IP Library Granted Patent US 10,596,517
Granted Patent B2
US 10,596,517 · App. 15/997,091 · Granted Mar 24, 2020

Sorbents for the oxidation and removal of mercury

Inventors: Edwin S. Olson (Grand Forks, ND); Michael J. Holmes (Thompson, ND); John H. Pavlish (East Grand Forks, MN)
Assignee: Midwest Energy Emissions Corp.
B01D53/64B01D53/10B01J20/20B01J20/22B01D2253/102B01D2257/602Y10S95/901
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Quick Facts
Patent No.
US 10,596,517
App. No.
15/997,091
Granted
Mar 24, 2020
Kind
B2
Abstract

A promoted activated carbon sorbent is described that is highly effective for the removal of mercury from flue gas streams. The sorbent comprises a new modified carbon form containing reactive forms of halogen and halides. Optional components may be added to increase reactivity and mercury capacity. These may be added directly with the sorbent, or to the flue gas to enhance sorbent performance and/or mercury capture. Mercury removal efficiencies obtained exceed conventional methods. The sorbent can be regenerated and reused. Sorbent treatment and preparation methods are also described. New methods for in-flight preparation, introduction, and control of the active sorbent into the mercury contaminated gas stream are described.

Claims (61)

1. A method for reducing mercury in a mercury-containing gas, the method comprising:

combusting coal in a combustion chamber, the coal comprising an additive comprising Br 2 , HBr, a bromide compound, or a combination thereof, to form the mercury-containing gas; and

collecting mercury in the mercury-containing gas with a sorbent added to the mercury-containing gas, the sorbent comprising activated carbon.

2. The method of claim 1 , further comprising injecting an alkaline sorbent into the mercury-containing gas stream.

3. The method of claim 2 , wherein the alkaline sorbent is selected from the group consisting of alkali elements, alkaline earth elements, alkali salts, alkaline earth salts, and combinations thereof.

4. The method of claim 1 , wherein the activated carbon is chosen from powdered activated carbon, granular activated carbon, carbon black, carbon fiber, aerogel carbon, pyrolysis char, and combinations thereof.

5. The method of claim 1 , wherein the sorbent has a composition comprising from about 1 to about 30 grams of the element bromine per 100 grams of activated carbon.

6. The method of claim 1 , comprising collecting greater than 70 wt % of the mercury in the mercury-containing gas.

7. The method of claim 1 , comprising collecting greater than 70 wt % of the mercury in the mercury-containing gas with the sorbent.

8. The method of claim 1 , further comprising:

measuring mercury content of the mercury-containing gas; and

modifying, in response to the measured mercury content,

an injection rate of injecting the sorbent comprising activated carbon into the mercury-containing gas,

an amount of the additive comprising the Br 2 , HBr, bromide compound, or a combination thereof, added to the coal, or

a combination thereof.

9. The method of claim 8 , wherein the measuring of the mercury content of the mercury-containing gas is performed substantially continuously.

10. The method of claim 1 , further comprising:

modifying, in response to a measured mercury content,

an injection rate of injecting the sorbent comprising activated carbon into the mercury-containing gas,

an amount of the Br 2 , HBr, bromide compound, or a combination thereof, added to the coal, or

a combination thereof.

11. The method of claim 1 , wherein the coal comprises a subbituminous coal.

12. The method of claim 1 , wherein the coal comprises a lignite coal.

13. The method of claim 1 , wherein the coal comprises the added Br 2 , HBr, the bromide compound, or a combination thereof, added to the coal before the coal enters the combustion chamber.

14. The method of claim 1 , wherein the combustion chamber comprises the added Br 2 , HBr, the bromide compound, or a combination thereof.

15. The method of claim 1 , wherein the coal is combusted in the combustion chamber at a coal-combustion facility, wherein the Br 2 , HBr, bromide compound, or combination thereof, is added to the coal before the coal enters the combustion chamber, wherein the addition of the Br 2 , HBr, bromide compound, or combination thereof, to the coal is performed at the coal-combustion facility.

16. The method of claim 1 , wherein the coal is combusted in the combustion chamber at a coal-combustion facility, wherein the Br 2 , HBr, bromide compound, or combination thereof, is added to the coal before the coal enters the combustion chamber, wherein the addition of the Br 2 , HBr, bromide compound, or combination thereof, to the coal is performed at a site other than the coal-combustion facility.

17. The method of claim 1 , wherein the combustion chamber is an electric utility coal combustion chamber.

18. The method of claim 1 , further comprising:

measuring mercury content of the mercury-containing gas; and

modifying, in response to the measured mercury content, an injection rate of injecting the sorbent comprising activated carbon into the mercury-containing gas.

19. The method of claim 1 , wherein the mercury-containing gas comprises about 1 g to about 30 g of the element bromine per 100 g of the sorbent.

