1 |
Effects of scaling laws on the combustion and NOx characteristics of hydrogen burners Meraner C, Li T, Ditaranto M, Lovas T Combustion and Flame, 214, 407, 2020 |
2 |
Stochastic Reactor-Based Fuel Bed Model for Grate Furnaces Netzer C, Li T, Seidel L, Mauss F, Lovas T Energy & Fuels, 34(12), 16599, 2020 |
3 |
Combustion and NOx Emission Characteristics of a Bluff Body Hydrogen Burner Meraner C, Li T, Ditaranto M, Lovas T Energy & Fuels, 33(5), 4598, 2019 |
4 |
Optical Measurements of In-Flame Soot in Compression-Ignited Methyl Ester Flames Bjorgen KOP, Emberson DR, Lovas T Energy & Fuels, 33(8), 7886, 2019 |
5 |
Eulerian-Lagrangian simulation of pulverized biomass jet using spheroidal particle approximation Guo N, Li T, Zhao LH, Lovas T Fuel, 239, 636, 2019 |
6 |
High temperature gasification of high heating-rate chars using a flat-flame reactor Li T, Niu YQ, Wang L, Shaddix C, Lovas T Applied Energy, 227, 100, 2018 |
7 |
CO2 Gasification of Chars Prepared by Fast and Slow Pyrolysis from Wood and Forest Residue: A Kinetic Study Wang L, Li T, Varhegyi G, Skreiberg O, Lovas T Energy & Fuels, 32(1), 588, 2018 |
8 |
An Alternative Approach for the Estimation of Biochar Yields Weber K, Heuer S, Quicker P, Li T, Lovas T, Scherer V Energy & Fuels, 32(9), 9506, 2018 |
9 |
Cold flow characteristics of a novel bluff body hydrogen burner Meraner C, Li T, Ditaranto M, Lovas T International Journal of Hydrogen Energy, 43(14), 7155, 2018 |
10 |
Correlation effects between turbulence and the conversion rate of pulverized char particles Kruger J, Haugen NEL, Lovas T Combustion and Flame, 185, 160, 2017 |