IP Library Granted Patent US 7,168,269
Granted Patent B2
US 7,168,269 · App. 10/208,239 · Granted Jan 30, 2007

Gas injection for glass melting furnace to reduce refractory degradation

Assignee: The BOC Group, Inc.
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Quick Facts
Patent No.
US 7,168,269
App. No.
10/208,239
Granted
Jan 30, 2007
Kind
B2
Abstract

A glass melting furnace has a gas inlet positioned proximate to a charging section oxy-fuel combustion region to introduce gas into the region and to at least partially displace gas having a partial pressure of alkali vapor from the region, and optionally a gas outlet is adapted to provide an exit for a volume of furnace atmosphere. A method for reducing alkali vapor corrosion of glass furnace refractory structures includes providing a gas inlet proximate to the oxy-fuel combustion region; introducing a volume of gas from the inlet into the region, displacing a volume of gas having a partial pressure of alkali vapor from the region; and, optionally providing a gas outlet adapted to provide an exit for a volume of furnace atmosphere.

Claims (17)

1. A method for reducing alkali vapor corrosion of furnace refractory structures in a glass melting furnace having an upstream melting zone and a downstream fining zone; a charging section in the melting zone; and at least one oxy-fuel fired burner disposed in the melting zone proximate the charging section to provide an oxy-fuel combustion region; wherein the furnace contains a regenerator or a recuperator having a plurality of ports, comprising:

providing at least one gas inlet proximate to the oxy-fuel combustion region;

introducing a first volume of gas, having no or a dilute partial pressure of alkali vapor, from the at least one gas inlet into the oxy-fuel combustion region;

at least partially displacing a second volume of gas, optionally substantially equal to the first volume, from the oxy-fuel combustion region, the second volume having a partial pressure of alkali vapor higher than the first volume;

providing at least one gas outlet adapted to provide an exit for a volume of furnace atmosphere;

providing at least partial blockage of at least one port of the regenerator or recuperator and providing at least a partial opening of one port of the regenerator or recuperator to provide the at least one gas inlet.

2. The method of claim 1 including replacing combustion from the at least one at least partially blocked port of the regenerator or recuperator and the at least one at least partially open port of the regenerator or recuperator by operating the at least one oxy-fuel burner.

3. The method of claim 1 wherein the providing at least a partial opening of at least one port of the regenerator or recuperator provides the at least one gas outlet.

4. The method of claim 3 including periodically reversing the direction of flow of the gas from, and the furnace atmosphere to, opposing sides of the at least one partially open port.

5. A method for reducing alkali vapor corrosion of furnace refractory structures in a glass melting furnace having walls supporting a crown substantially enclosing an upstream melting zone and a downstream fining zone; a charging section in the melting zone; and at least one oxy-fuel fired burner disposed at the crown above the melting zone proximate the charging section to provide an oxy-fuel combustion region; wherein the furnace contains a regenerator or a recuperator having a plurality of ports, comprising:

providing at least one gas inlet proximate to the oxy-fuel combustion region;

introducing a first volume of gas, having no or a dilute partial pressure of alkali vapor, into the oxy-fuel combustion region;

at least partially displacing a second volume of gas proximate the crown in the oxy-fuel combustion region, the second volume having a partial pressure of alkali vapor higher than the first volume;

providing at least one gas outlet adapted to provide an exit for a volume of furnace atmosphere, optionally substantially equal to the first volume; providing at least partial blockage of at least one port of the regenerator or recuperator and providing at least a partial opening of one port of the regenerator or recuperator to provide the at least one gas inlet.

6. The method of claim 5 including replacing combustion from the at least one at least partially blocked port of the regenerator or recuperator and the at least one at least partially open port of the regenerator or recuperator by operating the at least one oxy-fuel burner.

7. The method of claim 5 wherein the providing at least a partial opening of at least one port of the regenerator or recuperator provides the at least one gas outlet.

8. The method of claim 7 including periodically reversing the direction of flow of the gas from, and the furnace atmosphere to, opposing sides of the at least one partially open port.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE ADDRESS, PREVIOUSLY RECORDED AT REEL 013336, FRAME 0462. Recorded Feb 11, 2005
From: SIMPSON, NEIL GEORGE; LEBLANC, JOHN R; PRUSIA, GREGORY FLOYD
To: THE BOC GROUP, INC.
Reel/Frame 015710/0380 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2003
From: NEIL GEORGE SIMPSON; LEBLANC, JOHN R.; PRUSIA, GREGORY FLOYD
To: BOC GROUP, INC., THE
Reel/Frame 014014/0059 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2002
From: SIMPSON, NEIL GEORGE; LEBLANC, JOHN R.; PRUSIA, GREGORY FLOYD
To: BOC GROUP, INC., THE
Reel/Frame 013336/0462 →
Continuity (4)
Continuation In Part 0979882600 · Mar 2, 2001
Continuation In Part 0937492100 · Aug 16, 1999
Provisional Application 6030952800 · Aug 2, 2001
Related Publication 20030024271A1 · Feb 6, 2003