IP Library Granted Patent US 8,511,094
Granted Patent B2
US 8,511,094 · App. 11/454,698 · Granted Aug 20, 2013

Combustion apparatus using pilot fuel selected for reduced emissions

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Quick Facts
Patent No.
US 8,511,094
App. No.
11/454,698
Granted
Aug 20, 2013
Kind
B2
Abstract

A combustion apparatus ( 10 ) incorporating a dry low NOx (DLN) combustor ( 20 ) that uses two different fuels ( 30, 40 ) simultaneously. One fuel ( 30 ) is premixed with air ( 22 ) for a primary combustion zone ( 25 ), and a second fuel ( 40 ) supplies a diffusion pilot flame ( 29 ). Each fuel may be selected for its specialized role, maximizing overall combustion efficiency while lowering emissions. A primary fuel ( 30 ) such as natural gas (NG) may be chosen for its economy and combustion characteristics in a lean premix. A pilot fuel ( 40 ) may be chosen for having a low diffusion flame temperature and a clean burn. An oxygenated pilot fuel such as dimethyl ether (DME) has a lower flame temperature than natural gas, thereby reducing NOx from the pilot flame. The pilot fuel ( 40 ) may be produced from the primary fuel ( 30 ) by a reformer ( 50 ) associated with the combustion apparatus.

Claims (33)

1. A method of combusting fuel, the method comprising:

premixing a primary fuel with air in a premixing stage to produce an air/fuel premix;

burning the air/fuel premix in a primary combustion zone of a combustor;

diffusing a second fuel into a pilot combustion zone of the combustor, wherein the second fuel is a fuel different from the primary fuel and is selected to produce a lower emission in a diffusion burn than would be achieved in a diffusion burn of the primary fuel in the pilot combustion zone; and

burning the diffused second fuel in a diffusion flame in the pilot combustion zone simultaneously with the burning of the air/fuel premix in the primary combustion zone.

2. The method of claim 1 , wherein the second fuel is selected to have a lower diffusion burning temperature than the primary fuel.

3. The method of claim 1 , wherein the first fuel is non-oxygenated and the second fuel is a fuel oxygenate.

4. The method of claim 3 , wherein the second fuel is produced by reforming a portion of the first fuel.

5. The method of claim 1 , wherein the second fuel is a fuel oxygenate.

6. The method of claim 1 , wherein the second fuel is dimethyl ether.

7. The method of claim 1 , wherein the first fuel comprises natural gas and the second fuel comprises dimethyl ether.

8. The method of claim 1 , wherein the first fuel comprises natural gas and the second fuel comprises a fuel oxygenate, and further comprising controlling the method to limit production of NOx to less than 5 ppm without the need for post-combustion catalytic treatment.

9. The method of claim 8 , wherein the second fuel is selected to comprise dimethyl ether.

10. A combustion apparatus designed to practice the method of claim 1 .

11. A combustion apparatus comprising:

a primary combustion zone and an associated pilot combustion zone;

a pre-mixing stage directing a pre-mix of air and a non-oxygenated primary fuel into the primary combustion zone; and

a pilot stage directing a diffusion of a pilot fuel oxygenate into the pilot combustion zone;

wherein the combustion apparatus burns the primary fuel and the pilot fuel oxygenate simultaneously to produce a combustion product exhibiting a reduced emission when compared to a combustion product that would be produced by the burning of the pre-mix of primary fuel with a diffusion pilot stage of the primary fuel.

12. The combustion apparatus of claim 11 , wherein the pilot fuel oxygenate is selected to have a lower diffusion flame temperature than that of the primary fuel to produce a reduced NOx emission.

13. The combustion apparatus of claim 11 , wherein the primary fuel comprises natural gas and the pilot fuel oxygenate comprises dimethyl ether.

14. The combustion apparatus of claim 11 , further comprising a reformer converting a portion of the primary fuel into the pilot fuel oxygenate.

15. A gas turbine engine comprising the combustion apparatus of claim 11 .

16. A combustion apparatus comprising:

a primary combustion zone;

a primary fuel element in fluid communication with an air/fuel premixer for delivering a primary fuel premix into the primary combustion zone;

a pilot combustion zone associated with the primary combustion zone;

a pilot fuel element in fluid communication with a diffusion nozzle for delivering a pilot fuel diffusion into the pilot combustion zone; and

a reformer connected between the primary fuel element and the pilot fuel element for converting a portion of primary fuel into pilot fuel.

17. The combustion apparatus of claim 16 , further comprising the reformer converting a portion of a natural gas primary fuel into a dimethyl ether pilot fuel.

18. The combustion apparatus of claim 16 , wherein the pilot fuel element delivers an oxygenated pilot fuel diffusion.

19. The combustion apparatus of claim 16 , wherein the reformer converts the portion of primary fuel into a pilot fuel oxygenate having a lower diffusion flame temperature than that of the primary fuel.

20. The combustion apparatus of claim 19 , wherein the reformer converts the portion of primary fuel into dimethyl ether.

Assignments (2)
CHANGE OF NAME Recorded Mar 31, 2009
From: SIEMENS POWER GENERATION, INC.
To: SIEMENS ENERGY, INC.
Reel/Frame 022488/0630 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2006
From: RISING, BRUCE W.
To: SIEMENS POWER GENERATION, INC.
Reel/Frame 018070/0004 →