1 |
Effects of propanol isomers enrichment on in-cylinder thermochemical fuel reforming (TFR) in spark ignition natural gas engine Li BL, Sun Q, Li A, Shao Y, He ZY, Lu XC, Huang Z, Zhu L International Journal of Hydrogen Energy, 45(18), 10932, 2020 |
2 |
Insight into fuel reactivity effects on thermochemical fuel reforming (TFR) Sun Q, Li BL, Li A, Shao Y, He ZY, Lu XC, Zhu L, Huang Z International Journal of Hydrogen Energy, 45(15), 9010, 2020 |
3 |
A highly active and stable bimetallic Ni-Mo2C catalyst for a partial oxidation of jet fuel Bkour Q, Marin-Flores OG, Norton MG, Ha S Applied Catalysis B: Environmental, 245, 613, 2019 |
4 |
Hydrogen production through hydrocarbon fuel reforming processes over Ni based catalysts Ismagilov ZR, Matus EV, Ismagilov IZ, Sukhova OB, Yashnik SA, Ushakov VA, Kerzhentsev MA Catalysis Today, 323, 166, 2019 |
5 |
Analysis of an idealized counter-current microchannel-based reactor to produce hydrogen-rich syngas from methanol Fernandez-Galisteo D, Fernandez-Tarrazo E, Jimenez C, Kurdyumov VN International Journal of Hydrogen Energy, 44(42), 23807, 2019 |
6 |
Water neutrality and waste heat management in ethanol reformer - HTPEMFC integrated system for on-board hydrogen generation Purnima P, Jayanti S Applied Energy, 199, 169, 2017 |
7 |
Effects of reformed fuel composition in "single" fuel reactivity controlled compression ignition combustion Chuahy FDF, Kokjohn SL Applied Energy, 208, 1, 2017 |
8 |
Exhaust gas fuel reforming for hydrogen production with CGO-based precious metal catalysts Choi S, Bae J, Lee J, Cha J Chemical Engineering Science, 163, 206, 2017 |
9 |
Thermodynamic analysis of a gas turbine cycle combined with fuel reforming for solar thermal power generation Ni MJ, Yang TF, Xiao G, Ni D, Zhou X, Liu HL, Sultan U, Chen JL, Luo ZY, Cen KF Energy, 137, 20, 2017 |
10 |
Performance optimization of in-cylinder thermochemical fuel reforming (TFR) with compression ratio in an SI natural gas engine Xu Z, Zhu L, He ZY, Li A, Shao Y, Huang Z Fuel, 203, 162, 2017 |