Tall Crown Glass Furnace Technology for Oxy-Fuel Firing

Author(s):  
H. Kobayashi ◽  
K. T. Wu ◽  
C. B. Tuson ◽  
F. Dumoulin ◽  
J. Böllert
2014 ◽  
Vol 525 ◽  
pp. 158-161
Author(s):  
Shao Hua Ling ◽  
Chang Yong Jing ◽  
Xiao Liang Li

This paper analyzes and discusses the application for flue gas DeNOx technology in the float glass furnace, combining float glass furnace technology and flue gas characteristics. To 500T/D float glass furnace, study float glass furnace flue gas SCR DeNOx technology solutions, and analyzes economic and environmental benefits for float glass furnace flue gas SCR DeNOx technology.


2006 ◽  
Vol 103 (2) ◽  
pp. 67-75 ◽  
Author(s):  
L. Ferrand ◽  
P. Reynes ◽  
F. Le Duigou

Author(s):  
Gongda Chen ◽  
Shangchao Xiong ◽  
Xiaoping Chen ◽  
Xuefeng Chu ◽  
Rongqiang Yin ◽  
...  
Keyword(s):  

Author(s):  
Marta K. Richards ◽  
Kenneth G. Partymiller ◽  
Joseph W. Dauchy ◽  
Kenneth W. Brown

2008 ◽  
Vol 39-40 ◽  
pp. 607-612
Author(s):  
Bernhard Fleischmann

A part of a soldier block, placed in a float glass furnace near the hot spot area, was investigated to learn about the changes in the microstructure during the production of the block, during the use for glass melting and after the shut down of the furnace and the cooling of the block. Beside the three phases after the production (baddeleyite, corundum, vitreous phase) during use as a soldier block mullite and secondary corundum as well as secondary zirconia may occure. Cooling down the used block after the furnace campaign the beginning of the crystallisation of feldspars may be seen.


1962 ◽  
Vol 19 (3) ◽  
pp. 156-158
Author(s):  
D. S. Novikov
Keyword(s):  

2005 ◽  
Vol 25 (14-15) ◽  
pp. 2299-2320 ◽  
Author(s):  
Y. Reboussin ◽  
J.F. Fourmigué ◽  
Ph. Marty ◽  
O. Citti

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