IP Library Granted Patent US 8,716,169
Granted Patent B2
US 8,716,169 · App. 12/691,527 · Granted May 6, 2014

System and method for protection of SCR catalyst and control of multiple emissions

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,716,169
App. No.
12/691,527
Granted
May 6, 2014
Kind
B2
Abstract

The present invention relates generally to the field of emission control equipment for boilers, heaters, kilns, or other flue gas-, or combustion gas-, generating devices (e.g., those located at power plants, processing plants, etc.) and, in particular to a new and useful method and apparatus for preventing the poisoning and/or contamination of an SCR catalyst. In another embodiment, the method and apparatus of the present invention is designed to protect an SCR catalyst, while simultaneously providing emission control.

Claims (85)

1. A method for increasing the active life of an SCR catalyst, the method comprising the steps of:

(a) providing at least one coal-based fuel to a furnace, or boiler;

(b) subjecting the at least one coal-based fuel to a staged combustion process, wherein the staged combustion process produces at least one gaseous phosphorus compound and/or at least one gaseous phosphorus-containing compound;

(c) providing at least one iron-bearing compound to a combustion zone of a furnace, or boiler, prior to entry of the flue gas into an SCR, wherein the SCR is located upstream of at least one air heater; and

(d) permitting the at least one iron-bearing compound to react with the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound present in the combustion zone or flue gas prior to the entry of the flue gas into the SCR to form an iron phosphorus-containing compound.

2. The method of claim 1 , wherein the iron-bearing compound is selected from one or more iron halides, metallic iron, one or more iron oxides, iron carbonate, or mixtures of two or more thereof.

3. The method of claim 1 , wherein the iron-bearing compound is selected from iron (III) oxide, iron (II) carbonate, iron (II) oxide, or mixtures of two or more thereof.

4. The method of claim 1 , wherein the iron-bearing compound is selected from iron (III) oxide, iron (II) carbonate, or a mixture thereof.

5. The method of claim 1 , wherein the at least one iron-bearing compound is provided to the combustion zone via addition to pulverized coal.

6. The method of claim 1 , wherein the at least one iron-bearing compound is provided to the combustion zone via a dedicated supply line.

7. The method of claim 1 , wherein the iron-bearing compound is a water soluble iron-bearing compound.

8. The method of claim 1 , wherein the iron-bearing compound is a water soluble iron-bearing compound that is supplied in the form of an aqueous solution.

9. The method of claim 1 , wherein the iron-bearing compound is a water insoluble iron-bearing compound that is supplied in the form of an aqueous suspension or emulsion.

10. The method of claim 1 , wherein the staged combustion process utilizes over fire air and the staged combustion process results in an increased amount of the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound and results in the deactivation of the SCR catalyst.

11. A method for increasing the active life of an SCR catalyst, the method comprising the steps of:

(i) providing at least one coal-based fuel to a furnace, or boiler;

(ii) subjecting the at least one coal-based fuel to a staged combustion process, wherein the staged combustion process produces at least one gaseous phosphorus compound and/or at least one gaseous phosphorus-containing compound;

(iii) providing at least one iron-bearing compound to a combustion zone of a furnace, or boiler; and

(iv) permitting the at least one iron-bearing compound to react with the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound present in the combustion zone prior to the entry of the flue gas into an SCR to form an iron phosphorus-containing compound, wherein the SCR is located upstream of at least one air heater,

wherein the iron-bearing compound is selected from one or more iron (II) halides, iron (III) halides, iron (III) iodate, iron (III) oxide, iron (II) carbonate, or mixtures of two or more thereof.

12. The method of claim 11 , wherein the at least one iron-bearing compound is provided to the combustion zone via addition to pulverized coal.

13. The method of claim 11 , wherein the at least one iron-bearing compound is provided to the combustion zone via a dedicated supply line either in aqueous or in powdered form.

14. The method of claim 11 , wherein the iron-bearing compound is a water soluble iron-bearing compound.

15. The method of claim 11 , wherein the iron-bearing compound is a water soluble iron-bearing compound that is supplied in the form of an aqueous solution.

16. The method of claim 11 , wherein the iron-bearing compound is a water insoluble iron-bearing compound that is supplied in the form of an aqueous suspension or emulsion.

17. The method of claim 11 , wherein the staged combustion process utilizes over fire air and the staged combustion process results in an increased amount of the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound and results in the deactivation of the SCR catalyst.

