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Creator | Title | Date | Description |
26 |
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Yahagi, Masahiro; Hase, Koji | A Study on Flame Stabilization of a Perforated Porous Plate Burner | 1994 | |
27 |
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Fangmeier, Bruce A.; Himes, Richard M.; McDannel, Mark D.; Lott, Robert A.; Toole-O'Neil, Barbara | A Summary of Air Toxic Emissions from Natural Gas-Fired Combustion Turbines | 1994 | |
28 |
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Smith, Philip J. | A technology for measuring combustion efficiency of industrial & field flares (integrating measurements and simulations) | 2011-08-12 | Flare research over the past decade has increasingly illustrated that there is likely no one simple operational parameter (or even a few parameters) that will characterize the combustion behavior of flare flames.i Simple correlations are unobtainable because of the complexity of the nonlinear mixing... |
29 |
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Taylor, Philip H.; Dellinger, Barry | A Thermal Stability Based Ranking of Hazardous Organic Compound Incinerability | 1987 | |
30 |
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Jatale, Anchal; Smith, Philip; Thornock, Jeremy; Smith, Sean | A Validation of Flare Combustion Efficiency Simulations | 2012-09-05 | |
31 |
|
Oscar H. Diaz-Ibarra | A Validation/Uncertainty Quantification (V/UQ) Analysis for a 1.5 MW Oxy-coal Fired L1500 Furnace using a Swirling Boundary Condition | 2016-09-12 | Conference Paper |
32 |
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Shaw, Henry; Yang, Chen-Lu | Absorption of NOx Induced by Sodium Chlorite Oxidation | 1991 | |
33 |
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| Acceptable operating parameters for steam assisted flares at Purge Rates | | Flare vendors recommend that cooling steam should always be supplied to the steam injection equipment on steam assisted flare tips. However, the nomenclature of "cooling steam" properly describes only one aspect of this steam flow. Not only does this steam provide thermal protection to the steam inj... |
34 |
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Kodesh, Zachary; Fox, Scott; Franklin, James | Accurate and reliable flare testing methods | 2011-08-30 | Recently the Texas Commission on Environmental Quality (TCEQ), through The University of Texas (UT) initiated a project utilizing John Zink facilities to better understand the operating envelope of varying flare technologies across various process conditions. A large scale flare testing environment ... |
35 |
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Brown, Lynn D. | Achieving Ultra-Low Sulfur Levels in Refinery Fuel Gas | 1991 | |
36 |
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Spellicy, Robert L. | Active and passive FTIR monitoring of flare combustion efficiency | | |
37 |
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Industrial Monitor & Control Corporation | Active and passive monitoring of flare combustion efficiency | 2011-09-19 | |
38 |
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Mangal, R.; Mozes, M.; Gaikwad, R.; Thampi, R.; MacDonald, D. | Additive Injection for NOx Control | 1989 | |
39 |
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Mochida, Susumu; Hasegawa, Toshiaki; Tanaka, Ryoichi | Advanced Application of Excess Enthalpy Combustion Technology to Boiler Systems | 1993 | |
40 |
|
Morgan, D. J.; Van de Kamp, W. L. | Advanced Burners for Coal Fired Boilers | 1996 | |
41 |
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Dugué, Jacques; Drasek, W. Von; Samaniego, J. M.; Charon, O.; Oguro, T. | Advanced Combustion Facilities and Diagnostics | 1998 | |
42 |
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Widmer, Neil C.; Cole, Jerald A.; Koppang, R.; Gemmer, R. V.; Gensler, Wayne | Advanced Diagnostic Evaluation of an Ultra-Low NOx Industrial Gas Burner | 1995 | |
43 |
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Nutcher, Peter B.; Kolczynski, Joe | Advanced Fluid Bed Combustor for Thermal Disposal of Industrial Wastes | 1990 | |
44 |
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| Advanced Models for Predicting Carbon Burn Out and NOx Formation in Coal Combustion | 1997 | |
45 |
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Rehmat, Amir ; Khinkis, Mark | Advanced Multipurpose Incinerator | 1990 | |
46 |
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Chen, S. L.; Lyon, R. K.; Seeker, W. R. | Advanced Non-Catalytic Post Combustion NOx Control | 1990 | |
47 |
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Kramlich, J. C.; Cole, J. A.; Lyon, R. K.; Chen, S. L.; Pershing, David W. | Advanced NOx Control With Selective Reduction Agents | 1988 | |
48 |
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Sullivan, John D.; Pam, R. L. | Advanced Radiant Combustion System for High Temperature Petrochemical Process Heaters | 1992 | |
49 |
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Sullivan, John D. | Advanced Radiant Combustion Systems for Petrochemical Process Heaters | 1994 | |
50 |
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Moyeda, D.; Sheldon, M.; Koppang, R.; Lanyi, M.; Li, X.; Eleazer, B. | Advanced Steel Reheat Furnace | 1997 | |