Cost competitiveness of alternative heavy-duty truck technologies under real-world utilisation profiles

J Johanna Hoppe F Falko Ueckerdt P Patrick Plötz S Steffen Link D Daniel Speth B Bastian Weißenburger P Pei Zhao (Institute for Molecular Science, 38, NishigoNaka, Myodaiji, Okazaki-shi, Aichi 444-8601, Japan) R Robert Pietzcker

Abstract

Abstract Road freight transport is essential to modern economies, yet its decarbonization remains challenging. While previous studies often focused on average-duty or long-haul applications, the logistics sector is highly heterogeneous, spanning a wide range of truck usage patterns. This study assesses the economic viability of battery electric trucks (BETs) and fuel cell electric trucks (FCETs) using microdata from four million trucks across Europe. Under baseline assumptions for cost and technical maturity, BETs outperform diesel trucks in total cost of ownership for 70-90% of heavy-duty road freight activity by 2030. When accounting for limited charging infrastructure until 2030, 25% of kilometres, corresponding to 19% of vehicles, remain economically and technically feasible-substantially higher than the 5-9% share of the total truck fleet expected under the 2030 EU CO 2 standards. By 2035, infrastructure roll-out and improved costs increase the share of kilometres to 77%. In contrast, the window for FCET cost-competitiveness is narrow.

Article Details

Volume / Issue Vol. 17, Issue 1
Published August 08, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

J

Johanna Hoppe

F

Falko Ueckerdt

P

Patrick Plötz

S

Steffen Link

D

Daniel Speth

B

Bastian Weißenburger

P

Pei Zhao

Institute for Molecular Science, 38, NishigoNaka, Myodaiji, Okazaki-shi, Aichi 444-8601, Japan

R

Robert Pietzcker