18. A method for sequestering one or more gaseous phosphorus compounds, or gaseous phosphorus-containing compounds, in the form of one or more less reactive iron-phosphorus-containing compounds, the method comprising the steps of:

(A) providing at least one coal-based fuel to a furnace, or boiler;

(B) subjecting the at least one coal-based fuel to a staged combustion process, wherein the staged combustion process produces at least one gaseous phosphorus compound and/or at least one gaseous phosphorus-containing compound;

(C) providing at least one iron-bearing compound to a combustion zone of a furnace, or boiler; and

(D) permitting the at least one iron-bearing compound to react with the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound present in the combustion zone or flue gas to form one or more less reactive iron-phosphorus-containing compounds.

19. The method of claim 18 , wherein the iron-bearing compound is selected from one or more iron halides, iron iodate, metallic iron, one or more iron oxides, iron carbonate, or mixtures of two or more thereof.

20. The method of claim 18 , wherein the iron-bearing compound is selected from iron (III) oxide, iron (II) carbonate, iron (II) oxide, or mixtures of two or more thereof.

21. The method of claim 18 , wherein the iron-bearing compound is selected from iron (III) oxide, iron (II) carbonate, iron (II) bromide, iron (III) bromide, or a mixture of two or more thereof.

22. The method of claim 18 , wherein the at least one iron-bearing compound is provided to the combustion zone via addition to pulverized coal.

23. The method of claim 18 , wherein the at least one iron-bearing compound is provided to the combustion zone via addition to raw coal which is thereafter pulverized.

24. The method of claim 18 , wherein the at least one iron-bearing compound is provided to the combustion zone via a dedicated supply line.

25. The method of claim 18 , wherein the one or more less reactive iron-phosphorus-containing compounds further contains oxygen.

26. The method of claim 18 , wherein the iron-bearing compound is a water soluble iron-bearing compound.

27. The method of claim 18 , wherein the iron-bearing compound is a water soluble iron-bearing compound that is supplied in the form of an aqueous solution.

28. The method of claim 18 , wherein the iron-bearing compound is a water insoluble iron-bearing compound that is supplied in the form of an aqueous suspension or emulsion.

29. The method of claim 18 , wherein the staged combustion process utilizes over fire air and the staged combustion process results in an increased amount of the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound and results in an increased acid gas concentration in the flue gas.

30. A method for increasing the active life of an SCR catalyst while concurrently controlling mercury in a gas, the method comprising the steps of:

providing at least one coal-based fuel to a furnace, or boiler;

subjecting the at least one coal-based fuel to a staged combustion process, wherein the staged combustion process produces at least one gaseous phosphorus compound and/or at least one gaseous phosphorus-containing compound;

providing at least one iron-bearing halide compound to a combustion zone of a furnace, or boiler, prior to entry of the flue gas into an SCR;

permitting the iron portion of the at least one iron-bearing halide compound to react with the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound present in the combustion zone or flue gas prior to the entry of the flue gas into the SCR to form an iron phosphorus-containing compound, wherein the SCR is located upstream of at least one air heater; and

permitting the halide portion of the at least one iron-bearing halide compound to react with any gaseous mercury compounds, or mercury-containing compounds, present in the combustion zone or flue gas.

31. The method of claim 30 , wherein the iron-bearing halide compound is selected from iron (II) bromide, iron (III) bromide), iron (II) chloride, iron (III) chloride, iron (II) iodide, iron (III) iodate, or mixtures of two or more thereof.

32. The method of claim 30 , wherein the iron-bearing halide compound is iron (II) bromide.

33. The method of claim 30 , further comprising supplying one or more non-halogen-containing iron-bearing compounds in combination with the at least one iron-bearing halide, where the one or more non-halogen-containing iron-bearing compounds are selected from iron (III) oxide, iron (II) carbonate, iron (II) oxide, or mixtures of two or more thereof.

34. The method of claim 30 , further comprising supplying iron (II) carbonate in combination with the at least one iron-bearing halide.

35. The method of claim 30 , further comprising supplying iron (II) carbonate in combination with one or more of iron (II) bromide or iron (III) bromide.

36. The method of claim 30 , wherein the iron-bearing compound is a water soluble iron-bearing compound.

37. The method of claim 30 , wherein the iron-bearing compound is a water soluble iron-bearing compound that is supplied in the form of an aqueous solution.

38. The method of claim 30 , wherein the iron-bearing compound is a water insoluble iron-bearing compound that is supplied in the form of an aqueous suspension or emulsion.

39. The method of claim 30 , wherein the at least one iron-bearing halide compound is provided to the combustion zone via addition to raw coal which is thereafter pulverized.

40. The method of claim 30 , wherein the staged combustion process utilizes over fire air and the staged combustion process results in an increased amount of the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound and results in the deactivation of the SCR catalyst.

