Techno-economic assessment of advanced fuels and propulsion systems in future fossil-free ships

AD Korberg, S Brynolf, M Grahn, IR Skov - Renewable and Sustainable …, 2021 - Elsevier
This paper analyses the potential of renewable fuels in different propulsion systems for the
maritime sector that can replace fossil fuels by 2030. First, a fuel cost analysis is performed …

Towards a marine green power system architecture: Integrating hydrogen and ammonia as zero-carbon fuels for sustainable shipping

Z Wang, B Dong, J Yin, M Li, Y Ji, F Han - International Journal of Hydrogen …, 2024 - Elsevier
A broad consensus has been formed around global greenhouse gas emission reduction,
and the task of realizing carbon reduction and decarbonization in the shipping industry is …

Life-cycle assessment and life-cycle cost assessment of power batteries for all-electric vessels for short-sea navigation

M Perčić, L Frković, T Pukšec, B Ćosić, OL Li… - Energy, 2022 - Elsevier
Environmental regulations are gradually striving to decarbonize short-sea navigation
fostering the replacement of the conventional power systems with alternative ones. The …

Live-Life cycle assessment of the electric propulsion ship using solar PV

C Park, B Jeong, P Zhou, H Jang, S Kim, H Jeon… - Applied Energy, 2022 - Elsevier
This paper was born to introduce a novel methodology termed Live-Life Cycle Assessment
using a simulation-based data generation technique that can remedy the inherent …

Decision support methods for sustainable ship energy systems: A state-of-the-art review

NL Trivyza, A Rentizelas, G Theotokatos… - Energy, 2022 - Elsevier
The shipping sector has been under great pressure since the last decade to improve its
environmental footprint, more so recently with the International Maritime Organisation target …

Life-cycle assessment and life-cycle cost assessment of lithium-ion batteries for passenger ferry

D Guven, MO Kayalica - Transportation Research Part D: Transport and …, 2023 - Elsevier
The main targets of this study are to analyse the environmental impacts of different types of
lithium-ion (Li-ion) batteries using Life Cycle Assessment (LCA) and to examine their …

Towards ferry electrification in the maritime sector

S Anwar, MYI Zia, M Rashid, GZ Rubens… - Energies, 2020 - mdpi.com
The electrification of vessels/ferries for green transformation requires onboard electrical
energy storage as well as an energy supply network in the port area. In this context, a lot of …

Life cycle framework construction and quantitative assessment for the hydrogen fuelled ships: A case study

Z Wang, F Zhao, B Dong, D Wang, Y Ji, W Cai, F Han - Ocean Engineering, 2023 - Elsevier
The integration of hydrogen energy into the maritime industry requires a comprehensive
evaluation of the life cycle of hydrogen fuel, encompassing all stages from production to …

Configuration of Low-Carbon fuels green marine power systems in diverse ship types and Applications

Z Wang, B Dong, M Li, Y Ji, F Han - Energy Conversion and Management, 2024 - Elsevier
The current global consensus to reduce greenhouse gas emissions has placed the maritime
industry under increasing pressure to achieve carbon reduction and decarbonization. Low …

Lifecycle energy solution of the electric propulsion ship with Live-Life cycle assessment for clean maritime economy

C Park, B Jeong, P Zhou - Applied Energy, 2022 - Elsevier
This study was planned to offer the roadmap for lifecycle clean shipping by addressing the
fundamental question of 'what are the promising energy solutions for the shipping sector?' …