476 - 500 of 927
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CreatorTitleDateDescription
476 Walsh, Peter M.; Moyeda, David K.; Lanier, W. Steven; Booth, C. Michael; Folk, E. E. (Gary); Maxwell, ?John; Whitcraft, Wilfred K.; Noble, Roger K.; Clopton, Jeff M.; Rogers, Tracy; Nicely, Chris; Rosensteel, Robert E.; Miller, C. AndrewHydrogen flares: the DuPont-EER-EPA test program, amendment of the EPA requirements, and related developments2010-09-30
477 Panfili, R.; Vujkovic-Cvijin, P.; Tan, X.; Kennett, R.; Taylor, R.; Dothe, H.; Bernstein, L.Hyperspectral Modeling of Combustion Flare Emissions2012-09-05
478 Ling, S. C.; Pao, H. P.Ideal Combustion of Solid Fuels1988
479 Gogolek, Peter E.G.The IFC Literature Review
480 Gogolek, PeterThe IFC literature review1983
481 Roberts, PeterIFRF Report Research and Technical Development1991
482 Phuoc, T. X.; Durbetaki, P.Ignition Modes of PMMA Under Convective Heating1985
483 Veranth, John M.; Fletcher, Thomas H.; Pershing, David W.; Sarofim, Adel F.Impact of Low NOx Firing Conditions on Unburned Carbon Losses1998
484 Havener, John; Terhune, KeithImplementation of a Software CEM for NOx Emissions Monitoring1993
485 Singh, Shyam N.; Yokosh, Steven ; Briselden, Tom ; Singh, Shiw S.Improved Combustion Thermal Efficiency With Compact Recuperator Design1986
486 Diez, Francisco J.; Dahm, Werner J.A.Improved prediction of buoyancy effects on flame length and combustion properties of flares2004An improved integral method is presented for determining the flame length and combustion properties of buoyant jet flames, including flares, that avoids the Morton entrainment hypothesis entirely and thereby removes the ad hoc "entrainment modeling" required in most other integral approaches. Rather...
487 Wakamura, YasujiroImprovement of Ash Surface-Melt Furnace and Utilization of the Slag1997
488 Okada, Seiji; Suzuki, Yutaka; Kaminaka, MotofumiImprovement of Reducing Flame Burner with Oxygen Enrichment1998
489 Shore, DavidImproving flare design a transition from art-form to engineering science2007Many of the day-to-day activities surrounding Flaring, at both the project design and operational stages, are vague and apparently outside the control of the Flare Engineer. Design specifications usually only cover a single case out of a multitude of possible compositions and flows. In service, flow...
490 Cremer, Marc; Adams, B. R.; Heap, M. P.; Smith, Philip J.; Brown, D. J.Improving the Performance of Process Heaters Through Fireside Modeling1997
491 Holve, D. J.In Situ Particle Counting for Research and Industry1983
492 Darroch, Michael; Laflesh, Richard; Hart, Douglas J.; Jennings, Patrick L.In-Furnace Low NOx Solutions for Wall-Fired Boilers1991
493 Annen, K.; Goodwin, W.; Stewart, G.; Nelms, C.In-Situ Size Measurements in an Industrial Boiler1983
494 Ohyashiki, Takuya; Itaya, Yoshinori; Matsuda, Hitoki; Hasatani, MasanobuIncineration Behavior of Waste Liquid with Methane-Air Combustion in Triple Coaxial Tube Incinerator and Emissions of Exhaust Gas1998
495 Cundy, V. A.; Senser, D. W.The Incineration Characteristics of DichloromethaneThe Incineration Characteristics of Dichloromethane (CH2Cl2)1984
496 Acharya, Prakash, P.E.Incineration of Hazardous Waste in a Mobile System1984
497 Steeper, R. R.; Sorbo, N. W.; Chang, D. P. Y.; Law, C. K.Incineration of Liquid Hazardous Wastes: Vaporization Combustion of Droplets of Chlorinated Hydrocarbons1987
498 Bhan, RoopIncineration of Nitrogen-Bearing Wastes1991
499 Bergstrom, Jan G. T.; Oberg, TomasIncineration of PCB and Other Hazardous Wastes1987
500 Kurek, Harry S.; Kune, Vladimir; Chudnovsky, Yaroslav P.; Touzet, Antonin; La Faire, Antoine de; Landais, Thierry; Erinov, Anatoly E.; Semernin, Aleksei M.Indirect Fired Flat Radiant Panels1997
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