Claims
- 1. A steam reformer, comprising:
a first channel having a wall which is at least partly coated with a steam reforming catalyst, and a second channel having a wall which is at least partly coated with a combustion catalyst, wherein the second channel is positioned sufficiently close to the first channel to permit heat transfer from the second channel to the first channel, and a valve for selectively directing a first stream comprising air and fuel and a second stream comprising steam and fuel into said first and second channels, wherein one of said first and second channels comprises a combustion channel and another of said first and second channels comprises a steam reforming channel, and wherein an identity of said channels is determined according to a position of the valve.
- 2. The steam reformer of claim 1, further comprising a measurement and control device connected to measure concentration of at least one component of an effluent from one of said channels, the measurement and control device being operatively connected to the valve for controlling a position of the valve in response to a measurement of said concentration.
- 3. The steam reformer of claim 1, wherein the valve is configured to reverse a direction of flow through said first and second channels.
- 4. The steam reformer of claim 2, wherein the measurement and control device also measures a time interval between valve operations, and wherein the measurement and control device is connected to adjust a proportion of steam flowing into the reformer in response to a measurement of said time interval.
- 5. The steam reformer of claim 1, further comprising a plurality of means for introducing fuel into the second channel, said plurality of introducing means being disposed at intervals along a length of the first channel.
- 6. The steam reformer of claim 5, wherein the first and second channels have inlet and outlet ends, and wherein the outlet end of the first channel is connected to a channel having a wall at least partly coated with a water-gas shift catalyst, wherein the outlet end of the second channel is connected to a cooling channel having means for introducing air into the cooling channel.
- 7. The steam reformer of claim 1, wherein the steam reforming catalyst is selected from the group consisting of rhodium and palladium.
- 8. The steam reformer of claim 6, wherein the steam reforming catalyst is selected from the group consisting of rhodium and palladium, and wherein the water-gas shift catalyst is the same catalyst as the steam reforming catalyst.
- 9. The steam reformer of claim 8, wherein the steam reforming catalyst is impregnated into a washcoat of zirconia which is applied to a surface of the steam reforming channel.
- 10. A steam reformer, comprising:
a first channel having a wall which is at least partly coated with a steam reforming catalyst, and a second channel having a wall which is at least partly coated with a combustion catalyst, wherein the second channel is positioned sufficiently close to the first channel to permit heat transfer from the second channel to the first channel, and a valve for selectively directing a first stream comprising air and fuel and a second stream comprising steam and fuel into said first and second channels, wherein one of said first and second channels comprises a combustion channel and another of said first and second channels comprises a steam reforming channel according to a position of the valve, wherein the first and second channels have inlet and outlet ends, and wherein the outlet end of the first channel is connected to a channel having a wall at least partly coated with a water-gas shift catalyst, wherein the outlet end of the second channel is connected to a cooling channel having means for introducing air into the cooling channel.
- 11. The steam reformer of claim 10, further comprising a measurement and control device connected to measure concentration of at least one component of an effluent from one of said channels, the measurement and control device being operatively connected to the valve for controlling a position of the valve in response to a measurement of said concentration.
- 12. The steam reformer of claim 11, wherein the measurement and control device is connected to control a flow of steam into the reformer, and wherein the measurement and control device is programmed to compute a time interval between valve operations, and wherein the measurement and control device is programmed to adjust a flow of steam into the reformer in response to said time interval.
- 13. The steam reformer of claim 10, wherein the valve also comprises means for reversing a direction of flow through the channels.
- 14. A steam reformer, comprising:
a) a plurality of metal strips, the strips being spaced from each other to define a plurality of channels for gas flow, each channel having an inlet end and an outlet end, b) wherein some of said channels comprise steam reforming channels which are at least partially coated with a steam reforming catalyst, c) wherein some of said channels comprise combustion channels which are at least partially coated with a combustion catalyst, and wherein the steam reforming channels are interspersed with the combustion channels to allow heat from a combustion channel to flow into an adjacent steam reforming channel, further comprising a valve for selectively directing at least one first stream comprising air and fuel and at least one second stream comprising steam and fuel into said combustion channels and said reforming channels respectively, the valve comprising means for reversing a flow of said streams such that said at least one first stream is directed into a reforming channel and said at least one second stream is directed into a combustion channel.
- 15. The steam reformer of claim 14, further comprising a measurement and control device connected to measure concentration of at least one component of an effluent from at least one of said channels, the measurement and control device being operatively connected to the valve for controlling a position of the valve in response to a measurement of said concentration.
- 16. The steam reformer of claim 15, wherein the measurement and control device is adapted to measure a time interval between valve operations and to control a flow of steam into the reformer, wherein the measurement and control device adjusts the flow of steam in accordance with said time interval.
- 17. The steam reformer of claim 14, further comprising means for reversing a direction of flow through said channels.
- 18. The steam reformer of claim 14, wherein the outlet end of each steam reforming channel is connected to a channel having a wall at least partly coated with a water-gas shift catalyst, wherein the outlet end of each combustion channel is connected to a cooling channel having means for introducing air into the cooling channel.
