EN
Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures
Abstract
Aviation is undergoing a paradigm shift to become a more sustainable industry. Priorities include reducing fossil fuel consumption, cutting carbon dioxide and other emissions, and developing new technologies. One of the major enabling technologies is the electrification of aircraft. Batteries are a key part of this revolutionary concept. This paper aims to provide key insights into battery technology and its potential to electrify aviation. Therefore, it proposes a comprehensive presentation of this technology following a detailed research process. Five different topics are addressed. The first is a general overview of the chemistry of electrochemical cells, the basic element of batteries. This is followed by a presentation of some of the most relevant previous work in this topic, highlighting their contributions and their main outcomes to be considered in further research. The main performance metrics used to compare the different batteries are presented next. For each of these, the definition, and related requirements that batteries used in electric aviation must meet are included. The paper then analyses the possibilities for battery use in aviation and identifies some of the key challenges that need to be overcome to scale-up this technology. Finally, some battery technologies, their current uses, and their potential for further progress towards a more sustainable aviation are presented in detail.
Keywords
Project Number
HORIZON-CL5-2021-D5-01-05 under grant agreement no.101056866.
Thanks
The development of this work is framed in the Environmentally Friendly Aviation for All Classes of Aircraft (EFACA) project. This project is funded by the European Union Horizon Europe research and innovation programme (HORIZON-CL5-2021-D5-01-05) under grant agreement no.101056866.
References
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- Arote, S.A., (2022). Fundamentals and perspectives of lithium–sulfur batteries, in: Lithium-Ion and Lithium–Sulfur Batteries: Fundamentals to Performance. IOP Publishing. https://doi.org/10.1088/978-0-7503-4881-2ch3
- Barzkar, A., Ghassemi, M., (2020). Electric Power Systems in More and All Electric Aircraft: A Review. IEEE Access 8, 169314–169332. https://doi.org/10.1109/ACCESS.2020.3024168
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- Battery 2030+ project, (2023). B-2030-Science-Innovation-Roadmap-updated-August-2023.pdf.
- Bills, A., Sripad, S., Fredericks, W.L., Singh, M., Viswanathan, V., (2020). Performance Metrics Required of Next-Generation Batteries to Electrify Commercial Aircraft. ACS Energy Lett. 5, 663–668. https://doi.org/10.1021/acsenergylett.9b02574
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Details
Primary Language
English
Subjects
Aerospace Engineering (Other)
Journal Section
Research Article
Authors
Publication Date
December 30, 2023
Submission Date
November 6, 2023
Acceptance Date
December 12, 2023
Published in Issue
Year 2023 Volume: 04 Number: 02
APA
Zamarreño Suárez, M., Pérez Moreno, F., Delgado-aguılera Jurado, R., Arnaldo Valdés, R. M., & Gómez Comendador, V. F. (2023). Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures. International Journal of Aviation Science and Technology, 04(02), 98-112. https://izlik.org/JA38DJ24UN
AMA
1.Zamarreño Suárez M, Pérez Moreno F, Delgado-aguılera Jurado R, Arnaldo Valdés RM, Gómez Comendador VF. Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures. IJAST. 2023;04(02):98-112. https://izlik.org/JA38DJ24UN
Chicago
Zamarreño Suárez, María, Francisco Pérez Moreno, Raquel Delgado-aguılera Jurado, Rosa María Arnaldo Valdés, and Víctor Fernando Gómez Comendador. 2023. “Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures”. International Journal of Aviation Science and Technology 04 (02): 98-112. https://izlik.org/JA38DJ24UN.
EndNote
Zamarreño Suárez M, Pérez Moreno F, Delgado-aguılera Jurado R, Arnaldo Valdés RM, Gómez Comendador VF (December 1, 2023) Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures. International Journal of Aviation Science and Technology 04 02 98–112.
IEEE
[1]M. Zamarreño Suárez, F. Pérez Moreno, R. Delgado-aguılera Jurado, R. M. Arnaldo Valdés, and V. F. Gómez Comendador, “Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures”, IJAST, vol. 04, no. 02, pp. 98–112, Dec. 2023, [Online]. Available: https://izlik.org/JA38DJ24UN
ISNAD
Zamarreño Suárez, María - Pérez Moreno, Francisco - Delgado-aguılera Jurado, Raquel - Arnaldo Valdés, Rosa María - Gómez Comendador, Víctor Fernando. “Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures”. International Journal of Aviation Science and Technology 04/02 (December 1, 2023): 98-112. https://izlik.org/JA38DJ24UN.
JAMA
1.Zamarreño Suárez M, Pérez Moreno F, Delgado-aguılera Jurado R, Arnaldo Valdés RM, Gómez Comendador VF. Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures. IJAST. 2023;04:98–112.
MLA
Zamarreño Suárez, María, et al. “Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures”. International Journal of Aviation Science and Technology, vol. 04, no. 02, Dec. 2023, pp. 98-112, https://izlik.org/JA38DJ24UN.
Vancouver
1.María Zamarreño Suárez, Francisco Pérez Moreno, Raquel Delgado-aguılera Jurado, Rosa María Arnaldo Valdés, Víctor Fernando Gómez Comendador. Battery Technologies To Electrify Aviation: Key Concepts, Technologies and Figures. IJAST [Internet]. 2023 Dec. 1;04(02):98-112. Available from: https://izlik.org/JA38DJ24UN