Claims
- 1. An exhaust aftertreatment system for use with an internal combustion engine, comprising:
a manifold having at least one inlet and a plurality of outlets; a plurality of legs, each said leg connected with a respective said manifold outlet, each said leg having a NOx adsorber therein; and at least one valve, each said valve being positioned in association with at least one said leg for at least partially opening and closing said at least one leg.
- 2. The exhaust aftertreatment system of claim 1, wherein each said NOx adsorber includes a multi-stage NOx adsorber, each said NOx adsorber stage corresponding to a different temperature range of NOx adsorption.
- 3. The exhaust aftertreatment system of claim 2, wherein said multiple NOx adsorber stages are serially arranged.
- 4. The exhaust aftertreatment system of claim 3, wherein said multiple NOx adsorber stages are serially arranged from a low temperature range to a high temperature range with respect to a flow direction.
- 5. The exhaust aftertreatment system of claim 3, wherein said multiple NOx adsorption stages are one of integrally connected and separate from each other.
- 6. The exhaust aftertreatment system of claim 2, wherein said multi-stage NOx adsorber is coated in a serial arrangement with different coating materials.
- 7. The exhaust aftertreatment system of claim 6, wherein each said coating material promotes adsorption at a different temperature range.
- 8. The exhaust aftertreatment system of claim 7, wherein each said coating material comprises one of a carbonate compound and oxide compound.
- 9. The exhaust aftertreatment system of claim 8, wherein each said coating material comprises one of barium carbonate, barium oxide, titanium carbonate, titanium dioxide, strontium carbonate, strontium oxide, sodium carbonate, sodium oxide, and potassium carbonate.
- 10. The exhaust aftertreatment system of claim 1, wherein each said NOx adsorber includes a removable and replaceable NOx adsorber element.
- 11. The exhaust aftertreatment system of claim 1, wherein each said leg includes a NOx sensor.
- 12. The exhaust aftertreatment system of claim 1, wherein each said leg includes a catalyzed diesel particulate filter positioned upstream from said NOx adsorber.
- 13. The exhaust aftertreatment system of claim 12, wherein each said leg includes a fuel injector positioned upstream from said catalyzed diesel particulate filter.
- 14. The exhaust aftertreatment system of claim 13, wherein each said leg includes at least one of an oxidation catalyst and an oxidation-reduction catalyst positioned downstream from said NOx adsorber.
- 15. The exhaust aftertreatment system of claim 14, further including a final oxidation catalyst positioned downstream from and in communication with each of said legs.
- 16. The exhaust aftertreatment system of claim 1, wherein each said valve is positioned in association with a plurality of said legs.
- 17. The exhaust aftertreatment system of claim 1, wherein each said valve comprises one of a rotary valve, a sliding plate valve, and a vane type valve.
- 18. The exhaust aftertreatment system of claim 1, wherein each said valve is positioned within said manifold.
- 19. The exhaust aftertreatment system of claim 1, wherein each said valve includes a flow control orifice providing partial flow through said valve when in a closed position
- 20. The exhaust aftertreatment system of claim 19, wherein said flow control orifice is a fixed orifice.
- 21. A motor vehicle, comprising:
an internal combustion engine; and an exhaust aftertreatment system in communication with said internal combustion engine, including:
a manifold having at least one inlet and a plurality of outlets; a plurality of legs, each said leg connected with a respective said manifold outlet, each said leg having a NOx adsorber therein; and at least one valve, each said valve being positioned in association with at least one said leg for at least partially opening and closing said at least one leg.
- 22. A method of aftertreating exhaust from an internal combustion engine, comprising the steps of:
providing a plurality of legs, each said leg having a NOx adsorber therein; positioning at least one valve in association with at least one said leg; and at least partially opening and closing said at least one valve.
- 23. The method of aftertreating exhaust of claim 22, further including the step of adsorbing NOx within each said leg in a multi-stage manner, with each said NOx adsorption stage corresponding to a different temperature adsorption range.
- 24. The method of aftertreating exhaust of claim 22, further including the step of filtering particulates from the exhaust within each said leg upstream from said corresponding NOx adsorber.
