IP Library Granted Patent US 7,361,199
Granted Patent B2
US 7,361,199 · App. 10/753,024 · Granted Apr 22, 2008

Combined water gas shift reactor/carbon dioxide adsorber for use in a fuel cell system

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Quick Facts
Patent No.
US 7,361,199
App. No.
10/753,024
Granted
Apr 22, 2008
Kind
B2
Abstract

An apparatus removes CO from a hydrogen-rich gas stream in a hydrogen fuel cell system. CO fouls costly catalytic particles in the membrane electrode assemblies. Both a catalyst adapted to perform a water gas shift reaction, and a carbon dioxide adsorbent are disposed in a rotating pressure swing adsorber housing. The adsorption of carbon dioxide shifts equilibrium toward carbon monoxide consumption. A second adsorbent may be disposed in the housing for adsorbing carbon monoxide at low temperatures, and is adapted to desorb carbon monoxide at high temperatures. The present invention advantageously eliminates a unit operation from a space-constrained fuel cell vehicle by combining the WGS catalyst and a CO 2 adsorbent in a single reactor/housing. The apparatus further eliminates the use of a PROX reactor, by providing an apparatus which incorporates CO 2 adsorption and consequent carbon monoxide consumption in the place of the PROX reactor.

Claims (17)

1. A method for removing carbon monoxide from a hydrogen-rich gas stream produced in a reactor, the method comprising: generating the hydrogen-rich gas stream in a first reactor at a first temperature, comprising one or more catalysts for conducting at least one of a stream reformation reaction, a partial oxidation reaction, or an autothermal reformation reaction of a hydrocarbon feed; passing the hydrogen-rich gas stream from the first reactor through a second reactor at a second temperature that is lower than said first temperature, comprising a vessel which houses: a catalyst consisting essentially of a shift catalyst adapted to perform a water gas shift reaction; and an adsorbent adapted to adsorb carbon dioxide, thereby shifting equilibrium toward carbon monoxide consumption; wherein the vessel is separate from the first reactor and is a rotating pressure swing adsorber.

2. The method as defined in claim 1 wherein the shift catalyst is adapted to perform the water gas shift reaction at high temperatures.

3. The method as defined in claim 1 wherein the vessel further houses a second adsorbent adapted to adsorb carbon monoxide from the hydrogen-rich gas stream at low temperatures, and adapted to desorb carbon monoxide at high temperatures.

4. The method as defined in claim 1 wherein the hydrogen-rich gas stream is not passed through a preferential oxidizer (PROX).

5. The method of claim 1 which is conducted in a fuel cell system having a fuel cell stack, and wherein the hydrogen-rich gas stream having reduced CO content is reacted in the fuel cell stack.

6. A method for removing carbon monoxide from a hydrogen-rich gas stream produced in a reactor, the method comprising: generating the hydrogen-rich gas stream in a first reactor at a first temperature, comprising one or more catalysts for conducting at least one of a steam reformation reaction, a partial oxidation reaction, or an autothermal reformation reaction of a hydrocarbon feed; passing the hydrogen-rich gas stream from the first reactor through a second reactor at a second temperature that is lower than said first temperature, comprising a vessel which houses: a catalyst consisting essentially of a shift catalyst adapted to perform a water gas shift reaction; and an adsorbent adapted to adsorb carbon dioxide, thereby shifting equilibrium toward carbon monoxide consumption; wherein the vessel is separate from the first reactor;

pressurizing the vessel before the passing of the hydrogen-rich gas stream through the vessel;

depressurizing the vessel after the passing of the hydrogen-rich gas stream through the vessel; and

purging the vessel with a gas having a low carbon dioxide concentration.

7. A method for removing carbon monoxide from a hydrogen-rich gas stream produced in a reactor, the method comprising:

generating the hydrogen-rich gas stream in a first reactor at a first temperature, comprising one or more catalysts for conducting at least one of a steam reformation reaction, a partial oxidation reaction, or an autothermal reformation reaction of a hydrocarbon feed;

passing the hydrogen-rich gas stream from the first reactor through a second rotating reactor at a second temperature that is lower than said first temperature, comprising a vessel which houses: a catalyst consisting essentially of a shift catalyst adapted to perform a water gas shift reaction at high temperatures; and an adsorbent adapted to adsorb carbon dioxide, thereby shifting equilibrium toward carbon monoxide consumption to provide a reduced CO content, wherein the vessel is a rotating pressure swing adsorber and the vessel is separate from the first reactor

pressurizing the vessel before the passing of the hydrogen-rich gas stream through the vessel;

depressurizing the vessel after the passing of the hydrogen-rich gas stream through the vessel; and

purging the vessel with a gas having a low carbon dioxide concentration.

8. The method as defined in claim 7 wherein the vessel further houses a second adsorbent adapted to adsorb carbon monoxide from the hydrogen-rich gas stream at lower temperatures, and adapted to desorb carbon monoxide at high temperatures.

9. The method as defined in claim 7 wherein the hydrogen-rich gas stream is not passed through a preferential oxidizer (PROX).

Assignments (12)
RELEASE OF SECURITY INTEREST Recorded Nov 7, 2014
From: WILMINGTON TRUST COMPANY
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 034371/0676 →
CHANGE OF NAME Recorded Feb 10, 2011
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 025780/0902 →
SECURITY AGREEMENT Recorded Nov 8, 2010
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: WILMINGTON TRUST COMPANY
Reel/Frame 025327/0262 →
RELEASE OF SECURITY INTEREST Recorded Nov 4, 2010
From: UNITED STATES DEPARTMENT OF THE TREASURY
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 025245/0347 →
RELEASE OF SECURITY INTEREST Recorded Nov 4, 2010
From: UAW RETIREE MEDICAL BENEFITS TRUST
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 025311/0725 →
SECURITY AGREEMENT Recorded Aug 28, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: UAW RETIREE MEDICAL BENEFITS TRUST
Reel/Frame 023162/0001 →
SECURITY AGREEMENT Recorded Aug 27, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: UNITED STATES DEPARTMENT OF THE TREASURY
Reel/Frame 023156/0052 →
RELEASE OF SECURITY INTEREST Recorded Aug 21, 2009
From: CITICORP USA, INC. AS AGENT FOR BANK PRIORITY SECURED PARTIES; CITICORP USA, INC. AS AGENT FOR HEDGE PRIORITY SECURED PARTIES
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 023127/0468 →
RELEASE OF SECURITY INTEREST Recorded Aug 20, 2009
From: UNITED STATES DEPARTMENT OF THE TREASURY
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 023124/0429 →
SECURITY AGREEMENT Recorded Apr 16, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: CITICORP USA, INC. AS AGENT FOR BANK PRIORITY SECURED PARTIES; CITICORP USA, INC. AS AGENT FOR HEDGE PRIORITY SECURED PARTIES
Reel/Frame 022553/0446 →
SECURITY AGREEMENT Recorded Feb 4, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: UNITED STATES DEPARTMENT OF THE TREASURY
Reel/Frame 022201/0547 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2009
From: GENERAL MOTORS CORPORATION
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 022092/0737 →