Economic and climate benefits of vehicle-to-grid for low-carbon transitions of power systems: A case study of China's 2030 renewable energy target

X Yao, Y Fan, F Zhao, SC Ma - Journal of Cleaner Production, 2022 - Elsevier
More and more attention has been given to the role of electric vehicles in reducing the
economic cost and carbon emissions of the power system through the vehicle-to-grid (V2G) …

The influence of countries' socioeconomic characteristics on the adoption of electric vehicle

AC Ruoso, JLD Ribeiro - Energy for Sustainable Development, 2022 - Elsevier
The transportation sector generates the second-largest greenhouse gas (GHG) emissions
but is considered the most challenging sector to decarbonise. Vehicle electrification is a …

[HTML][HTML] Cutting social costs by decarbonizing passenger transport

R Maier, A Posch, C Proß, S Plakolb… - … Research Part D …, 2023 - Elsevier
Major efforts are still needed to decarbonize passenger transport. To do so, a combination of
improved technologies, a shift towards public transport, cycling and walking and the …

[HTML][HTML] Decarbonisation of passenger light-duty vehicles using spatially resolved TIMES-Ireland Model

V Aryanpur, O Balyk, H Daly, BÓ Gallachóir, J Glynn - Applied Energy, 2022 - Elsevier
Higher spatial resolution is becoming a key component of energy system analysis. Existing
multi-regional national scale energy systems optimisation models (ESOMs) facilitate an …

How does adoption of electric vehicles reduce carbon emissions? Evidence from China

X Zhao, H Hu, H Yuan, X Chu - Heliyon, 2023 - cell.com
We investigate the effect of the adoption of electric vehicles (EVs) on CO 2 emissions using
spatial econometric models and have three findings. First, there are spatial spillover effects …

Analyzing the societal cost of electric roads compared to batteries and oil for all forms of road transport

HH Coban, A Rehman, A Mohamed - Energies, 2022 - mdpi.com
This article is designed to demonstrate that electric roads are an affordable way to electrify
all forms of road transport—not only cars, but also buses and trucks. Electric roads represent …

Comparative life cycle analysis of critical materials recovery from spent Li-ion batteries

S Mousavinezhad, S Kadivar, E Vahidi - Journal of Environmental …, 2023 - Elsevier
The development of new generations of electric vehicles is expected to drive the growth of
lithium-ion batteries in the global market. Life Cycle Assessment (LCA) method was utilized …

[HTML][HTML] Transforming Australia's road fleet with electric vehicles: Strategies and impediments affecting net-zero emissions targets for 2050

GH Broadbent, G Metternicht, T Wiedmann… - Case Studies on …, 2024 - Elsevier
A complete and rapid transition to electromobility can minimise road fleet emissions. Electric
vehicles (EV) will be essential for decarbonising road transport, which in 2022 generated …

Electric vehicle uptake: Understanding the print media's role in changing attitudes and perceptions

GH Broadbent, TO Wiedmann… - World Electric Vehicle …, 2021 - mdpi.com
Passenger motor vehicle transport is a significant and growing emissions source
contributing to climate change. Switching from internal combustion engines to electric …

Influence of state of charge window on the degradation of Tesla lithium-ion battery cells

NR Chowdhury, AJ Smith, K Frenander… - Journal of Energy …, 2024 - Elsevier
Abstract The Tesla Model 3 is currently one of the most popular electric vehicle (EV) and
was the best selling EV in 2020. In this article, performance and degradation of 21700 …