Download e-book for kindle: A Collection of Papers Presented at the 56th Conference on by

ISBN-10: 0470314818

ISBN-13: 9780470314814

ISBN-10: 0470375418

ISBN-13: 9780470375419

This quantity is a part of the Ceramic Engineering and technological know-how continuing  (CESP) series.  This sequence features a selection of papers facing matters in either conventional ceramics (i.e., glass, whitewares, refractories, and porcelain tooth) and complex ceramics. themes coated within the zone of complex ceramic comprise bioceramics, nanomaterials, composites, sturdy oxide gas cells, mechanical houses and structural layout, complicated ceramic coatings, ceramic armor, porous ceramics, and more.

Chapter 1 a brand new method of Joint examine and improvement: picking the potential of a Partnership among the Glass and the government (pages 1–8): Susanne R. Leonard
Chapter 2 identify V allows within the Glass undefined: Making Them basic, complete, and versatile (pages 9–18): Michael L. Newsom
Chapter three Glass Furnace HO, keep watch over with gasoline Reburn (pages 19–35): Richard Koppang, David Moyeda and Lesley Donaldson
Chapter four Particulate Emissions in Oxy?Fuel Fired Glass Furnaces (pages 36–46): Benjamin Jurcik, Louis Philippe, Steve Wayman and Roberto Ruiz
Chapter five Demonstration on an Ultra?Low?NO, Oxygen?Fuel category Meltins method (pages 47–54): Thomas ok. Dankert and Geoffrey B. Tuson
Chapter 6 Volatilization in the course of Thermal Plasma Processing of Glass Melts Containing Heavy Metals (pages 55–61): Jeffrey W. wooden, David G. Cahill, Rebecca Cortez, Larry D. Stephenson and Hany H. Zaghloul
Chapter 7 Glass box Reuse: Refillables carry chance for Glass (pages 62–70): Michael Lewis
Chapter eight Use of Zinc Selenite in Glass Manufacture (pages 71–77): Charles Merivale
Chapter nine Segregation impacts Glass caliber (pages 78–83): David Stuart?Dick
Chapter 10 Submersed Combustion Furnace for Glass Melts (pages 84–92): Vladimir M. Olabin, Leonard S. Pioro, Alexander B. Maximuk, Mark J. Khinkis and Hamid A. Abbasi
Chapter eleven Thermal Efficiencies of go with the flow and box Furnaces (pages 93–102): Warren Turner
Chapter 12 Lift?Out Rolls and Lehr Rolls for creation of High?Quality category (pages 103–111): D. Bucko, J. M. Vignot, P. Guillo, D. Gautier, Y. Takahashi and S. Inoue
Chapter thirteen Ongoing research of Oxy?Fuel Firing impression on Corrosion of Nonglass touch Refractories, half 2 (pages 112–120): A. Gupta and S. M. Winder
Chapter 14 Model?Based review of Oxy?Fuel Glass?Melting Furnace functionality (pages 121–131): M. G. Carvalho and M. Nogueira
Chapter 15 layout Modeling of Glass Furnace OXY?Fuel Conversion utilizing Three?Dimensional Combustion versions (pages 132–140): ok. T. Wu and M. okay. Misra
Chapter sixteen warmth move Optimization in television Glass Furnaces (pages 141–151): William J. Horan, Aleksandar G. Slavejkov and Leon L. Chang
Chapter 17 High?Performance Oxy?Fuel Melting: 3 Flat Jet Burner functions (pages 152–161): Carl Schatz
Chapter 18 Oxy?Fuel Economics replace in response to Case Histories (pages 162–169): Ronald W. Schroeder and Allan E. Zak
Chapter 19 Is Your category jam-packed with Water? (pages 170–179): John T. Brown and Hisashi Kobayashi
Chapter 20 Corrosion of Silica and Mullite Refractories utilized in Glass Furnaces less than a hundred% Oxy?Firing approach (pages 180–188): J. Boillet, W. Kobillet, W. J. Snyder, C. A. Paskocimas, E. R. Leite, E. Longo and J. A. Varela

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Extra info for A Collection of Papers Presented at the 56th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 17, Issue 2

Sample text

Gas reburning is an attractive technology for industrial processes, particularly glass furnaces. The level of control can be further improved on a rebuild with advanced reburning, which reduces NO, to about 90%, and the incremental natural gas consumption of gas reburning decreases by about half. "Three Gas Reburning Evaluations: Final Results and Long-Term Performance,'' presented at the EPRI/EPA 1995 Joint Symposium on Stationary Combustion NO, Control, Kansas City, Missouri, May 1995. 2"Industrial Applications of Gas Reburning,"Rept.

All burners have the same maximum-rated capacities of 184 m3h (6500 ft3h) natural gas and 408 m3h (14 400 ft%) for 90% purity oxygen. The combustion components were supplied by Praxair, the oxygen supplier for the project. The skids were built by North American Manufacturing, a subcontractor to Praxair. The fuel and oxygen were first delivered to the main skid where they were regulated separately to their respective operating pressures. 3) Ll U E L1 L2 L3 (b) Model prediction L2 L3 L4 L5 L4 L5 w a2 P 5 Figure 6.

This leads us to expect that physical resuspension is much smaller in an oxy combustion system than in an air combustion system. Clearly, the air combustion system has substantially more physical resuspension than the oxy combustion case. , a 75% or greater reduction is obtained). If we estimate that 85% of the particulate material is from the recondensation of volatiles in the exhaust system and 15% from the physical resuspension mechanism, then an overall estimate of the reduction in particulate emissions when converting a furnace from a conventional air firing system to oxy firing can be made.

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A Collection of Papers Presented at the 56th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 17, Issue 2

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