NO and N2O formation during the combustion of wood, straw, malt waste and peat F Winter, C Wartha, H Hofbauer Bioresource technology 70 (1), 39-49, 1999 | 320 | 1999 |
Heavy metal removal from MSW fly ash by means of chlorination and thermal treatment: Influence of the chloride type B Nowak, SF Rocha, P Aschenbrenner, H Rechberger, F Winter Chemical Engineering Journal 179, 178-185, 2012 | 231 | 2012 |
Heavy metal removal from municipal solid waste fly ash by chlorination and thermal treatment B Nowak, A Pessl, P Aschenbrenner, P Szentannai, H Mattenberger, ... Journal of Hazardous Materials 179 (1-3), 323-331, 2010 | 194 | 2010 |
Homogeneous formation of NO and N2O from the oxidation of HCN and NH3 at 600–1000° C VJ Wargadalam, G Löffler, F Winter, H Hofbauer Combustion and Flame 120 (4), 465-478, 2000 | 177 | 2000 |
Laser ignition of methane–air mixtures at high pressures H Kopecek, H Maier, G Reider, F Winter, E Wintner Experimental Thermal and Fluid Science 27 (4), 499-503, 2003 | 169 | 2003 |
Heavy metal removal from sewage sludge ash and municipal solid waste fly ash—a comparison B Nowak, P Aschenbrenner, F Winter Fuel processing technology 105, 195-201, 2013 | 167 | 2013 |
Status, characterization, and potential utilization of municipal solid waste as renewable energy source: Lahore case study in Pakistan M Azam, SS Jahromy, W Raza, N Raza, SS Lee, KH Kim, F Winter Environment international 134, 105291, 2020 | 151 | 2020 |
Pyrolysis of poly-l-leucine under combustion-like conditions☆ KM Hansson, LE Åmand, A Habermann, F Winter Fuel 82 (6), 653-660, 2003 | 141 | 2003 |
The NO and N2O formation mechanism during devolatilization and char combustion under fluidized-bed conditions F Winter, C Wartha, G Löffler, H Hofbauer Symposium (international) on combustion 26 (2), 3325-3334, 1996 | 138 | 1996 |
Application of laser ignition to hydrogen–air mixtures at high pressures M Weinrotter, H Kopecek, E Wintner, M Lackner, F Winter International journal of hydrogen energy 30 (3), 319-326, 2005 | 120 | 2005 |
Laser ignition of ultra-lean methane/hydrogen/air mixtures at high temperature and pressure M Weinrotter, H Kopecek, M Tesch, E Wintner, M Lackner, F Winter Experimental thermal and fluid science 29 (5), 569-577, 2005 | 117 | 2005 |
Handbook of combustion M Lackner, F Winter, AK Agarwal Methods 1 (4), 2013 | 115 | 2013 |
Laser ignition of methane-air mixtures at high pressures and diagnostics H Kopecek, S Charareh, M Lackner, C Forsich, F Winter, J Klausner, ... J. Eng. Gas Turbines Power 127 (1), 213-219, 2005 | 109 | 2005 |
Scale-up of fluidized-bed combustion–A review B Leckner, P Szentannai, F Winter Fuel 90 (10), 2951-2964, 2011 | 106 | 2011 |
Temperatures in a fuel particle burning in a fluidized bed: The effect of drying, devolatilization, and char combustion F Winter, ME Prah, H Hofbauer Combustion and flame 108 (3), 302-314, 1997 | 101 | 1997 |
Combustion: from basics to applications M Lackner, Á Palotás, F Winter John Wiley & Sons, 2013 | 93 | 2013 |
Mid-infrared external-cavity quantum-cascade laser G Totschnig, F Winter, V Pustogov, J Faist, A Müller Optics letters 27 (20), 1788-1790, 2002 | 92 | 2002 |
Modeling and simulation of heat front propagation in the iron ore sintering process J Mitterlehner, G Löffler, F Winter, H Hofbauer, H Schmid, E Zwittag, B TH, ... ISIJ international 44 (1), 11-20, 2004 | 88 | 2004 |
An experimental study on the kinetics of fluidized bed iron ore reduction A Habermann, F Winter, H Hofbauer, J Zirngast, JL Schenk ISIJ international 40 (10), 935-942, 2000 | 84 | 2000 |
N2O emission under fluidized bed combustion condition BX Shen, T Mi, DC Liu, B Feng, Q Yao, F Winter Fuel Processing Technology 84 (1-3), 13-21, 2003 | 82 | 2003 |