41. A method for sequestering one or more gaseous phosphorus compounds, or gaseous phosphorus-containing compounds, in the form of one or more less reactive iron-phosphorus-containing compounds while concurrently sequestering mercury, the method comprising the steps of:

providing at least one coal-based fuel to a furnace, or boiler;

subjecting the at least one coal-based fuel to a staged combustion process, wherein the staged combustion process produces at least one gaseous phosphorus compound and/or at least one gaseous phosphorus-containing compound;

providing at least one iron-bearing halide compound to a combustion zone of a furnace, or boiler; and

permitting the iron portion of the at least one iron-bearing compound to react with the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound present in the combustion zone or flue gas to form one or more less reactive iron-phosphorus-containing compounds; and

permitting the halide portion of the at least one iron-bearing halide compound to react with any gaseous mercury compounds, or mercury-containing compounds, present in the combustion zone or flue gas.

42. The method of claim 41 , wherein the iron-bearing halide compound is selected from iron (II) bromide, iron (III) bromide, iron (II) chloride, iron (III) chloride, iron (II) iodide, iron (III) iodate, or mixtures of two or more thereof.

43. The method of claim 41 , wherein the iron-bearing halide compound is one or more of iron (II) bromide or iron (III) bromide.

44. The method of claim 41 , further comprising supplying one or more non-halogen-containing iron-bearing compounds in combination with the at least one iron-bearing halide, where the one or more non-halogen-containing iron-bearing compounds are selected from iron (III) oxide, iron (II) carbonate, iron (II) oxide, or mixtures of two or more thereof.

45. The method of claim 41 , further comprising supplying iron (II) carbonate in combination with the at least one iron-bearing halide.

46. The method of claim 41 , further comprising supplying iron (II) carbonate in combination with one or more of iron (II) bromide or iron (III) bromide.

47. The method of claim 41 , wherein the iron-bearing compound is a water soluble iron-bearing compound.

48. The method of claim 41 , wherein the iron-bearing compound is a water soluble iron-bearing compound that is supplied in the form of an aqueous solution.

49. The method of claim 41 , wherein the iron-bearing compound is a water insoluble iron-bearing compound that is supplied in the form of an aqueous suspension or emulsion.

50. The method of claim 41 , wherein the at least one iron-bearing halide compound is provided to the combustion zone via addition to raw coal which is thereafter pulverized.

51. The method of claim 41 , wherein the staged combustion process utilizes over fire air and the staged combustion process results in an increased amount of the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound and results in an increased acid gas concentration in the flue gas.

52. A method for increasing the active life of an SCR catalyst, the method comprising the steps of:

providing at least one coal-based fuel to a furnace, or boiler;

subjecting the at least one coal-based fuel to a staged combustion process, wherein the staged combustion process produces at least one gaseous phosphorus compound and/or at least one gaseous phosphorus-containing compound;

providing at least one iron-bearing compound to a combustion zone of a furnace, or boiler, prior to entry of the flue gas into an SCR via the addition of the at least one iron-bearing compound to pulverized coal, wherein the SCR is located upstream of at least one air heater; and

permitting the at least one iron-bearing compound to react with the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound present in the combustion zone or flue gas prior to the entry of the flue gas into the SCR to form an iron phosphorus-containing compound,

wherein the at least one iron-bearing compound is selected from iron (III) oxide, iron (II) carbonate, iron (II) oxide, or mixtures of two or more thereof.

53. The method of claim 52 , wherein the iron-bearing compound is a water soluble iron-bearing compound.

54. The method of claim 52 , wherein the iron-bearing compound is a water soluble iron-bearing compound that is supplied in the form of an aqueous solution.

55. The method of claim 52 , wherein the iron-bearing compound is a water insoluble iron-bearing compound that is supplied in the form of an aqueous suspension or emulsion.

56. The method of claim 52 , wherein the at least one iron-bearing compound is provided to the combustion zone via addition to raw coal which is thereafter pulverized.

57. The method of claim 52 , wherein the staged combustion process utilizes over fire air and the staged combustion process results in an increased amount of the at least one gaseous phosphorus compound and/or the at least one gaseous phosphorus-containing compound and results in the deactivation of the SCR catalyst.

