A review of the life cycle assessment of electric vehicles: Considering the influence of batteries

X **a, P Li - Science of the Total Environment, 2022 - Elsevier
The automotive industry is currently on the verge of electrical transition, and the
environmental performance of electric vehicles (EVs) is of great concern. To assess the …

Sustainable recycling technology for Li-ion batteries and beyond: challenges and future prospects

E Fan, L Li, Z Wang, J Lin, Y Huang, Y Yao… - Chemical …, 2020 - ACS Publications
Tremendous efforts are being made to develop electrode materials, electrolytes, and
separators for energy storage devices to meet the needs of emerging technologies such as …

A review of the life cycle carbon footprint of electric vehicle batteries

P Li, X **a, J Guo - Separation and Purification Technology, 2022 - Elsevier
Facing increasingly severe climate change, countries and regions around the world are
actively promoting the electrification of the transportation sector and encouraging the use of …

[HTML][HTML] FCEV vs. BEV—a short overview on identifying the key contributors to affordable & clean energy (SDG-7)

S Vengatesan, A Jayakumar, KK Sadasivuni - Energy Strategy Reviews, 2024 - Elsevier
Battery electric vehicles (BEVs) are surging worldwide due to technology improvements in
lithium-based batteries and rising petroleum prices. India's EV30@ 30 campaign …

Life cycle greenhouse gas emissions of Electric Vehicles in China: Combining the vehicle cycle and fuel cycle

Q Qiao, F Zhao, Z Liu, X He, H Hao - Energy, 2019 - Elsevier
Abstract Electric Vehicles (EVs) are known as the future vehicles that have the potential to
provide environmental benefits all over the world. The Greenhouse Gas (GHG) emissions of …

Hydrogen energy development in China: Potential assessment and policy implications

Y Huang, Y Zhou, R Zhong, C Wei, B Zhu - International Journal of …, 2024 - Elsevier
Hydrogen is a promising alternative energy source for sustainable development worldwide.
Despite being the world's largest hydrogen producer, China's hydrogen energy …

Deployment of fuel cell vehicles in China: Greenhouse gas emission reductions from converting the heavy-duty truck fleet from diesel and natural gas to hydrogen

F Liu, DL Mauzerall, F Zhao, H Hao - International journal of hydrogen …, 2021 - Elsevier
Hydrogen fuel cells, as an energy source for heavy duty vehicles, are gaining attention as a
potential carbon mitigation strategy. Here we calculate the greenhouse gas (GHG) …

Comparative environmental life cycle assessment of conventional vehicles with different fuel options, plug-in hybrid and electric vehicles for a sustainable …

LLP De Souza, EES Lora, JCE Palacio… - Journal of cleaner …, 2018 - Elsevier
The principal motivation of this work is to evaluate the existing fuel use (gasoline or ethanol)
and new alternative source of power supply (electricity) for vehicles in Brazil, and to assess …

Life cycle environmental assessment of electric and internal combustion engine vehicles in China

L Yang, B Yu, B Yang, H Chen, G Malima… - Journal of Cleaner …, 2021 - Elsevier
Promoting electric vehicles (EVs) is an important measure to ensure energy security,
improve air quality, and mitigate global climate change. However, the emission reduction …

Comparative life cycle assessment of conventional combustion engine vehicle, battery electric vehicle and fuel cell electric vehicle in Nepal

A Joshi, R Sharma, B Baral - Journal of Cleaner Production, 2022 - Elsevier
Battery electric vehicles (BEV) and Fuel cell electric vehicles (FCEV) are taking momentum
as an alternative to conventional internal combustion engine vehicles (ICEV). Prospects of …