Claims
- 1. A filter for trapping and combusting diesel exhaust particulates, said filter comprisinga monolithic substrate having surfaces with pores which extend into said substrate; and, a coating extending over said substrate's surfaces as a substantially uninterrupted layer of a refractory oxide material which at a frequency of about 2.45 GHz heats up said substrate from room temperature to about 600° C. in about 5 minutes or less, and wherein said refractory oxide material has a loss tangent which decreases with increasing temperature such that an equilibrium in said filter temperature is reached at no greater than about 1100° C., wherein said refractory oxide material has a composition represented by the formula (A′aRrM″m)(Z)4(X)6O24, where A′ is from Group IA metals; where R is selected from Group IIA metals; where M″ is selected from the group consisting of Mn, Co, Cu, Zn, Y, lanthanides and combinations thereof; where Z is selected from the group consisting of Zr, Hf, Ti, Nb, Ta, Y, lanthanides, Sn, Fe, Co, Al, Mn, Zn, Ni, and combinations thereof; where X is selected from the group consisting of P, Si, As, Ge, B, Al, and combinations thereof; wherein, said chemical formula is electrostatically balanced.
- 2. The filter of claim 1 wherein said monolithic substrate is a honeycomb substrate having an inlet and outlet end and a multiplicity of cells extending from said inlet end to said outlet end, said cells having porous walls, wherein part of the total number of cells at said inlet end are plugged along a portion of their lengths, and the remaining part of cells that are open at said inlet end are plugged at said outlet end along a portion of their lengths, so that a fluid stream passing through the cells of said honeycomb from said inlet end to said outlet end flows into said open cells, through said cell walls and out of said honeycomb substrate through said open cells at said outlet end.
- 3. The filter of claim 1 wherein said microwave-absorbing material coated on said monolith substrate is LaMn0.8Pt0.2O3−α.
- 4. The filter of claim 1 wherein said microwave absorbing material on said monolith substrate has a composition represented by the formula Na1+Zr2P3−wSiwO12 and the value of w is between 1.0 and 2.75.
- 5. The filter of claim 4 wherein said microwave-absorbing material coated on said monolith substrate is Na2.5Zr2P1.5Si1.5O12.
- 6. The filter of claim 4 wherein said microwave-absorbing material coated on said monolith substrate is Na3Zr2PSi2O12.
- 7. A method of making a filter for trapping and combusting diesel exhaust particulates, said method comprising:(a) providing a monolithic substrate having surfaces with pores which extend into said substrate; (b) contacting said monolithic substrate with a microwave-absorbing material having a composition represented by the formula (A′aRrM″m)(Z)4(X)6O24, where A′ is from Group IA metals; where R is selected from Group IIA metals; where M″ is selected from the group consisting of Mn, Co, Cu, Zn, Y, lanthanides and combinations thereof; where Z is selected from the group consisting of Zr, Hf, Ti, Nb, Ta, Y, lanthanides, Sn, Fe, Co, Al, Mn, Zn, Ni, and combinations thereof; where X is selected from the group consisting of P, Si, As, Ge, B, Al, and combinations thereof; wherein, said chemical formula is electrostatically balanced; (c) drying said monolithic substrate coated with said microwave-absorbing material; and, (d) calcining said dried coated monolithic substrate.
- 8. The method of claim 7 wherein said monolithic substrate is a honeycomb substrate having an inlet and outlet end and a multiplicity of cells extending from said inlet end to said outlet end, said cells having porous walls, wherein part of the total number of cells at said inlet end are plugged along a portion of their lengths, and the remaining part of cells that are open at said inlet end are plugged at said outlet end along a portion of their lengths, so that a fluid stream passing through the cells of said honeycomb from said inlet end to said outlet end flows into said open cells, through said cell walls and out of said honeycomb substrate through said open cells at said outlet end.
- 9. A filter for trapping and combusting diesel exhaust particulates, said filter comprising:a monolithic substrate; a microwave-absorbing material coated on said monolith substrate, said microwave-absorbing material having a composition represented by the formula LaMn1−yM′yO3−α, where M′ is selected from the group of metals consisting of Pt, Ru, Fe, Zn, Cu, and combinations thereof, and 0≦y≦0.2.
- 10. The filter of claim 9 wherein said microwave-absorbing material coated on said monolith substrate is LaMn0.8Pt0.2O3−α.
- 11. The filter of claim 10 wherein said monolithic substrate is a honeycomb substrate having an inlet and outlet end and a multiplicity of cells extending from said inlet end to said outlet end, said cells having porous walls, wherein part of the total number of cells at said inlet end are plugged along a portion of their lengths, and the remaining part of cells that are open at said inlet end are plugged at said outlet end along a portion of their lengths, so that a fluid stream passing through the cells of said honeycomb from said inlet end to said outlet end flows into said open cells, through said cell walls and out of said honeycomb substrate through said open cells at said outlet end.
- 12. A method of making a filter for trapping and combusting diesel exhaust particulates, said method comprising:(a) providing a monolithic substrate having surfaces with pores which extend into said substrate; (b) contacting said monolithic substrate with a microwave-absorbing material having a composition represented by the formula LaMn1−yM′yO3−α, where M′ is selected from the group of metals consisting of Pt, Ru, Fe, Zn, Cu, and combinations thereof, and 0≦y≦0.2; (c) drying said monolithic substrate coated with said microwave-absorbing material, and, (d) calcining said dried coated monolithic substrate.
- 13. The method of claim 12 wherein said monolithic substrate is a honeycomb substrate having an inlet and outlet end and a multiplicity of cells extending from said inlet end to said outlet end, said cells having porous walls, wherein part of the total number of cells at said inlet end are plugged along a portion of their lengths, and the remaining part of cells that are open at said inlet end are plugged at said outlet end along a portion of their lengths, so that a fluid stream passing through the cells of said honeycomb from said inlet end to said outlet end flows into said open cells, through said cell walls and out of said honeycomb substrate through said open cells at said outlet end.
CROSS-REFERENCE TO RELATED APPLICATIONS
An application entitled DIESEL EXHAUST FILTERS, filed under Ser. No. 09/584,932 in the names of L. He, G. Merkel, C. Tanner, and D. Wexell and assigned to the same assignee as this application, is directed to a filter for trapping and combusting diesel exhaust particulates comprising a microwave-absorbing filter body and a method of making the same.
US Referenced Citations (7)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0 420 513 |
Jan 1995 |
EP |
6-241022 |
Aug 1994 |
JP |
Non-Patent Literature Citations (3)
Entry |
“Preparation of Bulk and Supported Perovskites”, Twu and Gallagher, Chapter 1, pp 1-9, Properties and Applications of Perovskite-Type Oxides. |
“Development of a Microwave Assisted Regeneration System for a Ceramic Diesel Particulate System” Gautam et al., SAE Technical Paper Series 1999-01-3565, pp. 1-16. |
Application 60/157,895, P15201 Merkel, Oct. 5, 1999. |