- 25. The method of aftertreating exhaust of claim 22, further including the step of oxidizing the exhaust within each said leg downstream from said corresponding NOx adsorber.
- 26. The method of aftertreating exhaust of claim 22, further including the step of injecting fuel into at least one said leg upstream from said corresponding NOx adsorber.
- 27. The method of aftertreating exhaust of claim 22, further including the step of removing and replacing at least one said NOx adsorber element.
- 28. An exhaust aftertreatment system for use with an internal combustion engine, comprising at least one leg, each said leg having a multi-stage NOx adsorber, each said NOx adsorber stage corresponding to a different temperature range of NOx adsorption.
- 29. The exhaust aftertreatment system of claim 28, wherein said multiple NOx adsorber stages are serially arranged.
- 30. The exhaust aftertreatment system of claim 29, wherein said multiple NOx adsorber stages are serially arranged from a low temperature range to a high temperature range with respect to a flow direction.
- 31. The exhaust aftertreatment system of claim 29, wherein said multiple NOx adsorption stages are one of integrally connected and separate from each other.
- 32. The exhaust aftertreatment system of claim 28, wherein said multi-stage NOx adsorber is coated in a serial arrangement with different coating materials.
- 33. The exhaust aftertreatment system of claim 32, wherein each said coating material promotes adsorption at a different temperature range.
- 34. The exhaust aftertreatment system of claim 33, wherein each said coating material comprises one of a carbonate compound and oxide compound.
- 35. The exhaust aftertreatment system of claim 34, wherein each said coating material comprises one of barium carbonate, barium oxide, titanium carbonate, titanium dioxide, strontium carbonate, strontium oxide, sodium carbonate, sodium oxide, and potassium carbonate.
- 36. The exhaust aftertreatment system of claim 28, wherein each said multi-stage NOx adsorber includes a removable and replaceable NOx adsorber element.
- 37. The exhaust aftertreatment system of claim 28, further including a bypass for bypassing at least one said leg.
- 38. A motor vehicle, comprising:
an internal combustion engine; and an exhaust aftertreatment system in communication with said internal combustion engine, including at least one leg, each said leg having a multi-stage NOx adsorber, each said NOx adsorber stage corresponding to a different temperature range of NOx adsorption.
- 39. A method of aftertreating exhaust from an internal combustion engine, comprising the steps of:
providing an exhaust aftertreatment system with at least one leg, each said leg having a a multi-stage NOx adsorber; and adsorbing NOx in a zone-wise manner within each said leg using said multi-stage NOx adsorber, dependent upon a temperature of the exhaust.
- 40. The method of aftertreating exhaust of claim 39, including the step of arranging said multiple NOx adsorption stages in a serial manner.
- 41. The method of aftertreating exhaust of claim 40, including the step of coating said multi-stage NOx adsorber in a serial arrangement with different coating materials, each said coating material promoting adsorption at a different temperature range.
- 42. The method of aftertreating exhaust of claim 41, wherein each said coating material comprises one of a carbonate compound and oxide compound.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a non-provisional patent application based upon U.S. provisional patent application serial Nos. 60/334,202, entitled “On Vehicle Multi-Pass Valve Flow Controlled Exhaust After-Treatment System”, filed Nov. 29, 2001; 60/394,101, entitled “Multi-Pass Exhaust Flow Control Valve”, filed Jul. 6, 2002; 60/405,056, entitled “Low Cost Replaceable Element Aftertreatment System”, filed Aug. 21, 2002; 60/405,057, entitled “Multi-Stage NOx Adsorber Elements for Exhaust Aftertreatment Systems”, filed Aug. 21, 2002; and 60/405,058, entitled “Low Pressure Fuel Injector”, filed Aug. 21, 2002.
Provisional Applications (5)
|
Number |
Date |
Country |
|
60334202 |
Nov 2001 |
US |
|
60394101 |
Jul 2002 |
US |
|
60405056 |
Aug 2002 |
US |
|
60405057 |
Aug 2002 |
US |
|
60405058 |
Aug 2002 |
US |