20. The method of claim 1 , further comprising:

measuring mercury content of the mercury-containing gas; and

modifying, in response to the measured mercury content, an amount of the additive comprising the Br 2 , HBr, bromide compound, or a combination thereof, added to the coal.

21. The method of claim 1 , wherein the sorbent in the mercury-containing gas comprises about 1 g to about 30 g of the added Br 2 , HBr, the bromide compound, or a combination thereof, per 100 g of the sorbent.

22. The method of claim 1 , wherein the Br 2 , HBr, or the bromide compound is contacted with the sorbent in vapor form, gaseous form, liquid form, or in an organic solvent.

23. The method of claim 1 , wherein the sorbent injected into the mercury-containing gas is a sorbent obtained by contacting a base sorbent with a halogen or halide promoter prior to injection of the sorbent to the mercury-containing gas.

24. The method of claim 1 , wherein the sorbent injected into the mercury-containing gas is free of contact with a halogen or halide promoter prior to injection of the sorbent into the mercury-containing gas.

25. The method of claim 1 , wherein the injection of the sorbent into the mercury-containing gas occurs upstream of a particulate separator or a scrubber.

26. The method of claim 25 , wherein the particulate separator comprises an electrostatic precipitator, a baghouse, a fabric filter, or a combination thereof.

27. The method of claim 1 , wherein the coal comprises added halide sorbent enhancement additive that comprises the added Br 2 , HBr, the bromide compound, or combination thereof.

28. The method of claim 1 , wherein the sorbent enhancement additive comprises the bromide compound.

29. A method of separating mercury from a mercury-containing gas, the method comprising:

combusting coal in a combustion chamber, wherein

the coal comprises added Br 2 , HBr, bromide compound, or a combination thereof, added to the coal before the coal enters the combustion chamber, or

the combustion chamber comprises added Br 2 , HBr, bromide compound, or a combination thereof, or

a combination thereof; and

collecting mercury in the mercury-containing gas with a sorbent added to the mercury-containing gas, the sorbent comprising activated carbon.

30. A method of separating mercury from a mercury-containing gas, the method comprising:

combusting coal in a combustion chamber, to provide the mercury-containing gas, wherein the mercury-containing gas comprises a halogen or halide promoter comprising HBr, Br − , or a combination thereof, wherein

the coal comprises added Br 2 , HBr, bromide compound, or a combination thereof, added to the coal before the coal enters the combustion chamber, or

the combustion chamber comprises added Br 2 , HBr, bromide compound, or a combination thereof, or

a combination thereof;

collecting mercury in the mercury-containing gas with a sorbent added to the mercury-containing gas, the sorbent comprising activated carbon;

separating the sorbent contacted with the mercury from the mercury-containing gas;

measuring the mercury content of the mercury-containing gas; and

modifying, in response to the measured mercury content of the mercury-containing gas,

an injection rate of injecting the sorbent into the mercury-containing gas,

an amount of the Br 2 , HBr, bromide compound, or a combination thereof, added to the coal or the combustion chamber, or

a combination thereof.

Assignments (6)
CHANGE OF NAME Recorded Nov 7, 2024
From: MIDWEST ENERGY EMISSIONS CORP.
To: BIRCHTECH CORP.
Reel/Frame 069187/0413 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CORRECT ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL: 050462 FRAME: 0607. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 11, 2020
From: ENERGY AND ENVIRONMENTAL RESEARCH CENTER FOUNDATION
To: MIDWEST ENERGY EMISSIONS CORP.
Reel/Frame 052144/0750 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2019
From: OLSON, EDWIN S.
To: ENERGY AND ENVIRONMENTAL RESEARCH CENTER FOUNDATION
Reel/Frame 050461/0076 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2019
From: HOLMES, MICHAEL J.
To: ENERGY AND ENVIRONMENTAL RESEARCH CENTER FOUNDATION
Reel/Frame 050461/0741 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2019
From: PAVLISH, JOHN H.
To: ENERGY AND ENVIRONMENTAL RESEARCH CENTER FOUNDATION
Reel/Frame 050462/0111 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2019
From: ENERGY AND ENVIRONMENTAL RESEARCH CENTER FOUNDATION
To: MIDWEST ENERGY EMISSIONS CORP.
Reel/Frame 050462/0607 →
Continuity (11)
Continuation 15974343 · May 8, 2018
Continuation 15951970 · Apr 12, 2018
Continuation 14712558 · May 14, 2015
Continuation 14318270 · Jun 27, 2014
Continuation 13966768 · Aug 14, 2013
Continuation 13427665 · Mar 22, 2012
Continuation 12419219 · Apr 6, 2009
Continuation 12201595 · Aug 29, 2008
Continuation 11209163 · Aug 22, 2005
Provisional Application 60605640 · Aug 30, 2004
Related Publication 20180280870A1 · Oct 4, 2018