1 |
Combustion behavior of pulverized sponge iron as a recyclable electrofuel Toth P, Ogren Y, Sepman A, Gren P, Wiinikka H Powder Technology, 373, 210, 2020 |
2 |
Combustion Evaluation of Renewable Fuels for Iron-Ore Pellet Induration Wiinikka H, Sepman A, Ogren Y, Lindblom B, Nordin LO Energy & Fuels, 33(8), 7819, 2019 |
3 |
Tunable Diode Laser Absorption Spectroscopy Diagnostics of Potassium, Carbon Monoxide, and Soot in Oxygen-Enriched Biomass Combustion Close to Stoichiometry Sepman A, Ogren Y, Qu ZC, Wiinikka H, Schmidt FM Energy & Fuels, 33(11), 11795, 2019 |
4 |
Spray combustion of biomass fast pyrolysis oil: Experiments and modeling Toth P, Ogren Y, Sepman A, Vikstrom T, Gren P, Wiinikka H Fuel, 237, 580, 2019 |
5 |
Experimental and numerical study of biomass fast pyrolysis oil spray combustion: Advanced laser diagnostics and emission spectrometry Toth P, Brackmann C, Ogren Y, Mannazhi MN, Simonsson J, Sepman A, Bengtsson PE, Wiinikka H Fuel, 252, 125, 2019 |
6 |
Development of a vision-based soft sensor for estimating equivalence ratio and major species concentration in entrained flow biomass gasification reactors Ogren Y, Toth P, Garami A, Sepman A, Wiinikka H Applied Energy, 226, 450, 2018 |
7 |
Pulverized Sponge Iron, a Zero-Carbon and Clean Substitute for Fossil Coal in Energy Applications Wiinikka H, Vikstrom T, Wennebro J, Toth P, Sepman A Energy & Fuels, 32(9), 9982, 2018 |
8 |
Influence of oxidizer injection angle on the entrained flow gasification of torrefied wood powder Ogren Y, Gullberg M, Wennebro J, Sepman A, Toth P, Wiinikka H Fuel Processing Technology, 181, 8, 2018 |
9 |
Comparison of Measurement Techniques for Temperature and Soot Concentration in Premixed, Small-Scale Burner Flames Ogren Y, Sepman A, Qu ZC, Schmidt FM, Wiinikka H Energy & Fuels, 31(10), 11328, 2017 |
10 |
Optical techniques for characterizing the biomass particle flow fluctuations in lab- and pilot-scale thermochemical systems Sepman A, Ogren Y, Wiinikka H Powder Technology, 313, 129, 2017 |