[HTML][HTML] Total CO2-equivalent life-cycle emissions from commercially available passenger cars

J Buberger, A Kersten, M Kuder, R Eckerle… - … and Sustainable Energy …, 2022 - Elsevier
The international passenger car market is undergoing a transition from vehicles with internal
combustion engines to hybrid and fully electrified vehicles to reduce the climate impact of …

An overview of major synthetic fuels

V Ram, SR Salkuti - Energies, 2023 - mdpi.com
Artificial fuels have been researched for more than a decade now in an attempt to find
alternative sources of energy. With global climatic conditions rapidly approaching the end of …

A thorough examination of smart city applications: Exploring challenges and solutions throughout the life cycle with emphasis on safeguarding citizen privacy

L **a, DT Semirumi, R Rezaei - Sustainable Cities and Society, 2023 - Elsevier
With the increasing use of artificial intelligence (AI) and the Internet of Things (IoTs), it is
crucial to acknowledge the potential security and privacy issues that arise from these …

Life cycle assessment of electric vehicles and internal combustion engine vehicles: A case study of Hong Kong

M Shafique, A Azam, M Rafiq, X Luo - Research in Transportation …, 2022 - Elsevier
The transportation and electricity sectors are in the midst of leading changes in the endeavor
to mitigate climate change and air pollution issues. In future years, traditional fossil-fuelled …

[HTML][HTML] Ensuring sustainable development of urban public transport: A case study of the trolleybus system in Gdynia and Sopot (Poland)

M Wołek, M Wolański, M Bartłomiejczyk… - Journal of Cleaner …, 2021 - Elsevier
Electromobility is a vital tool in reducing the environmental impact of transportation. A
technologically mature means of public transport is the trolleybus. Based on a case study of …

[HTML][HTML] Well-to-wheel greenhouse gas emissions of heavy-duty transports: Influence of electricity carbon intensity

M Gustafsson, N Svensson, M Eklund, JD Öberg… - … Research Part D …, 2021 - Elsevier
There are several alternatives for how to phase out diesel in heavy-duty transports, thereby
reducing the sector's climate change impact. This paper assesses the well-to-wheel (WTW) …

Optimal locations and sizes of layover charging stations for electric buses

D McCabe, XJ Ban - Transportation Research Part C: Emerging …, 2023 - Elsevier
Public transit agencies across the world are rapidly converting their bus fleets from diesel or
hybrid powertrains to battery-electric propulsion systems. To realize the benefits of the …

Energy consumption and battery sizing for different types of electric bus service

H Basma, C Mansour, M Haddad, M Nemer, P Stabat - Energy, 2022 - Elsevier
With the deployment of battery electric buses (BEB) increasing worldwide, proper battery
sizing becomes more critical for operators as it dictates bus driving range and costs. In this …

Life cycle assessment of battery electric buses

LAW Ellingsen, RJ Thorne, J Wind… - … Research Part D …, 2022 - Elsevier
Different Li-ion battery technologies and sizes are used in battery electric buses (BEBs), but
little is known about the environmental effect of various battery technology and sizing …

Life cycle CO₂ footprint reduction comparison of hybrid and electric buses for bus transit networks

A García, J Monsalve-Serrano, RL Sari, S Tripathi - Applied Energy, 2022 - Elsevier
To control the global warming by ensuring the greenhouse gas emissions reduction of the
automotive sector, the standards or norms are getting ever stricter globally, specifically in the …