Assignments (16)
SECURITY INTEREST Recorded Jul 18, 2025
From: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX CANADA CORP.; BABCOCK & WILCOX FPS INC.
To: B. RILEY FINANCIAL, INC.
Reel/Frame 072053/0943 →
SECURITY INTEREST Recorded May 23, 2025
From: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX CANADA CORP.; BABCOCK & WILCOX FPS INC.
To: GLAS TRUST COMPANY LLC
Reel/Frame 071371/0835 →
SECURITY INTEREST Recorded Mar 3, 2025
From: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX CANADA CORP.; BABCOCK & WILCOX FPS INC.
To: PENSION BENEFIT GUARANTY CORPORATION
Reel/Frame 070380/0647 →
RELEASE OF SECURITY INTEREST Recorded Sep 13, 2024
From: MSD PCOF PARTNERS XLV, LLC
To: THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; AMERICON LLC
Reel/Frame 069017/0362 →
SECURITY INTEREST Recorded Jan 19, 2024
From: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX CANADA CORP.; BABCOCK & WILCOX FPS INC.
To: AXOS BANK, AS ADMINISTRATIVE AGENT
Reel/Frame 066354/0765 →
RELEASE OF SECURITY INTEREST Recorded Dec 19, 2023
From: PENSION BENEFIT GUARANTY CORPORATION
To: THE BABCOCK & WILCOX COMPANY
Reel/Frame 066075/0348 →
SECURITY INTEREST Recorded Jul 22, 2021
From: THE BABCOCK & WILCOX COMPANY (F/K/A BABCOCK & WILCOX POWER GENERATION GROUP, INC.); BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX TECHNOLOGY, LLC; DIAMOND POWER INTERNATIONAL, LLC (F/K/A DIAMOND POWER INTERNATIONAL, INC.)
To: MSD PCOF PARTNERS XLV, LLC, AS AGENT
Reel/Frame 056962/0486 →
RELEASE OF SECURITY INTEREST Recorded Jul 1, 2021
From: BANK OF AMERICA, N.A.
To: DIAMOND POWER INTERNATIONAL, LLC (F/K/A DIAMOND POWER INTERNATIONAL, INC.); MEGTEC TURBOSONIC TECHNOLOGIES, INC.; THE BABCOCK & WILCOX COMPANY (F/K/A BABCOCK & WILCOX POWER GENERATION GROUP, INC.); BABCOCK & WILCOX SPIG, INC.; BABCOCK & WILCOX TECHNOLOGY, LLC (F/K/A MCDERMOTT TECHNOLOGY, INC.); SOFCO-EFS HOLDINGS LLC; BABCOCK & WILCOX MEGTEC, LLC
Reel/Frame 057337/0823 →
SECURITY INTEREST Recorded Feb 26, 2021
From: THE BABCOCK & WILCOX COMPANY
To: PENSION BENEFIT GUARANTY CORPORATION
Reel/Frame 055426/0833 →
RELEASE OF SECURITY INTEREST Recorded May 17, 2018
From: LIGHTSHIP CAPITAL LLC
To: BABCOCK & WILCOX ENTERPRISES, INC.; THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX MEGTEC, LLC; MEGTEC TURBOSONIC TECHNOLOGIES, INC.; BABCOCK & WILCOX UNIVERSAL, INC.; BABCOCK & WILCOX TECHNOLOGY, LLC
Reel/Frame 046182/0829 →
SECURITY INTEREST Recorded Aug 10, 2017
From: THE BABCOCK & WILCOX COMPANY; DIAMOND POWER INTERNATIONAL, LLC; BABCOCK & WILCOX MEGTEC, LLC; MEGTEC TURBOSONIC TECHNOLOGIES, INC.; BABCOCK & WILCOX UNIVERSAL, INC.; BABCOCK & WILCOX TECHNOLOGY, LLC
To: LIGHTSHIP CAPITAL LLC
Reel/Frame 043515/0001 →
CHANGE OF NAME Recorded Sep 24, 2015
From: BABCOCK & WILCOX POWER GENERATION GROUP, INC.
To: THE BABCOCK & WILCOX COMPANY
Reel/Frame 036675/0434 →
SECURITY INTEREST Recorded Jul 28, 2015
From: BABCOCK & WILCOX POWER GENERATION GROUP, INC. (TO BE RENAMED THE BABCOCK AND WILCOX COMPANY)
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 036201/0598 →
SECURITY INTEREST Recorded Jul 22, 2014
From: BABCOCK & WILCOX POWER GENERATION GROUP, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 033380/0744 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 30, 2010
From: BABCOCK & WILCOX POWER GENERATION GROUP, INC. (F.K.A. THE BABCOCK & WILCOX COMPANY)
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 025066/0080 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2010
From: GADGIL, MANDAR R.; TONN, DONALD P.; GHORISHI, S. BEHROOZ
To: BABCOCK & WILCOX POWER GENERATION GROUP, INC.
Reel/Frame 023919/0458 →