to fill this gap by using Monte Carlo and global sensitivity analysis to quantify parametric uncertainty and also consider two additional factors that have not yet been addressed in the field. First, we include changes to driving patterns due to the introduction of autonomous and connected vehicles. Second, we deeply integrate scenario results from the IMAGE integrated assessment model into our life cycle database to include the impacts of changes to the electricity sector on the environmental burdens of producing and recharging future EVs. Future EVs are expected to have 45-78% lower climate change impacts than current EVs. Electricity used for charging is the largest source of variability in results, though vehicle size, lifetime, driving patterns, and battery size also strongly contribute to variability. We also show that it is imperative to consider changes to the electricity sector when calculating upstream impacts of EVs, as without this, results could be overestimated by up to 75%.

Keywords

Taverne, SDG 13 - Climate Action

Citation

Cox, B, Mutel, C L, Bauer, C, Mendoza Beltran, A & van Vuuren, D P 2018, 'Uncertain Environmental Footprint of Current and Future Battery Electric Vehicles', Environmental Science & Technology, vol. 52, no. 8, pp. 4989–4995. https://doi.org/10.1021/acs.est.8b00261