351 - 375 of 1,046
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CreatorTitleDateDescription
351 Fukuda, K.; Shima, H.; Hoshijima, Y.; Yamamoto, H.; Onuki, K.Development of RH-Multi-Function-Burner1995
352 Kokura, Yoshihiro; Ichiraku, Yuichi; Matsumura, Masahiko; Yoshida, ToshioDevelopment of Supplementary Firing Burner for Gas Turbine Repowering System1994
353 Suzuki, Yutaka; Kaminaka, Motofumi; Kaburagi, Katuhiko; Yabuki, KunihiroDevelopment of Swirl Burner Series for Steel Making Processes1994
354 Madden, Debi A.; Farthing, George A.; Gohara, W. F.Development of the Advanced LIDS System as an Integral Part of the Babcock & Wilcox Low Emission Boiler System1994
355 Development of the MIT-RSFC Low NOx Burner for Pulverized Coal Combustion1994
356 Development Program and Operating Experience of Pulverized Coal Staged Combustion Burners for Steam Boilers1979
357 Plodinec, M. J.; Cook, R. L.; Arunkumar, R.; Green, R. A.; Gresham, L. L.; Jang, P. R.; Lindner, J S.; Luthe, J. C.; McCarthy, M. J.; Miles, D. M.; Monts, D. L.; Norton, O. P.; Okhuysen, W. P.; Singh, J. P.; Yueh, F. Y.; Zikratov, G. A.Diagnostic Field Measurements in High Temperature Industrial Scale Process Equipment1998
358 Scotto, Mark V.Diesel Burner Development for 500-Watt Portable Thermophotovoltaic Generator1999
359 Ryan, H. M.; Francis, A. W.; Riley, M. F.; Kobayashi, H.Dilute Oxygen Combustion1996
360 Dilute Oxygen Combustion a New Approach for Low NOx Combustion1992
361 Kobayashi, Hisashi ; Du, ZhiyouDilute Oxygen Combustion a New Approach for Low NOx Combustion1992
362 Magee, R. S.; Cesmebasi, E.Dioxin Emissions From Incineration Processes: Role of Feedstock Constituents1987
363 Beychok, Milton R.Dioxin, Furan, Particulate, and Trace Metal Emissions From Municipal Refuse Incinerators1987
364 Mournighan, Robert E.; Lee, Johannes W.; Ross, Robert W. II; Vocque, Ralph H.; Lewis, Jerry W.; Waterland, Larry R.Distribution of Volatile Trace Elements in Emissions and Residuals From Pilot Scale Liquid Injection Incineration1987
365 Varga, Gideon M. Jr.DOE Industrial Combustion Activities: Focusing on Industrial Combustion Needs Into the 21st Century1996
366 Colannino, J.DUPLEX Technology Demonstrates Sub-5 PPM NOx and CO Simultaneously Without SCR, FGR, or High Excess Air2015-09-10Paper from the AFRC 2015 conference titled DUPLEX Technology Demonstrates Sub-5 PPM NOx and CO Simultaneously Without SCR, FGR, or High Excess Air
367 Ruiz, R.Duplex-A Creative Innovation In Industrial Combustion Technology2016-09-12Paper from the AFRC 2016 conference titled Duplex-A Creative Innovation In Industrial Combustion Technology
368 Roberto RuizDuplex-A Creative Innovation in Industrial Combustion Technology2016-09-12Conference Paper
369 Martin, MatthewEarly-Stage Development of an Advanced Industrial Scale Multipoint Flare Burner2013-09-24Paper from the AFRC 2013 conference titled Early-Stage Development of an Advanced Industrial Scale Multipoint Flare Burner by Matthew Martin.
370 Cook, Charles A.; Charagundla, S. Rao; Presser, Cary; Dressler, John L.; Gupta, Ashwani K.Effect of Acoustic Atomization on Combustion Emissions1996
371 Rogers, Tony ; Marshall, John J.Effect of Advanced NOx Control Options on Furnace Exit Gas Temperature and Water Wall Heat Flux in a Utility Boiler1991
372 Timothy, L. D.; Neville, M. ; Beer, J. M.; Sarofim, Adel F.Effect of Coal Particle Temperature on Ash Vaporization1982
373 Morgan, M. E.Effect of Coal Quality on the Performance of Low-NOx Burners1988
374 Muzio, L. J.; Hack, R. L.; Teixeira, D. P.The Effect of Combustion Modifications on SCR Performance1994
375 Miyasato, M. M.; Moyeda, David K.; Sowa, W. A.; Samuelsen, G. S.The Effect of Fuel and Air Mixing on NOx Production in a Model Industrial Natural Gas Fired Burner1992
351 - 375 of 1,046