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Creator | Title | Date | Description |
76 |
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AFRC | AFRC 2012 Meeting Agenda | 2012-09-05 | |
77 |
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Yamagishi, M. ; Yokoyama, T. ; Shibuya, E. | Air Pollution Control for Waste to Energy Plants | 1987 | |
78 |
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Bluestein, Joe | Air Regulatory Outlook for Combustion Processes | 1996 | |
79 |
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Elbaz, A.M. | Air staged double swirl low NOx LPG burner | 2015-09-11 | Paper from the AFRC 2015 conference titled Air staged double swirl low NOx LPG burner |
80 |
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Wendt, J. O. L.; Mereb, J. B. | Air Staging and Reburning Mechanisms for NOx Abatement in a Laboratory Coal Combustor | 1991 | |
81 |
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Demayo, T. N.; Miyasato, M. M.; Samuelsen, G. S. | Air Toxic Measurements in Different Model Industrial Applications | 1999 | |
82 |
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Moody, K.J. | Alkaline Hydrolysis Resistant and Durable Refractory Linings for Fired Process Heaters | 2017-12-12 | Paper from the AFRC 2017 conference titled Alkaline Hydrolysis Resistant and Durable Refractory Linings for Fired Process Heaters |
83 |
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Jim Seebold | All Talk and No Do! Why No Reported Successes In Optimizing Industrial Flare CEs and DREs by Automatic Control to the Incipient Smoke Point? | 2013-09-25 | Paper from the AFRC 2013 conference titled All Talk and No Do! Why No Reported Successes In Optimizing Industrial Flare CEs and DREs by Automatic Control to the Incipient Smoke Point? by Jim Seebold. |
84 |
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Skarda, James | Alloy Selection and Design Considerations for High Temperature Service | 1989 | |
85 |
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Nakamura, Yasuhisa | Aluminum Heating Technique Using an Immersion-tube Burner | 1991 | |
86 |
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| American flame research committee (AFRC) international combustion symposium | 2011 | Burner retrofits in industrial boilers are an economical solution to achieving lower NOx levels with existing fired equipment. However, designing a next generation ultra-low NOx burner footprint that fits into an existing burner cutout continues to be an industry challenge in many applications. Buil... |
87 |
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Loftus, Jordan | American Flame Research Committee of the International Flame Research Foundation | 1984 | |
88 |
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Lee, C. C. Ph.D. | An Analysis of Metal Partitioning in a Hazardous Waste Incineration System | 1987 | |
89 |
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Krauss, W. E.; Singh, S. N. | An Assessment of the Utilization of Coal Oil Mixtures in Firetube Boilers | 1982 | |
90 |
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Stickler, D.; Gannon, R.; Young, L.; Annamalai, K. | An Engineering Model for Pulverized Fuel Combustion Stability | 1983 | |
91 |
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Noble, Roger K.; Keller, Michael R.; Schwartz, Robert E. | An Experimental Analysis of Flame Stability of Open Air Diffusion Flames | 1984 | |
92 |
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Gollahalli, S. R.; Siddiqui, N. | An Experimental Study of the Burning Spray of an Unstabilized Synthetic Oil Water Emulsion | 1984 | |
93 |
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Bai, T.; Yeboah, Y. D.; Sampath, R.; Farnsworth, C.; Mocsari, J. | An Experimental Study of the Effects of Natural Gas Composition Variations on Fan Powered Infrared (PIR) Burners | 1996 | |
94 |
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Yap, Loo T.; Yetter, Richard A. | An Inquiry Into the Fundamental Causes of Incineration Emissions | 1990 | |
95 |
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Breault, Ronald; Litka, Anthony; McClaine, Andrew; Chamberland, Ray P.; McNeil, David T.; Wilsoncroft, Tom | An Integrated Cullet/Batch Preheater System for Oxygen-Fuel Fired Glass Furnaces | 1996 | |
96 |
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Walsh, Peter M.; Li, Chengzhi; Beer, Janos M. | An Interpretation of Time-Resolved Oxygen Concentration Measurements in Coal-Burning Fluidized Beds | 1983 | |
97 |
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Rey-Chein, Chang ; Wen-Chieh, Chen ; Wen-Chen, Chang | An Investigation of Aromatic Derivatives Removal by Regenerative Combustion | 1998 | |
98 |
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Ying, Shuh-Jing | An Investigation of Iron Formation on the Furnace Floor | 1983 | |
99 |
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Yang, Y. B.; Gibbs, B. M.; Hampartsoumian, E. | An Investigation of NO Reduction by Coal Reburning | 1998 | |
100 |
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Dupont, V.; Pourkashanian, Mohamed; Williams, Alan | An Investigation of Ultra Low NOx Natural Gas Burners | 1992 | |