IP Library Granted Patent US 7,597,871
Granted Patent B2
US 7,597,871 · App. 11/036,284 · Granted Oct 6, 2009

Steam modified Claus process

Assignee: Goar, Allison & Associates, Inc.
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Quick Facts
Patent No.
US 7,597,871
App. No.
11/036,284
Granted
Oct 6, 2009
Kind
B2
Abstract

Disclosed is a method for treating a gas stream rich in hydrogen sulfide by providing one or more feed gas streams rich in hydrogen sulfide into a Claus reaction furnace, providing air into the Claus reaction furnace, providing supplemental oxygen into the Claus reaction furnace, and providing steam to the Claus reaction furnace, where the steam is in addition to any steam that may be present in gases that are recycled to the Claus reaction furnace. The components are then reacted at a temperature above about 2400° F. and at a pressure sufficient to cause hydrogen sulfide to be converted into sulfur.

Claims (41)

1. A method for treating a gas stream rich in hydrogen sulfide comprising:

providing one or more acid gas feed streams rich in hydrogen sulfide into a Claus reaction furnace;

providing air into the Claus reaction furnace;

providing supplemental oxygen into the Claus reaction furnace;

providing steam to the Claus reaction furnace; and

reacting at a temperature above about 2400° F. and at a pressure sufficient to cause hydrogen sulfide to be converted into sulfur, where no recycled steam is provided into the Claus reaction furnace, wherein the Claus reaction furnace includes a burner and a reaction chamber and the steam is introduced directly into the reaction chamber.

2. A method for treating a gas stream rich in hydrogen sulfide comprising:

providing one or more acid gas feeds streams rich in hydrogen sulfide into a Claus reaction furnace;

providing air into the Claus reaction furnace;

providing supplemental oxygen into the Claus reaction furnace, the total concentration of oxygen contained in the sum of the oxygen stream and the air stream entering the in the Claus reaction furnace is from about 95 mol % to about 100 mol %;

providing steam to the Claus reaction furnace, so that the amount of steam is from about 5 moles of steam per 100 moles of acid gas to about 100 moles of steam per 100 moles of acid gas; and

reacting at a temperature above about 2600° F. and at a pressure sufficient to cause hydrogen sulfide to be converted into sulfur, wherein the Claus reaction furnace includes a burner and a reaction chamber and the steam is introduced directly into the reaction chamber and wherein no recycled steam is provided into the Claus reaction furnace.

3. A method for treating a gas stream rich in hydrogen sulfide comprising:

providing one or more acid gas feed streams rich in hydrogen sulfide into a Claus reaction furnace;

providing air into the Claus reaction furnace;

providing supplemental oxygen into the Claus reaction furnace;

providing recycled steam into the Claus reaction furnace;

providing nonrecycled steam into the Claus reaction furnace; and

reacting at a temperature above about 2400° F. and at a pressure sufficient to cause hydrogen sulfide to be converted into sulfur.

4. The method in accordance with claim 3 wherein the temperature is above about 2600° F.

5. The method in accordance with claim 3 wherein the concentration of hydrogen sulfide in the gas stream is from about 50 mol % to about 95mol %.

6. The method in accordance with claim 3 wherein the concentration of oxygen contained in the sum of the oxygen stream and the air stream is from about 25 mol % to about 100 mol %.

7. The method in accordance with claim 3 wherein the concentration of oxygen contained in the sum of the oxygen stream and the air stream is from about 35 mol % to about 95 mol %.

8. The method in accordance with claim 3 wherein the Claus reaction furnace includes a burner and a reaction chamber and wherein the nonrecycled steam is introduced directly into the burner.

9. The method in accordance with claim 3 wherein the Claus reaction furnace includes a burner and a reaction chamber and the nonrecycled steam is introduced directly into the reaction chamber.

10. The method in accordance with claim 3 wherein the Claus reaction furnace includes a burner and a reaction chamber and the nonrecycled steam is combined with one of the gas feed streams rich in hydrogen sulfide, the air, or the oxygen, before being introduced into the burner.

11. The method in accordance with claim 3 wherein the Claus reaction furnace includes a burner and a reaction chamber and the nonrecycled steam is combined with the gas feed stream rich in hydrogen sulfide, before being introduced into the reaction chamber.

12. The method in accordance with claim 3 wherein the amount of steam provided to the Claus reaction furnace is from about 5 moles of steam per 100 moles of acid gas to about 100 moles of steam per 100 moles of acid gas.

13. The method in accordance with claim 3 wherein the amount of steam provided to the Claus reaction furnace is from about 10 moles of steam per 100 moles of acid gas to about 50 moles of steam per 100 moles of acid gas.

14. A method for treating a gas stream rich in hydrogen sulfide comprising:

providing one or more acid gas feed streams rich in hydrogen sulfide into a Claus reaction furnace;

providing air into the Claus reaction furnace;

providing supplemental oxygen into the Claus reaction furnace, the total concentration of oxygen contained in the sum of the oxygen stream and the air stream entering the in the Claus reaction furnace is from about 95 mol % to about 100 mol %;

providing recycled steam to the Claus reaction furnace;

providing nonrecycled steam to the Claus reaction furnace, so that the amount of nonrecycled steam is from about 5 moles of steam per 100 moles of acid gas to about 100 moles of steam per 100 moles of acid gas; and

reacting at a temperature above about 2600° F. and at a pressure sufficient to cause hydrogen sulfide to be converted into sulfur.

15. The method in accordance with claim 14 wherein the concentration of oxygen contained in the sum of the oxygen stream and the air stream is from about 35 mol % to about 95 mol %.

16. The method in accordance with claim 14 wherein the Claus reaction furnace includes a burner and a reaction chamber and the nonrecycled steam is introduced directly into the burner.

17. The method in accordance with claim 14 wherein the Claus reaction furnace includes a burner and a reaction chamber and the nonrecycled steam is combined with one of the gas feed streams rich in hydrogen sulfide, the air, or the oxygen, before being introduced into the burner.

18. The method in accordance with claim 14 wherein the Claus reaction furnace includes a burner and a reaction chamber and the nonrecycled steam is combined with the gas feed stream rich in hydrogen sulfide, before being introduced into the reaction chamber.

19. The method in accordance with claim 14 wherein the amount of nonrecycled steam provided to the Claus reaction furnace is from about 10 moles of steam per 100 moles of acid gas to about 50 moles of steam per 100 moles of acid gas.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2018
From: GOAR, ALLISON & ASSOCIATES, LLC
To: FLUOR TECHNOLOGIES CORPORATION
Reel/Frame 045409/0947 →
ENTITY CONVERSION Recorded Dec 18, 2017
From: GOAR ALLISON & ASSOCIATES, INC.
To: GOAR ALLISON & ASSOCIATES, LLC
Reel/Frame 044904/0298 →
MERGER Recorded Jun 12, 2009
From: GAA ENGINEERED SYSTEMS, INC.
To: GOAR, ALLISON & ASSOCIATES, INC.
Reel/Frame 022819/0449 →
MERGER Recorded Jun 10, 2009
From: GAA ENGINEERED SYSTEMS, INC.
To: AIR PRODUCTS AND CHEMICALS, INC.; GOAR, ALLISON & ASSOCIATES, INC.
Reel/Frame 022806/0300 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2005
From: FERRELL, WILLIAM P.
To: GAA ENGINEERED SYSTEMS, INC.
Reel/Frame 016196/0262 →
Continuity (1)
Related Publication 20060153767A1 · Jul 13, 2006