Dreistadt, D.M.; Puszkiel, J.; Bellosta von Colbe, J.M.; Capurso, G.; Steinebach, G.; Meilinger, S.; Le, T.-T.; Covarrubias Guarneros, M.; Klassen, T.; Jepsen, J.
A Novel Emergency Gas-to-Power System Based on an Efficient and Long-Lasting Solid-State Hydride Storage System: Modeling and Experimental Validation. Energies 2022, 15, 844.
https://doi.org/10.3390/en15030844
AMA Style
Dreistadt DM, Puszkiel J, Bellosta von Colbe JM, Capurso G, Steinebach G, Meilinger S, Le T-T, Covarrubias Guarneros M, Klassen T, Jepsen J.
A Novel Emergency Gas-to-Power System Based on an Efficient and Long-Lasting Solid-State Hydride Storage System: Modeling and Experimental Validation. Energies. 2022; 15(3):844.
https://doi.org/10.3390/en15030844
Chicago/Turabian Style
Dreistadt, David Michael, Julián Puszkiel, José Maria Bellosta von Colbe, Giovanni Capurso, Gerd Steinebach, Stefanie Meilinger, Thi-Thu Le, Myriam Covarrubias Guarneros, Thomas Klassen, and Julian Jepsen.
2022. "A Novel Emergency Gas-to-Power System Based on an Efficient and Long-Lasting Solid-State Hydride Storage System: Modeling and Experimental Validation" Energies 15, no. 3: 844.
https://doi.org/10.3390/en15030844
APA Style
Dreistadt, D. M., Puszkiel, J., Bellosta von Colbe, J. M., Capurso, G., Steinebach, G., Meilinger, S., Le, T.-T., Covarrubias Guarneros, M., Klassen, T., & Jepsen, J.
(2022). A Novel Emergency Gas-to-Power System Based on an Efficient and Long-Lasting Solid-State Hydride Storage System: Modeling and Experimental Validation. Energies, 15(3), 844.
https://doi.org/10.3390/en15030844