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ISBN-10: 047029440X

ISBN-13: 9780470294406

ISBN-10: 0470375469

ISBN-13: 9780470375464

This quantity is a part of the Ceramic Engineering and technology continuing  (CESP) series.  This sequence incorporates a selection of papers facing concerns in either conventional ceramics (i.e., glass, whitewares, refractories, and porcelain teeth) and complex ceramics. themes coated within the region of complex ceramic comprise bioceramics, nanomaterials, composites, strong oxide gasoline cells, mechanical houses and structural layout, complex ceramic coatings, ceramic armor, porous ceramics, and more.

Chapter 1 Philosophy, layout, and function of Oxy?Fuel Furnaces (pages 1–14): Marvin Gridley
Chapter 2 In?Situ trying out of Superstructure Refractories (pages 15–28): Don Shamp
Chapter three improvement and Implementation of a Three?Dimensional Combustion Code to be used in Glass Melting Furnaces (pages 29–42): okay. L. Jorgensen, S. Ramadhyani, R. Viskanta and L. W. Donaldson
Chapter four Demonstration of Cost?Effective NOx aid on a Regenerative Sideport Glass Furnace utilizing Oxygen?Enriched Air Staging (pages 43–59): P. Mohr, D. Neff, D. Rue, H. Abbasi, J. Li and S. Hope
Chapter five Pilkington 3R expertise: An replace (pages 60–65): I. N. W. Shulver and R. Quirk
Chapter 6 uncooked fabrics for fundamental Glass Manufacture (pages 66–75): Paul F. Guttmann
Chapter 7 strong point Glass uncooked fabrics: prestige and advancements (pages 76–86): Richard J. Bauer and Sandra L. Gray
Chapter eight replace at the Glass of the longer term (pages 87–94): Theodore R. Johnson
Chapter nine strength Benchmarking: a device for carrying on with approach development for the Glass (pages 95–108): C. Philip Ross
Chapter 10 Refractory Corrosion below Oxy?Fuel Firing stipulations (pages 109–119): A. J. Faberand and O. S. Verheijen
Chapter eleven Glass Furnace NOx keep watch over with fuel Reburn: the sector attempt (pages 120–135): Richard Koppang, Antonio Marquez, David Moyeda, Michael Joshi, Patrick Mohr and Roger Madrazo
Chapter 12 trying out of Superstructure Refractories in a Gas?Oxy surroundings opposed to High?Alkali Glasses (pages 136–145): L. H. Kotacska and T. J. Cooper
Chapter thirteen choice of optimal Refractories for the Superstructure of Oxy?Fuel Glass Melting Furnaces (pages 146–163): Gerard Duvierre, Alain Zanoli, Yves Boussant?Roux and Mike Nelson
Chapter 14 Stabilizing Distressed Glass Furnace Melter Crowns (pages 164–179): Laura A. Lowe, John Wosinski and Gene Davis
Chapter 15 Refractory Corrosion habit below Air?Fuel and Oxy?Fuel Environments (pages 180–207): H. T. Godard, L. H. Kotacska, J. F. Wosinski, S. M. Winder, A. Gupta, okay. R. Selkregg and S. Gould
Chapter sixteen selection of hint Impurities in a Furnace surroundings at working Temperature (pages 208–215): Stephen S. C. Tong, John T. Brown and Lawrence H. Koiacska
Chapter 17 Molybdenum/Fused solid AZS fabric for severe parts in Glass Melting Tanks (pages 216–224): M. Dunkl, A. Fantinel, G. Dinelli and R. Tognon
Chapter 18 Chromic Oxide Blocks to be used within the Glass box (pages 225–238): F. Gebhardt, G. Boymanns, E. Goerenz, H. Ebigt and G. Frohlich
Chapter 19 Low Emissions from Endport Furnaces (pages 239–250): T. J. Harper
Chapter 20 Regenerative Oxygen warmth restoration for enhanced Oxy?Fuel Glass Melter potency (pages 251–265): Richard Browning and James Nabors

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Extra info for A Collection of Papers Presented at the 57th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 18, Issue 1

Example text

After baseline testing, a PSR was selected for port 5 that gave a NO, reduction of 30-35%. All OEAS testing was conducted at the same port 5 PSR value. Figures 7 and 8 show the effects of enriched air (35% 0,) staging on NO, reduction and CO burnout. Figure 7 shows that side-of-port and two hole underport injection have only a small effect on the NO, reduction achieved by lowering the primary stoichiometric ratio. At the same time, CO is effectively burned out with both side-of-port and underport injection.

NO, emissions over 10 lb/t glass are not uncommon. Regional NO, emission regulations are in force i n southern California and are either mandated or planned for other regions. Currently, there are no national NO, emission regulations, but this could change in response to the 1990 Clean Air Act Amendments. To address existing and anticipated regulations, the project team developed a cost-effective retrofit NO, control technology for regenerative natural gas-fired glass melters. This technology, which involves a unique method of air staging, is already commercial for endport glass furnaces, is being demonstrated on a sideport container glass furnace, and is applicable to many other types of high-temperature material processing furnaces.

NO, formation is kept to a minimum and the combustion process is completed within the furnace using various staging options. Other benefits of reduced air firing include improved heat transfer to the melt resulting from higher flame temperature, greater luminosity, and higher system efficiency resulting from lower excess air discharge. 44 Ceram. fng. Sci. 2 rt I I I I 09 1 11 12 13 14 Stoichiometric Ratio Figure 1. Effect of first-stage stoichiometric ratio on NO, production. Combustion Staging Technology In the early 198Os, IGT, with funding support from GRI and SoCal and technical assistance from Combustion Tec, developed and tested several NO, control techniques, including air staging, on an IGT glass tank simulator.

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