Life-Cycle Carbon Emissions of Electric Vehicles in China: A Review

Accelerating the low-carbon transition of transport is essential to addressing global climate change. Although the rapid growth of the electric vehicle (EV) fleet highlights the environmental benefits of electrified mobility, carbon-intensive upstream electricity generation and energy-intensive battery production continue to constrain the life-cycle emissions reduction potential of EVs. Focusing on China, this structured narrative review examines 121 core references from 2004 to 2026 to synthesize carbon-accounting methods and emissions across the manufacturing, use, and end-of-life stages. A supplementary keyword co-occurrence analysis of 1180 Web of Science records provides an overview of the research field. The reviewed evidence indicates that embodied emissions from manufacturing account for more than 30% of total life-cycle emissions, making this stage important to life-cycle decarbonization. The use stage offers the greatest emissions reduction potential and is closely linked to regional grid carbon intensity and vehicle-to-grid (V2G) scheduling. At the end of life, second-life battery use and closed-loop recycling can reduce the burden associated with initial production and support material circularity. Drawing on these findings and the development of China’s EV industry, this review proposes decarbonization pathways for enterprises and policymakers to support the coordinated development of the transport and energy sectors.

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Publication Details

Journal
World Electric Vehicle Journal
Published
2026-09-30
DOI
https://doi.org/10.3390/wevj17100513
Primary Topic
Electric Vehicles and Infrastructure
Type
article
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0.00
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Life-Cycle Carbon Emissions of Electric Vehicles in China: A Review

Hewu Wang, Hao Xu, Fuda Gong, Xiaoru Chen et al.
World Electric Vehicle Journal
Electric Vehicles and Infrastructure
article

Life-Cycle Carbon Emissions of Electric Vehicles in China: A Review

Hewu Wang, Hao Xu, Fuda Gong, Xiaoru Chen, Feiyang Li, Jiayu Feng, Lifang Zheng
article en

Abstract

Accelerating the low-carbon transition of transport is essential to addressing global climate change. Although the rapid growth of the electric vehicle (EV) fleet highlights the environmental benefits of electrified mobility, carbon-intensive upstream electricity generation and energy-intensive battery production continue to constrain the life-cycle emissions reduction potential of EVs. Focusing on China, this structured narrative review examines 121 core references from 2004 to 2026 to synthesize carbon-accounting methods and emissions across the manufacturing, use, and end-of-life stages. A supplementary keyword co-occurrence analysis of 1180 Web of Science records provides an overview of the research field. The reviewed evidence indicates that embodied emissions from manufacturing account for more than 30% of total life-cycle emissions, making this stage important to life-cycle decarbonization. The use stage offers the greatest emissions reduction potential and is closely linked to regional grid carbon intensity and vehicle-to-grid (V2G) scheduling. At the end of life, second-life battery use and closed-loop recycling can reduce the burden associated with initial production and support material circularity. Drawing on these findings and the development of China’s EV industry, this review proposes decarbonization pathways for enterprises and policymakers to support the coordinated development of the transport and energy sectors.

World Electric Vehicle JournalVol. 17(10)
Guangdong Key Laboratory of Fuel Cell Technology (CN), South China University of Technology (CN), University of Science and Technology Beijing (CN), Tsinghua University (CN)
Responsible consumption and production
Openalex Percentile: Top 22%
Electric Vehicles and Infrastructure
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Life-Cycle Carbon Emissions of Electric Vehicles in China: A Review — Hewu Wang, Hao Xu, et al. · World Electric Vehicle Journal (2026) | TGRS Research Map | TGRS