- 19. A steam reformer comprising a plurality of modules connected in series, each module comprising:
a first channel having a wall which is at least partly coated with a steam reforming catalyst, the first channel comprising a steam reforming channel, a second channel having a wall which is at least partly coated with a combustion catalyst, the second channel comprising a combustion channel, wherein the second channel is positioned sufficiently close to the first channel to permit heat transfer from the second channel to the first channel, and means for directing steam and fuel into said first channel of each module, and for directing air and fuel into said second channel of each module, and valve means for reversing a flow of said steam and fuel and said air and fuel such that each steam reforming channel becomes a combustion channel and each combustion channel becomes a steam reforming channel.
- 20. The steam reformer of claim 19, further comprising a measurement and control device connected to measure concentration of at least one component of an effluent from at least one of said channels, the measurement and control device being operatively connected to said valve means for controlling a position of the valve means in response to a measurement of said concentration.
- 21. The steam reformer of claim 20, wherein the measurement and control device also computes a time interval between valve operations, and wherein the measurement and control device is configured to adjust a flow of steam into the reformer in accordance with said time interval.
- 22. The steam reformer of claim 19, wherein a first channel of one of said modules is connected to a channel having a wall at least partly coated with a water-gas shift catalyst, and wherein a second channel of said one of said modules is connected to a cooling channel having means for introducing air into the cooling channel.
- 23. A steam reformer comprising:
a) a steam reforming channel and a combustion channel, the steam reforming channel and combustion channels being in thermal contact with each other, and b) means for directing a first stream comprising a hydrocarbon fuel and air, and a second stream comprising a hydrocarbon fuel and steam, into a valve, c) the valve having a first position wherein the valve comprises means for directing the first stream into the combustion channel and the second stream into the reforming channel, d) the valve having a second position wherein the valve comprises means for directing the first stream into the reforming channel and the second stream into the combustion channel.
- 24. The steam reformer of claim 23, wherein the valve also comprises means for reversing a direction of flow through said steam reforming and combustion channels.
- 25. The steam reformer of claim 23, further comprising a measurement and control device connected to measure concentration of at least one component of an effluent from one of said channels, the measurement and control device being operatively connected to the valve for controlling a position of the valve in response to a measurement of said concentration.
- 26. The steam reformer of claim 25, wherein the measurement and control device also computes a time interval between valve operations, and wherein the measurement and control device is configured to adjust a flow of steam into the reformer in accordance with said time interval.
- 27. A steam reformer comprising:
a) first and second channels, the channels being sufficiently close to each other so as to permit heat transfer between the channels, the channels being coated with a catalyst suitable for promoting combustion and steam reforming, b) a valve connected to direct a first stream comprising fuel and air, and a second stream comprising fuel and steam, into said channels, wherein in a first valve position, the first stream is directed into the first channel and the second stream is directed into the second channel, and wherein in a second valve position the first stream is directed into the second channel and the second stream is directed into the first channel, c) a measuring and control device connected to measure a concentration of a component of an effluent of the reformer, and to control the valve in response to said measurement.
- 28. The steam reformer of claim 27, wherein the measuring and control device also comprises means for computing a time interval between valve operations, and for adjusting a flow of steam in response to said time interval.
- 29. The steam reformer of claim 27, wherein the valve also comprises means for reversing a direction of flow of gases through said channels.
- 30. A method of making hydrogen, comprising directing a first mixture of a hydrocarbon fuel and steam, and a second mixture of a hydrocarbon fuel and air, into a valve having two positions, wherein the valve in a first position directs the first mixture into a steam reforming channel which is at least partially coated with a steam reforming catalyst and directs the second mixture into a combustion channel which is at least partially coated with a combustion catalyst, and wherein the valve in a second position directs the first mixture into a channel which is at least partially coated with a combustion catalyst and the second mixture into a channel which is at least partially coated with a steam reforming catalyst, wherein the steam reforming channel and the combustion channel are sufficiently close to permit heat transfer between said channels,
further comprising measuring a concentration of an effluent from at least one of the channels, and controlling the valve in accordance with a measured concentration of said effluent.
- 31. The method of claim 30, further comprising directing products of a steam reforming reaction, from the steam reforming channel, into a water-gas shift channel which is coated with a water-gas shift catalyst.
- 32. The method of claim 31, further comprising cooling the water-gas shift channel by directing air into a cooling channel which is adjacent to the water-gas shift channel.
- 33. The method of claim 30, further comprising periodically reversing a direction of flow of gases through said channels.
- 34. The method of claim 33, wherein the reversing step is performed simultaneously with the controlling step.
CROSS-REFERENCE TO PRIOR APPLICATION
[0001] This is a continuation-in-part of U.S. patent application Ser. No. 10/211,083, filed Aug. 2, 2002, entitled “Autothermal Catalytic Steam Reformer”.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10211083 |
Aug 2002 |
US |
Child |
10347130 |
Jan 2003 |
US |