Characterization of CH4-CO2-O2 diffusion flames near autothermal reforming condition

Author:

Liu PengORCID,Zhang You,Guo JunjunORCID,Alfazazi AdamuORCID,Chu CarsonORCID,Serrano-Bayona RaulORCID,Aydin FarukORCID,Es-sebbar Et-touhami,Im Hong G.ORCID,Dally Bassam,Gao Xiang,Roberts William L.ORCID

Publisher

Elsevier BV

Reference31 articles.

1. https://www.irena.org/EnergyTransition/Technology/Hydrogen#:∼:text=As%20at%20the%20end%20of,around%204%25%20comes%20from%20electrolysis, International Renewable Energy Agency, Accessed November 2023.

2. Comparative assessment of blue hydrogen from steam methane reforming, autothermal reforming, and natural gas decomposition technologies for natural gas-producing regions;Oni;Energy Convers. Manag.,2022

3. https://www.airproducts.com/campaigns/alberta-net-zero-hydrogen-complex, Accessed November 2023.

4. https://www.airproducts.com/energy-transition/louisiana-clean-energy-complex, Accessed November 2023.

5. https://www.airliquide.com/group/press-releases-news/2023-01-10/air-liquide-autothermal-reforming-technology-selected-first-low-carbon-hydrogen-and-ammonia, Accessed November 2023.

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