Claims
- 1. A method of purifying diesel engine exhaust gas containing sulfur and SOF which comprises passing said gas over a catalyst comprising a refractory three-dimensional structure coated with
- (A) a platinum and/or palladium-carrying first refractory inorganic oxide powder obtained by depositing platinum and/or palladium and a catalytically active oxide of at least one metal selected from the group consisting of tungsten, antimony, molybdenum, nickel, manganese, iron, bismuth, cobalt, zinc, and alkaline earth metals on (a) a first refractory inorganic oxide powder, said platinum and/or palladium being contained therein in an amount in the range of from 5% to 50% by weight, based on the amount of (a) said first refractory inorganic oxide powder and
- (B) a catalyst composition formed of (b) a second refractory inorganic oxide powder selected from the group consisting of alumina, silica, titania, zirconia, silica-alumina, alumina-zirconia, alumina-titania, silica-titania, silica-zirconia, titania-zirconia and zeolites.
- 2. A method of claim 1, wherein said platinum and/or palladium-carrying refractory inorganic oxide powder has a platinum and/or palladium content in the range of from 0.01 to 3 g, a catalytically active oxide content in the range of from 0.01 to 4 g, and (a) a first refractory inorganic oxide powder content in the range of from 0.01 to 15 g per liter of said refractory three-dimensional structure.
- 3. A method of claim 2, wherein the mixing ratio of (a) the first refractory inorganic oxide powder to (b) the second refractory inorganic oxide powder is in the range of from 0.5 to 1.
- 4. A method of claim 3, wherein said platinum and/or palladium-carrying refractory inorganic oxide powder has a platinum and/or palladium content in the range of from 0.1 to 2 g, a catalytically active oxide content in the range of from 0.01 to 2 g, and (a) a first refractory inorganic oxide powder content in the range of from 0.02 to 10 g per liter of said refractory three-dimensional structure.
- 5. A method of claim 4, wherein the amount of platinum and/or palladium is in the range of from 10 to 15% by weight based on the amount of (a) said first refractory inorganic oxide powder.
- 6. A method of claim 5, wherein said first and said second refractory inorganic oxide powders have a primary average particle diameter in the range from 50 to 3,000 Angstroms.
- 7. A method of claim 6, wherein said powders have a BET surface area in the range of from 1 to 200 m.sup.2 /g.
- 8. A method of claim 7, wherein the amount of catalyst components A and B coated on said refractory three-dimensional structure is in the range of from 0.1 to 200 g per liter of said refractory three-dimensional structure.
- 9. A method of claim 8, wherein said coating having said catalyst components A and B is coated with a further coating of rhodium-carrying refractory inorganic oxide powder having 0.01 to 0.5 g of rhodium deposited on (c) a third refractory inorganic oxide powder per liter of said refractory three-dimensional structure.
- 10. A method of claim 9, wherein the amount of said rhodium-carrying refractory inorganic oxide powder is in the range of from 0.01 to 50 g per liter of said three-dimensional structure.
Parent Case Info
This application is a continuation of application Ser. No. 08/349,790, filed Dec. 6, 1994, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0449423 |
Feb 1991 |
EPX |
507590 |
Jul 1992 |
EPX |
0622107 |
Apr 1994 |
EPX |
Non-Patent Literature Citations (2)
Entry |
European Search Repurt, May 16, 1995. |
Japanese Patent Abstract: JP 59142851, vol. 8, No. 266, Aug. 1994. |
Continuations (1)
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Number |
Date |
Country |
Parent |
349790 |
Dec 1994 |
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