IP Library Granted Patent US 8,641,411
Granted Patent B2
US 8,641,411 · App. 10/931,009 · Granted Feb 4, 2014

Method and apparatus for directing exhaust gas through a fuel-fired burner of an emission abatement assembly

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Quick Facts
Patent No.
US 8,641,411
App. No.
10/931,009
Granted
Feb 4, 2014
Kind
B2
Abstract

A method of operating an emission abatement assembly includes separating the exhaust gas flow entering through the gas inlet port of the fuel-fired burner into a combustion flow which is advanced through the combustion chamber, and a bypass flow which bypasses the combustion chamber. An emission abatement assembly is also disclosed.

Claims (44)

1. A method of operating a fuel-fired burner of an emission abatement assembly, the method comprising the steps of:

advancing a flow of exhaust gas into a housing of the fuel-fired burner, and

maintaining a stable flame by separating the flow of exhaust gas into (i) a combustion flow which is advanced through a combustion chamber of the fuel-fired burner, and (ii) a bypass flow which is bypassed around the combustion chamber of the fuel-fired burner, wherein the combustion flow is about 50%-70% of the flow of exhaust gas and has a lower velocity than a flame of the fuel-fired burner.

2. The method of claim 1 , wherein the separating step comprises advancing the flow of exhaust gas into contact with a diverter plate to separate the flow of exhaust gas into the combustion flow and the bypass flow.

3. A method of operating a fuel-fired burner of an emission abatement assembly, the method comprising the steps of:

advancing a flow of exhaust gas into a housing of the fuel-fired burner, and

maintaining a stable flame by separating the flow of exhaust gas into (i) a combustion flow which is advanced through a combustion chamber of the fuel-fired burner, and (ii) a bypass flow which is bypassed around the combustion chamber of the fuel-fired burner, wherein the combustion flow is about 70% or less of the flow of exhaust gas and has a lower velocity than a flame of the fuel-fired burner, and wherein:

the combustion chamber comprises an annular wall having (i) a first wall half which faces away from an exhaust gas inlet port of the housing, and (ii) a second, opposite wall half which faces toward the exhaust gas inlet port of the housing,

the first wall half has a number of gas inlet openings defined therein,

the second wall half is substantially devoid of openings, and

the separating step comprises impinging the flow of exhaust gas onto the second wall half.

4. A method of operating a fuel-fired burner of an emission abatement assembly, the method comprising the steps of:

advancing a flow of exhaust gas into a housing of the fuel-fired burner, and

maintaining a stable flame by separating the flow of exhaust gas into (i) a combustion flow which is advanced through a combustion chamber of the fuel-fired burner, and (ii) a bypass flow which is bypassed around the combustion chamber of the fuel-fired burner, wherein the combustion flow is about 70% or less of the flow of exhaust gas and has a lower velocity than a flame of the fuel-fired burner, and wherein:

the combustion chamber comprises an annular wall having (i) a first wall half which faces away from an exhaust gas inlet port of the housing, and (ii) a second, opposite wall half which faces toward the exhaust gas inlet port of the housing,

the first wall half has a first number of gas inlet openings which collectively define a first void area,

the second wall half has a second number of gas inlet openings which collectively define a second void area,

the second void area is less than the first void area, and

the separating step comprises impinging the flow of exhaust gas onto the second wall half.

5. A fuel-fired burner of an emission abatement assembly, the fuel-fired burner comprising:

a housing having an exhaust gas inlet port, and

a combustion chamber positioned in the housing, the combustion chamber comprising an outer wall having (i) a first wall half which faces away from an exhaust gas inlet port of the housing, and (ii) a second, opposite wall half which faces toward the exhaust gas inlet port of the housing,

wherein (i) the first wall half has a first number of gas inlet openings which collectively define a first void area, (ii) the second wall half has a second number of gas inlet openings which collectively define a second void area, and (iii) the second void area is less than the first void area,

wherein the exhaust gas inlet port directs exhaust gas upon the second wall half of the combustion chamber facing toward the exhaust gas inlet port, and

wherein the first wall half of the combustion chamber facing away from the exhaust gas inlet port receives the exhaust gas after the exhaust gas flows around the second wall half.

6. The fuel-fired burner of claim 5 , wherein the second wall half is substantially devoid of gas inlet openings.

7. The fuel-fired burner of claim 5 , further comprising an electrode having an end which extends into the combustion chamber.

8. The fuel-fired burner of claim 5 , further comprising a fuel nozzle configured to introduce fuel into the combustion chamber.

9. A fuel-fired burner of an emission abatement assembly, the fuel-fired burner comprising:

a housing having an exhaust gas inlet port,

a fuel inlet nozzle to fuel a flame of the fuel-fired burner,

a combustion chamber positioned in the housing, and

means for enhancing stability of the flame by separating a flow of exhaust gas entering the housing through the exhaust gas inlet port into (i) a combustion flow which is advanced through the combustion chamber of the fuel-fired burner, and (ii) a bypass flow which is bypassed around the combustion chamber of the fuel-fired burner, wherein the combustion flow is about 50%-70% of the flow of exhaust gas and has a lower velocity than the flame of the fuel-fired burner.

10. The fuel-fired burner of claim 9 , wherein the means for separating the flow of exhaust gas comprises a diverter plate.

11. The fuel-fired burner of claim 10 , wherein the diverter plate is positioned between the gas inlet port and the combustion chamber.

12. The fuel-fired burner of claim 9 , wherein:

the combustion chamber comprises an outer wall, and

the means for separating the flow of exhaust gas comprises a portion of the outer wall.

13. The fuel-fired burner of claim 9 , wherein:

the combustion chamber comprises an outer wall, and

the means for separating the flow of exhaust gas comprises a portion of the outer wall which faces the gas inlet port.

14. The fuel-fired burner of claim 9 , wherein:

the combustion chamber comprises an outer wall, and

the means for separating the flow of exhaust gas comprises a portion of the outer wall which is substantially devoid of openings.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Feb 19, 2010
From: CIT GROUP/BUSINESS CREDIT, INC.
To: EMCON TECHNOLOGIES LLC (FORMERLY KNOWN AS ET US HOLDINGS LLC)
Reel/Frame 023957/0741 →
SECURITY AGREEMENT Recorded May 31, 2007
From: ET US HOLDINGS LLC
To: THE CIT GROUP/BUSINESS CREDIT, INC.
Reel/Frame 019353/0736 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2007
From: ARVIN TECHNOLOGIES, INC.
To: ET US HOLDINGS LLC
Reel/Frame 019378/0744 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2004
From: CRAWLEY, WILBUR H.; JOHNSON, RANDALL J.; KONG, YOUGEN; ABEL, JOHN B.; FARR, SHOJA; BIRKBY, NICHOLAS; PEARSON, DAVID
To: ARVIN TECHNOLOGIES, INC.
Reel/Frame 015467/0022 →