A review of fuel cell systems for maritime applications
Обзор топливных элементов для морского применения
2016-07-27
SCID: 54.1/h2wwx8nw
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fuel cell combined cycleshybrid energy storageliquefied hydrogenliquefied natural gasmaritime fuel cell systems
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Abstract (AI)
Progressing limits on pollutant emissions oblige ship owners to reduce the environmental impact of their operations. Fuel cells may provide a suitable solution, since they are fuel efficient while they emit few hazardous compounds. Various choices can be made with regard to the type of fuel cell system and logistic fuel, and it is unclear which have the best prospects for maritime application. An overview of fuel cell types and fuel processing equipment is presented, and maritime fuel cell application is reviewed with regard to efficiency, gravimetric and volumetric density, dynamic behaviour, environmental impact, safety and economics. It is shown that low temperature fuel cells using liquefied hydrogen provide a compact solution for ships with a refuelling interval up to a tens of hours, but may result in total system sizes up to five times larger than high temperature fuel cells and more energy dense fuels for vessels with longer mission requirements. The expanding infrastructure of liquefied natural gas and development state of natural gas-fuelled fuel cell systems can facilitate the introduction of gaseous fuels and fuel cells on ships. Fuel cell combined cycles, hybridisation with auxiliary electricity storage systems and redundancy improvements are identified as topics for further study.
Key Findings
1
Expanding liquefied-natural-gas infrastructure and maturing natural-gas-fueled fuel-cell systems could support maritime adoption of gaseous fuels and fuel cells.
2
For longer missions, liquefied-hydrogen systems may be up to five times larger than high-temperature fuel cells using more energy-dense fuels.
3
Fuel-cell combined cycles, hybridization with auxiliary energy storage, and improved redundancy are identified as priorities for further research.
4
Low-temperature fuel cells powered by liquefied hydrogen offer a compact solution for ships with refueling intervals up to tens of hours.
5
The review evaluates maritime fuel-cell options using efficiency, energy density, dynamic behavior, environmental impact, safety, and economics.
Research Object
fuel cell systems for maritime applications, including their fuel-processing equipment and logistic fuels
Research Subject
the comparative prospects and trade-offs of maritime fuel cell systems in terms of efficiency, energy density, dynamic behavior, environmental impact, safety, economics, system size, and mission duration
Publication Details
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2016-07-27
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