Assessment of full life-cycle air emissions of alternative shipping fuels

Оценка выбросов в атмосферу на протяжении полного жизненного цикла альтернативных судовых топлив
Paul Gilbert, Conor Walsh, Michael Traut, Uchenna Kesieme, Kayvan Pazouki, Alan J. Murphy
2017-10-26

air emissionsalternative shipping fuelsbio-derived fuelsgreenhouse gas emissionslife-cycle assessment
There is a need for alternative fuels in the shipping sector for two main motivations: to deliver a reduction in local pollutants and comply with existing regulation; and to mitigate climate change and cut greenhouse gas emissions . However, any alternative fuel must meet a range of criteria to become a viable option. Key among them is the requirement that it can deliver emissions reductions over its full life-cycle. For a set of fuels, comprising both conventional and alternative fuels, together with associated production pathways, this paper presents a life-cycle assessment with respect to six emissions species: local pollutants sulphur oxides , nitrogen oxides , and particulate matter ; and greenhouse gases carbon dioxide , methane, and nitrous oxide . While the analysis demonstrates that no widely available fuel exists currently to deliver on both motivations, some alternative fuel options have the potential, if key barriers can be overcome. Hydrogen or other synthetic fuels rely on decarbonisation of both energy input to production and other feedstock materials to deliver reductions in greenhouse gas emissions. Similarly, bio-derived fuels can be an abatement option, but only if it can be ensured that land-use change whilst growing biomass does not impact wider potential savings and the sector is able to compete sufficiently for their use. These examples show that crucial barriers are located upstream in the respective fuel life-cycle and that the way to overcome them may reside beyond the scope of the shipping sector alone.
1
Bio-derived fuels may reduce emissions only if biomass-related land-use change does not offset potential savings and sufficient supply can be secured for shipping.
2
Hydrogen and synthetic fuels can reduce greenhouse-gas emissions only when their production energy and feedstock materials are also decarbonized.
3
Major barriers to alternative-fuel deployment occur upstream in fuel life-cycles and may require action beyond the shipping sector.
4
No currently widely available fuel simultaneously achieves substantial reductions in both local air pollutants and greenhouse-gas emissions.
5
The study evaluates full life-cycle emissions for conventional and alternative shipping fuels across six pollutants: SOx, NOx, particulate matter, CO2, methane, and nitrous oxide.

Conventional and alternative shipping fuels and their associated production pathways

Full life-cycle emissions of six air pollutants and greenhouse gases, and the potential of alternative fuels to reduce them

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2017-10-26
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Authors
Paul Gilbert
Conor Walsh
Michael Traut
Uchenna Kesieme
Kayvan Pazouki
Alan J. Murphy
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