Franz Winter
Affiliations: | Chemical Engineering | Vienna University of Technology, Wien, Wien, Austria |
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Sign in to add traineeMaximilian Lackner | research scientist | 2001-2004 | Vienna University of Technology |
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Publications
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Schuh S, Winter F. (2020) Dual Fuel Reaction Mechanism 2.0 including NOx Formation and Laminar Flame Speed Calculations Using Methane/Propane/n-Heptane Fuel Blends Energies. 13: 778 |
Naydenova I, Sandov O, Wesenauer F, et al. (2020) Pollutants formation during single particle combustion of biomass under fluidized bed conditions: An experimental study Fuel. 278: 117958 |
Azam M, Ashraf A, Jahromy SS, et al. (2020) Isoconversional nonisothermal kinetic analysis of municipal solid waste, refuse‐derived fuel, and coal Energy Science & Engineering |
Schuh S, Frühhaber J, Lauer T, et al. (2019) A Novel Dual Fuel Reaction Mechanism for Ignition in Natural Gas–Diesel Combustion Energies. 12: 4396 |
Schuh S, Ramalingam AK, Minwegen H, et al. (2019) Experimental Investigation and Benchmark Study of Oxidation of Methane–Propane–n-Heptane Mixtures at Pressures up to 100 bar Energies. 12: 3410 |
Jahromy SS, Birkelbach F, Jordan C, et al. (2019) Impact of Partial Pressure, Conversion, and Temperature on the Oxidation Reaction Kinetics of Cu2O to CuO in Thermochemical Energy Storage Energies. 12: 508 |
SetoodehJahromy S, Jordan C, Azam M, et al. (2019) Fly Ash from Municipal Solid Waste Incineration as a Potential Thermochemical Energy Storage Material Energy & Fuels. 33: 5810-5819 |
Azam M, Jahromy SS, Raza W, et al. (2019) Comparison of the combustion characteristics and kinetic study of coal, municipal solid waste, and refuse‐derived fuel: Model‐fitting methods Energy Science & Engineering. 7: 2646-2657 |
Flegkas S, Birkelbach F, Winter F, et al. (2018) Fluidized bed reactors for solid-gas thermochemical energy storage concepts - Modelling and process limitations Energy. 143: 615-623 |
Pachler RF, Ramalingam AK, Heufer KA, et al. (2016) Reduction and validation of a chemical kinetic mechanism including necessity analysis and investigation of CH4/C3H8 oxidation at pressures up to 120 bar using a rapid compression machine Fuel. 172: 139-145 |