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Goldmann, A.; Sauter, W.; Oettinger, M.; Kluge, T.; Schröder, U. et al.: A study on electrofuels in aviation. In: Energies 11 (2018), Nr. 2, 11020392. DOI: https://doi.org/10.3390/en11020392

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To cite the version in the repository, please use this identifier: https://doi.org/10.15488/3725

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Sum total of downloads: 961




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Abstract: 
With the growth of aviation traffic and the demand for emission reduction, alternative fuels like the so-called electrofuels could comprise a sustainable solution. Electrofuels are understood as those that use renewable energy for fuel synthesis and that are carbon-neutral with respect to greenhouse gas emission. In this study, five potential electrofuels are discussed with respect to the potential application as aviation fuels, being n-octane, methanol, methane, hydrogen and ammonia, and compared to conventional Jet A-1 fuel. Three important aspects are illuminated. Firstly, the synthesis process of the electrofuel is described with its technological paths, its energy efficiency and the maturity or research need of the production. Secondly, the physico-chemical properties are compared with respect to specific energy, energy density, as well as those properties relevant to the combustion of the fuels, i.e., autoignition delay time, adiabatic flame temperature, laminar flame speed and extinction strain rate. Results show that the physical and combustion properties significantly differ from jet fuel, except for n-octane. The results describe how the different electrofuels perform with respect to important aspects such as fuel and air mass flow rates. In addition, the results help determine mixture properties of the exhaust gas for each electrofuel. Thirdly, a turbine configuration is investigated at a constant operating point to further analyze the drop-in potential of electrofuels in aircraft engines. It is found that electrofuels can generally substitute conventional kerosene-based fuels, but have some downsides in the form of higher structural loads and potentially lower efficiencies. Finally, a preliminary comparative evaluation matrix is developed. It contains specifically those fields for the different proposed electrofuels where special challenges and problematic points are seen that need more research for potential application. Synthetically-produced n-octane is seen as a potential candidate for a future electrofuel where even a drop-in capability is given. For the other fuels, more issues need further research to allow the application as electrofuels in aviation. Specifically interesting could be the combination of hydrogen with ammonia in the far future; however, the research is just at the beginning stage.
License of this version: CC BY 4.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2018
Appears in Collections:Fakultät für Maschinenbau

distribution of downloads over the selected time period:

downloads by country:

pos. country downloads
total perc.
1 image of flag of Germany Germany 488 50.78%
2 image of flag of United States United States 216 22.48%
3 image of flag of China China 30 3.12%
4 image of flag of United Kingdom United Kingdom 29 3.02%
5 image of flag of No geo information available No geo information available 21 2.19%
6 image of flag of France France 19 1.98%
7 image of flag of Sweden Sweden 15 1.56%
8 image of flag of Netherlands Netherlands 11 1.14%
9 image of flag of Switzerland Switzerland 10 1.04%
10 image of flag of Canada Canada 10 1.04%
    other countries 112 11.65%

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