Laboratory
Global Reaction Mechanisms
2026
[6] Dong Seok Jeon, Hui Man Yang, Nam Il Kim*, Optimized global reaction mechanisms for hydrogen-enriched alkanes and alcohols up to 600 K and 5 atm, FUEL 417 (2026.02) 138699 / doi
[5] Hui Man Yang, Nam Il Kim*, Global reaction mechanism for Hydrogen, Ammonia, Carbon monoxide, and Alkane hydrocarbons, KAIST, Ph. D. Thesis (2025.08) doi
2025
[4] Hui Man Yang, Nam Il Kim*, Global Reaction Mechanisms for H2 + NH3 + CO + CH4 at Conditions up to 600 K and 5 atm, International Journal of Hydrogen Energy 101 (2025.02) 998-1013. / doi
1. Onestep_H2_HMYang_NIKim.yaml
2. Onestep_NH3_HMYang_NIKim.yaml
3. Onestep_CH4_HMYang_NIKim.yaml
3. Fourstep_NH3_HMYang_NIKim.yaml
4. Fivestep_CH4_HMYang_NIKim.yaml
5. Twostep_CO_HMYang_NIKim.yaml
6. Twostep_H2_HMYang_NIKim.yaml
7. Eightstep_H2_NH3_CO_CH4_HMYang_NIKim.yaml
2024
[3] Hui Man Yang, Ji Hun Yeo, Nam Il Kim*, Optimized Global Reaction Mechanism for H2 + NH3 + N2 Mixtures, International Journal of Hydrogen Energy 73 (2024. 07) 749-760. / doi
1. Onestep_H2_HMYang_NIKim.yaml
2. Onestep_NH3_HMYang_NIKim.yaml
3. Fourstep_NH3_HMYang_NIKim.yaml
2023
[2] Hun Young Kim, Nam Il Kim*, Optimized global reaction mechanisms for H2, CO, CH4, and their mixtures, International Journal of Hydrogen Energy 48 (62) (2023.07) 24101-24112. / doi
1. Sixstep_CH4_HYKim_NIKim.yaml
2006
[1] Nam Il Kim*, Kaoru Maruta, A numerical study on propagation of premixed flames in small tubes, Combustion and Flame 146 (1-2) (2006.07) 283-301. / doi