City-level energy and emission assessment based on 20+ million electric vehicle registrations in China

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Deng, Yanqiao, Ma, Minda, Zhou, Nan, Yuan, Hong, Ma, Zhili, Ma, Xin
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918508485410816
author Deng, Yanqiao
Ma, Minda
Zhou, Nan
Yuan, Hong
Ma, Zhili
Ma, Xin
author_facet Deng, Yanqiao
Ma, Minda
Zhou, Nan
Yuan, Hong
Ma, Zhili
Ma, Xin
contents China, the world's largest electric vehicle (EV) market, plays a pivotal role in global decarbonization of the transport sector. We present the first high-resolution assessment of EV adoption in 295 cities, utilizing more than 20 million registrations of 586 EV models tracked monthly from 2022 to 2024 and projecting transition pathways to 2035. Real-world data reveal that EVs are 30.9-212.8 megajoules per 100 km more energy efficient than internal combustion vehicles, yet their carbon intensities range from 18.2 to 270.4 gCO2/km among provinces. The limited electrification of hybrids means that gasoline still accounts for 44% of EV energy use. Scenario projections suggest that emissions will peak about 2030 at 21.1-30.9 megatonnes of CO2 and decline by 2035 under continued market transition. The findings establish an empirical foundation for accurate emissions accounting, emphasize the need to reduce regional disparities in adoptability, and offer globally relevant insights for road-transport decarbonization.
format Preprint
id arxiv_https___arxiv_org_abs_2511_20742
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle City-level energy and emission assessment based on 20+ million electric vehicle registrations in China
Deng, Yanqiao
Ma, Minda
Zhou, Nan
Yuan, Hong
Ma, Zhili
Ma, Xin
Physics and Society
China, the world's largest electric vehicle (EV) market, plays a pivotal role in global decarbonization of the transport sector. We present the first high-resolution assessment of EV adoption in 295 cities, utilizing more than 20 million registrations of 586 EV models tracked monthly from 2022 to 2024 and projecting transition pathways to 2035. Real-world data reveal that EVs are 30.9-212.8 megajoules per 100 km more energy efficient than internal combustion vehicles, yet their carbon intensities range from 18.2 to 270.4 gCO2/km among provinces. The limited electrification of hybrids means that gasoline still accounts for 44% of EV energy use. Scenario projections suggest that emissions will peak about 2030 at 21.1-30.9 megatonnes of CO2 and decline by 2035 under continued market transition. The findings establish an empirical foundation for accurate emissions accounting, emphasize the need to reduce regional disparities in adoptability, and offer globally relevant insights for road-transport decarbonization.
title City-level energy and emission assessment based on 20+ million electric vehicle registrations in China
topic Physics and Society
url https://arxiv.org/abs/2511.20742