IP Library Granted Patent US 9,028,607
Granted Patent B2
US 9,028,607 · App. 12/138,019 · Granted May 12, 2015

Carbon dioxide sequestration in foamed controlled low strength materials

Inventor: Bruce W. Ramme (Okauchee, WI)
Assignee: Wisconsin Electric Power Company
B01D53/62B01D2251/404B01D2257/504B01D2259/80C04B18/027C04B28/021C04B28/08C04B2111/542Y02C10/04
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Quick Facts
Patent No.
US 9,028,607
App. No.
12/138,019
Granted
May 12, 2015
Kind
B2
Abstract

A process for sequestering carbon dioxide from the exhaust gas emitted from a combustion chamber is disclosed. In the process, a foam including a foaming agent and the exhaust gas is formed, and the foam is added to a mixture including a cementitious material (e.g., cement-kiln dust, lime kiln dust, or slag cement) and water to form a foamed mixture. Thereafter, the foamed mixture is allowed to set, preferably to a controlled low-strength material having a compressive strength of 1200 psi or less. The carbon dioxide in the exhaust gas reacts with hydration products in the controlled low-strength material and in turn sequesters the carbon dioxide.

Claims (65)

1. A process for preparing a controlled low-strength material having a compressive strength of 1200 psi or less, the process comprising:

preparing a mixture including water and a cementitious material, wherein the cementitious material is selected from the group consisting of cement-kiln dust, lime-kiln dust, and slag cement;

recovering exhaust gas from a combustion chamber, wherein the exhaust gas includes carbon dioxide;

forming a foam including a foaming agent and the exhaust gas;

mixing the foam into the mixture to form a foamed mixture; and

thereafter allowing the foamed mixture to set to form the controlled low-strength material,

wherein during the step of allowing the foamed mixture to set, the carbon dioxide in the exhaust gas reacts with hydration products in the controlled low-strength material to sequester carbon dioxide.

2. The process of claim 1 wherein:

coal is combusted in the combustion chamber.

3. The process of claim 1 wherein:

the controlled low-strength material has a compressive strength of 300 psi or less.

4. The process of claim 1 further comprising:

shaping the foamed mixture into aggregates before allowing the foamed mixture to set.

5. The process of claim 1 further comprising:

subjecting the foamed mixture to a shaping process selected from pelletizing, extruding and briquetting before allowing the foamed mixture to set.

6. The process of claim 1 further comprising:

crushing the controlled low-strength material after the controlled low-strength material has set.

7. The process of claim 6 further comprising:

separating the crushed controlled low-strength material into different particle size fractions.

8. The process of claim 1 wherein:

the step of allowing the foamed mixture to set includes passing a heated fluid over the foamed mixture.

9. The process of claim 1 wherein:

the cementitious material is cement-kiln dust.

10. The process of claim 9 wherein:

the foamed mixture includes 1100-1400 pounds of cement-kiln dust per cubic yard of the foamed mixture and 800 to 1100 pounds of water per cubic yard of the foamed mixture.

11. The process of claim 10 wherein:

the foamed mixture includes 5 to 60 cubic feet of foam per cubic yard of the foamed mixture.

12. The process of claim 1 wherein:

the cementitious material is lime-kiln dust.

13. The process of claim 12 wherein:

the foamed mixture includes 1400-1800 pounds of lime-kiln dust per cubic yard of the foamed mixture and 500 to 800 pounds of water per cubic yard of the foamed mixture.

14. The process of claim 13 wherein:

the foamed mixture includes 7 to 40 cubic feet of foam per cubic yard of the foamed mixture.

15. The process of claim 1 wherein:

the cementitious material is slag cement.

16. The process of claim 15 wherein:

the foamed mixture includes 1400-1800 pounds of slag cement per cubic yard of the foamed mixture and 500 to 800 pounds of water per cubic yard of the foamed mixture.

17. The process of claim 16 wherein:

the foamed mixture includes 10 to 40 cubic feet of foam per cubic yard of the foamed mixture.

18. A process for sequestering carbon dioxide from exhaust gas emitted from a combustion chamber, the process comprising:

forming a foam including a foaming agent and the exhaust gas;

mixing the foam with a mixture including a cementitious material, wherein the cementitious material is selected from the group consisting of cement-kiln dust, lime-kiln dust, and slag cement, to form a foamed mixture; and

allowing the foamed mixture to set,

wherein the mixture sets to a controlled low-strength material having a compressive strength of 1200 psi or less, and

wherein during the step of allowing the foamed mixture to set, the carbon dioxide in the exhaust gas reacts with hydration products in the controlled low-strength material to sequester carbon dioxide.

19. The process of claim 18 wherein:

the mixture includes water, and

the cementitious material is cement-kiln dust.

20. The process of claim 18 wherein:

the mixture includes water, and

the cementitious material is lime-kiln dust.

21. The process of claim 18 wherein:

the mixture includes water, and

the cementitious material is slag cement.

22. A process for sequestering carbon dioxide from a gas including one weight percent or more carbon dioxide, the process comprising:

forming a foam including a foaming agent and the gas;

mixing the foam with a mixture including water and a material selected from the group consisting of cement-kiln dust, lime-kiln dust, and slag cement, to form a foamed mixture; and

allowing the foamed mixture to set to a controlled low-strength material having a compressive strength of 1200 psi or less,

wherein during the step of allowing the foamed mixture to set, the carbon dioxide in the exhaust gas reacts with hydration products in the controlled low-strength material to sequester carbon dioxide.

23. The process of claim 1 further comprising:

feeding the flue gas to a compressor to compress the flue gas to a higher pressure prior to forming the foam, the compressed exhaust gas being used to expand the foaming agent during the forming of the foam.

24. The process of claim 18 further comprising:

feeding the flue gas to a compressor to compress the flue gas to a higher pressure prior to forming the foam, the compressed exhaust gas being used to expand the foaming agent during the forming of the foam.

25. The process of claim 22 further comprising:

feeding the flue gas to a compressor to compress the flue gas to a higher pressure prior to forming the foam, the compressed exhaust gas being used to expand the foaming agent during the forming of the foam.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2008
From: RAMME, BRUCE W.
To: WISCONSIN ELECTRIC POWER COMPANY
Reel/Frame 021674/0244 →
Continuity (2)
Continuation In Part 11064756 · Feb 24, 2005
Related Publication 20080245274A1 · Oct 9, 2008