Atıf Formatları
On-board hydrogen-rich syngas production via waste heat recovery from compression-ignition engines: maximizing hydrogen content with novel multi-objective algorithms
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

Ü. AĞBULUT Et Al. , "On-board hydrogen-rich syngas production via waste heat recovery from compression-ignition engines: maximizing hydrogen content with novel multi-objective algorithms," International Journal of Hydrogen Energy , vol.130, pp.411-422, 2025

AĞBULUT, Ü. Et Al. 2025. On-board hydrogen-rich syngas production via waste heat recovery from compression-ignition engines: maximizing hydrogen content with novel multi-objective algorithms. International Journal of Hydrogen Energy , vol.130 , 411-422.

AĞBULUT, Ü., Vozka, P., Bakır, H., Brieu, N. A., Polat, F., & Sarıdemir, S., (2025). On-board hydrogen-rich syngas production via waste heat recovery from compression-ignition engines: maximizing hydrogen content with novel multi-objective algorithms. International Journal of Hydrogen Energy , vol.130, 411-422.

AĞBULUT, Ümit Et Al. "On-board hydrogen-rich syngas production via waste heat recovery from compression-ignition engines: maximizing hydrogen content with novel multi-objective algorithms," International Journal of Hydrogen Energy , vol.130, 411-422, 2025

AĞBULUT, Ümit Et Al. "On-board hydrogen-rich syngas production via waste heat recovery from compression-ignition engines: maximizing hydrogen content with novel multi-objective algorithms." International Journal of Hydrogen Energy , vol.130, pp.411-422, 2025

AĞBULUT, Ü. Et Al. (2025) . "On-board hydrogen-rich syngas production via waste heat recovery from compression-ignition engines: maximizing hydrogen content with novel multi-objective algorithms." International Journal of Hydrogen Energy , vol.130, pp.411-422.

@article{article, author={Ümit AĞBULUT Et Al. }, title={On-board hydrogen-rich syngas production via waste heat recovery from compression-ignition engines: maximizing hydrogen content with novel multi-objective algorithms}, journal={International Journal of Hydrogen Energy}, year=2025, pages={411-422} }