Material demands, environmental impact and economic cost of battery electric vehicles

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Auteurs principaux: Liu, Tong, Gu, Yifan, Hu, Guangwen, Wu, Yufeng, Yuan, Qingbin, Hu, Huijing, Zuo, Tieyong
Format: Recurso digital
Publié: Zenodo 2025
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author Liu, Tong
Gu, Yifan
Hu, Guangwen
Wu, Yufeng
Yuan, Qingbin
Hu, Huijing
Zuo, Tieyong
author_facet Liu, Tong
Gu, Yifan
Hu, Guangwen
Wu, Yufeng
Yuan, Qingbin
Hu, Huijing
Zuo, Tieyong
contents <p>The promotion of battery electric vehicles (BEVs) has given rise to a number of vehicle types and parameters. Hence, how to optimize the performance of different types of BEVs from an environmental and economic perspective is important. In response, this study investigated environmental impact and economic cost, and introduced an innovative eco-optimization approach to analyze the effect on various BEVs. The results significantly demonstrated a 10-25% optimization potential for BEVs. Moreover, the optimization pathway of BEVs was compared with the selected internal combustion engine sedan and SUV, in order to show the difference in each lifecycle stage. Finally, we found the 15% improvement effect of this optimization approach on the BEV industry. </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_14986810
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Material demands, environmental impact and economic cost of battery electric vehicles
Liu, Tong
Gu, Yifan
Hu, Guangwen
Wu, Yufeng
Yuan, Qingbin
Hu, Huijing
Zuo, Tieyong
<p>The promotion of battery electric vehicles (BEVs) has given rise to a number of vehicle types and parameters. Hence, how to optimize the performance of different types of BEVs from an environmental and economic perspective is important. In response, this study investigated environmental impact and economic cost, and introduced an innovative eco-optimization approach to analyze the effect on various BEVs. The results significantly demonstrated a 10-25% optimization potential for BEVs. Moreover, the optimization pathway of BEVs was compared with the selected internal combustion engine sedan and SUV, in order to show the difference in each lifecycle stage. Finally, we found the 15% improvement effect of this optimization approach on the BEV industry. </p>
title Material demands, environmental impact and economic cost of battery electric vehicles
url https://doi.org/10.5281/zenodo.14986810