Review on the Safe Use of Ammonia Fuel Cells in the Maritime Industry

Author:

Cheliotis MichailORCID,Boulougouris EvangelosORCID,Trivyza Nikoletta L,Theotokatos GerasimosORCID,Livanos George,Mantalos George,Stubos Athanasios,Stamatakis EmmanuelORCID,Venetsanos Alexandros

Abstract

In April 2018, the International Maritime Organisation adopted an ambitious plan to contribute to the global efforts to reduce the Greenhouse Gas emissions, as set by the Paris Agreement, by targeting a 50% reduction in shipping’s Green House Gas emissions by 2050, benchmarked to 2008 levels. To meet these challenging goals, the maritime industry must introduce environmentally friendly fuels with negligible, or low SOX, NOX and CO2 emissions. Ammonia use in maritime applications is considered promising, due to its high energy density, low flammability, easy storage and low production cost. Moreover, ammonia can be used as fuel in a variety of propulsors such as fuel cells and can be produced from renewable sources. As a result, ammonia can be used as a versatile marine fuel, exploiting the existing infrastructure, and having zero SOX and CO2 emissions. However, there are several challenges to overcome for ammonia to become a compelling fuel towards the decarbonisation of shipping. Such factors include the selection of the appropriate ammonia-fuelled power generator, the selection of the appropriate system safety assessment tool, and mitigating measures to address the hazards of ammonia. This paper discusses the state-of-the-art of ammonia fuelled fuel cells for marine applications and presents their potential, and challenges.

Funder

Horizon 2020 Framework Programme

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference122 articles.

1. Low-temperature direct ammonia fuel cells: Recent developments and remaining challenges

2. Hydrogen as an energy vector

3. Setting the Course to Low Carbon Shippinghttps://absinfo.eagle.org/acton/attachment/16130/f-982b1623-4d26-4b04-91c5-25453a6e2fba/1/-/-/-/-/low-carbon-shipping-outlook.pdf?utm_term=DOWNLOAD&utm_campaign=2019LowCarbonShippingOutlook&utm_content=email&utm_source=Act-On+Software&utm_medium=email

4. Performance and availability of a marine generator-solid oxide fuel cell-gas turbine hybrid system in a very large ethane carrier

5. A novel ammonia molten alkaline fuel cell based integrated powering system for clean rail transportation

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