Muya, G.T.; Fellah, A.; Yaquan, S.; Boukhchana, Y.; Molima, S.; Kanyama, M.; Sadiki, A.
A Geothermal-Driven Zero-Emission Poly-Generation Energy System for Power and Green Hydrogen Production: Exergetic Analysis, Impact of Operating Conditions, and Optimization. Fuels 2025, 6, 65.
https://doi.org/10.3390/fuels6030065
AMA Style
Muya GT, Fellah A, Yaquan S, Boukhchana Y, Molima S, Kanyama M, Sadiki A.
A Geothermal-Driven Zero-Emission Poly-Generation Energy System for Power and Green Hydrogen Production: Exergetic Analysis, Impact of Operating Conditions, and Optimization. Fuels. 2025; 6(3):65.
https://doi.org/10.3390/fuels6030065
Chicago/Turabian Style
Muya, Guy Trudon, Ali Fellah, Sun Yaquan, Yasmina Boukhchana, Samuel Molima, Matthieu Kanyama, and Amsini Sadiki.
2025. "A Geothermal-Driven Zero-Emission Poly-Generation Energy System for Power and Green Hydrogen Production: Exergetic Analysis, Impact of Operating Conditions, and Optimization" Fuels 6, no. 3: 65.
https://doi.org/10.3390/fuels6030065
APA Style
Muya, G. T., Fellah, A., Yaquan, S., Boukhchana, Y., Molima, S., Kanyama, M., & Sadiki, A.
(2025). A Geothermal-Driven Zero-Emission Poly-Generation Energy System for Power and Green Hydrogen Production: Exergetic Analysis, Impact of Operating Conditions, and Optimization. Fuels, 6(3), 65.
https://doi.org/10.3390/fuels6030065