Environmental Performance of Bulk Carriers Equipped with Synergies of Energy-Saving Technologies and Alternative Fuels

Author:

Dong Tuan1,Buzuku Shqipe2,Elg Mia2ORCID,Schönborn Alessandro1ORCID,Ölcer Aykut I.1

Affiliation:

1. Maritime Energy Management, World Maritime University, 211 18 Malmö, Sweden

2. Deltamarin Finland, 20250 Turku, Finland

Abstract

In this study, the life cycle assessment (LCA) was used to compare the environmental performances of a conventional bulk carrier (baseline vessel) and a wind-energy-optimised bulk carrier equipped with modern on-board technologies working in synergy (future vessel). Fossil fuels was used for the baseline vessels, whereas the future vessel used liquefied biogas (LBG) and hydrotreated vegetable oil (HVO) as marine fuels. The entire life cycle phases of the vessels, namely, construction, operation, maintenance, and end-of-life, were included. The results showed that the future vessel could reduce 31.23% energy consumption, compared to the baseline model. Furthermore, the significant reduction in CO2 (48.6%), NOX (88.6%), SOX (100.0%), and black carbon (94.0%) in the tank-to-wake phase was achieved owing to energy-saving technologies working in synergy and alternative fuels. This study emphasizes the vital role of energy efficiency, technologies, and alternative fuels to achieve the zero-emission ambition of the maritime industry. Furthermore, the impacts of ship construction, maintenance, and end-of-life need to be fully considered in order to decarbonize vessel from a life cycle perspective.

Funder

European Union’s Horizon 2020 research and innovation programme

Publisher

MDPI AG

Reference34 articles.

1. Scheiber, H., Oral, N., and Kwon, M. (2016). Ocean Law Debates: The 50-Year Legacy and Emerging Issues for the Years Ahead, BRILL.

2. IMO (2020). Fourth IMO GHG Study 2020, IMO. Available online: https://www.imo.org/en/ourwork/Environment/Pages/Fourth-IMO-Greenhouse-Gas-Study-2020.aspx.

3. IMO (2023, September 27). 2023 IMO Strategy on Reduction of GHG Emissions from Ships. Available online: https://wwwcdn.imo.org/localresources/en/OurWork/Environment/Documents/annex/MEPC%2080/Annex%2015.pdf.

4. CHEK (2023, November 11). Decarbonizing Shipping. Available online: https://www.projectchek.eu/.

5. Life-cycle assessment of ships: The effects of fuel consumption reduction and light displacement tonnage;Dong;P. I. Mech. Eng. M-J. Eng.,2019

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