IP Library Granted Patent US 6,969,411
Granted Patent B2
US 6,969,411 · App. 10/946,891 · Granted Nov 29, 2005

Compact light weight autothermal reformer assembly

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Quick Facts
Patent No.
US 6,969,411
App. No.
10/946,891
Granted
Nov 29, 2005
Kind
B2
Abstract

A fuel gas-steam reformer assembly, preferably an autothermal reformer assembly, for use in a fuel cell power plant, includes a catalyst bed which is formed from a cylindrical monolithic open cell foam body. The foam body is preferably formed from a high temperature material such as stainless steel, nickel alloys and iron-aluminum alloys, or from a ceramic material. The foam body includes open cells or pores which are contained within the metal or ceramic lattice. The lattice is coated with a porous wash coat which serves as a high surface area substrate onto which catalysts used in the reformer are applied. The foam body has an inlet end into which a mixture of fuel, steam and air is fed to begin the reforming process. An inlet portion of the foam body may be provided with an iron oxide and/or noble metal catalyst and the remainder of the foam body may be provided with a nickel and/or noble metal catalyst. An advantage of including an autothermal reformer in a fuel processing system is the compactness of the autothermal reformer. The inclusion of the foam catalyst bed rather than the traditional catalyzed pellet bed allows the reformer to be made even more compact and light weight.

Claims (27)

1. A hydrocarbon fuel gas autothermal reformer assembly comprising:

a) a monolithic open cell foam core catalyst bed, said catalyst bed including an inlet end and an outlet end, an inlet portion of said catalyst bed being provided with a catalyst which is operable to combust a portion of the fuel gas so as to raise the temperature of said catalyst bed while minimizing carbon deposition in catalyzed cells of said foam core, said foam core catalyst bed including a high temperature-compatable metal support selected from the group consisting of stainless steel, nickel alloys and iron-aluminum alloys, and said catalyst bed further including a noble metal and calcium oxide;

b) a fuel gas inlet passage, said fuel gas inlet passage being disposed in heat exchange relationship with an outlet processed fuel gas passage from said catalyst bed whereby heat will be transferred to said fuel gas inlet passage from the processed gas stream;

c) an air inlet passage, said air inlet passage being disposed in heat exchange relationship with processed gas stream whereby heat from the processed gas stream will be transferred to said air inlet passage; and

d) a fuel gas reforming catalyst deposited in said foam core catalyst bed.

2. The autothermal reformer assembly of claim 1 wherein said foam catalyst bed comprises at least two catalyzed regions wherein each region has a different catalyst composition.

3. The autothermal reformer assembly of claim 2 wherein a first region of said foam catalyst bed contains a noble metal catalyst in combination with calcium oxide.

4. The autothermal reformer assembly of claim 3 wherein a second region of said foam catalyst bed contains a base metal catalyst in combination with calcium oxide.

5. The autothermal reformer assembly of claim 4 wherein said first region of said foam catalyst bed contains a platinum catalyst, and said second region of said foam catalyst bed contains a nickel catalyst.

6. The autothermal reformer assembly of claim 3 wherein said first region of said foam catalyst bed contains an iron oxide/calcium oxide catalyst mixture and said second region of said foam catalyst bed contains a nickel catalyst.

7. The autothermal reformer assembly of claim 3 wherein said noble metal catalyst is a catalyst selected from the group consisting of platinum, palladium and rhodium, and mixtures thereof.

8. The autothermal reformer assembly of claim 1 wherein said foam catalyst bed includes a first region which contains a noble metal catalyst and a calcium oxide catalyst, and a subsequent region which does not contain calcium oxide and does contain said noble metal catalyst.

9. The autothermal reformer assembly of claim 8 wherein said noble metal catalyst is selected from the group consisting of platinum, palladium and rhodium.

10. The autothermal reformer assembly of claim 1 wherein said foam catalyst bed includes at least one ceramic foam support body.

11. The autothermal reformer assembly of claim 1 wherein said catalyst bed is cylindrical in shape.

12. The autothermal reformer assembly of claim 1 wherein said fuel gas inlet passage contains a fuel gas/steam mixture.

13. The autothermal reformer assembly of claim 1 wherein said air inlet passage contains an air/steam mixture.

14. A hydrocarbon fuel gas autothermal reformer assembly comprising:

a) a cylindrical monolithic open cell foam catalyst bed, said foam catalyst bed including a metal support selected from the group consisting of stainless steel, nickel alloys and iron-aluminum alloys, said catalyst bed including an inlet end and an outlet end;

b) a fuel gas/steam mixture inlet passage; and

c) a fuel gas reforming catalyst deposited in said cylindrical foam catalyst bed.

15. A hydrocarbon fuel gas autothermal reformer assembly comprising:

a) a monolithic open cell foam catalyst bed, said foam catalyst bed including a metal support selected from the group consisting of stainless steel, nickel alloys and iron-aluminum alloys, said catalyst bed including an inlet end and an outlet end, an inlet portion of said catalyst bed being provided with a noble metal-promoted catalyst which is operable to combust a portion of the fuel gas at a temperature of about 500° F. thereby enabling start up of the reformer assembly while inhibiting carbon deposition in catalyzed cells of said foam;

b) a fuel gas inlet passage, said fuel gas inlet passage being disposed in heat exchange relationship with a processed fuel gas stream disposed in an outlet passage from said catalyst bed whereby heat will be transferred to said fuel gas inlet passage from the processed gas stream;

c) an air inlet passage, said air inlet passage being disposed in heat exchange relationship with processed fuel gas stream whereby heat from the processed fuel gas stream will be transferred to said air inlet passage; and

d) a fuel gas reforming catalyst deposited in said foam catalyst bed.

16. A hydrocarbon fuel gas autothermal reformer assembly comprising a monolithic open cell foam catalyst bed, said foam catalyst bed including a metal support selected from the group consisting of stainless steel, nickel alloys and iron-aluminum alloys, said catalyst bed including an inlet end and an outlet end, an inlet portion of said catalyst bed being provided with a noble metal-promoted catalyst which is operable to combust a portion of the fuel gas at a temperature of about 500° F. thereby enabling start up of the reformer assembly while inhibiting carbon deposition in catalyzed cells of said foam catalyst bed.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL: 059364 FRAME: 0046. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 13, 2022
From: DOOSAN FUEL CELL AMERICA, INC.
To: HYAXIOM, INC.
Reel/Frame 060062/0957 →
CHANGE OF NAME Recorded Mar 14, 2022
From: DOOSAN FUEL CELL AMERICA, INC.
To: HYAXIOM, INC.
Reel/Frame 059364/0046 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2014
From: CLEAREDGE POWER, INC., CLEAREDGE POWER, LLC, CLEAREDGE POWER INTERNATIONAL SERVICE, LLC
To: DOOSAN FUEL CELL AMERICA, INC.
Reel/Frame 033472/0094 →