Feasibility Assessment of Alternative Clean Power Systems onboard Passenger Short-Distance Ferry

Author:

Elkafas Ahmed G.12ORCID,Rivarolo Massimo1,Barberis Stefano1ORCID,Massardo Aristide F.1

Affiliation:

1. Thermochemical Power Group (TPG), DIME, University of Genova, 16145 Genova, Italy

2. Department of Naval Architecture and Marine Engineering, Faculty of Engineering, Alexandria University, Alexandria 21544, Egypt

Abstract

In order to promote low-carbon fuels such as hydrogen to decarbonize the maritime sector, it is crucial to promote clean fuels and zero-emission propulsion systems in demonstrative projects and to showcase innovative technologies such as fuel cells in vessels operating in local public transport that could increase general audience acceptability thanks to their showcase potential. In this study, a short sea journey ferry used in the port of Genova as a public transport vehicle is analyzed to evaluate a ”zero emission propulsion” retrofitting process. In the paper, different types of solutions (batteries, proton exchange membrane fuel cell (PEMFC), solid oxide fuel cell (SOFC)) and fuels (hydrogen, ammonia, natural gas, and methanol) are investigated to identify the most feasible technology to be implemented onboard according to different aspects: ferry daily journey and scheduling, available volumes and spaces, propulsion power needs, energy storage/fuel tank capacity needed, economics, etc. The paper presents a multi-aspect analysis that resulted in the identification of the hydrogen-powered PEMFC as the best clean power system to guarantee, for this specific case study, a suitable retrofitting of the vessel that could guarantee a zero-emission journey.

Publisher

MDPI AG

Subject

Ocean Engineering,Water Science and Technology,Civil and Structural Engineering

Reference86 articles.

1. IMO (2018). Initial IMO Strategy on Reduction of GHG Emissions from Ships, International Maritime Organization (IMO). Available online: https://wwwcdn.imo.org/localresources/en/KnowledgeCentre/IndexofIMOResolutions/MEPCDocuments/MEPC.304(72).pdf.

2. IMO (2023). 2023 IMO Strategy on Reduction of GHG Emissions from Ships, International Maritime Organization (IMO). Available online: https://www.imo.org/en/OurWork/Environment/Pages/2023-IMO-Strategy-on-Reduction-of-GHG-Emissions-from-Ships.aspx.

3. IMO (2013). Amendments to the Annex of the Protocol of 1997 to Amend the International Convention for the Prevention of Pollution from Ships, 1973, as Modified by the Protocol of 1978, International Maritime Organization (IMO). Available online: https://wwwcdn.imo.org/localresources/en/KnowledgeCentre/IndexofIMOResolutions/MEPCDocuments/MEPC.203(62).pdf.

4. Selecting Technologies towards Compliance with MARPOL Annex VI: The Perspective of Operators;Schinas;Transp. Res. D Transp. Environ.,2014

5. Compliance Possibilities for the Future ECA Regulations through the Use of Abatement Technologies or Change of Fuels;Brynolf;Transp. Res. D Transp. Environ.,2014

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