Claims
- 1. A method of making a catalyst for the purification of exhaust gases from internal combustion engines comprising forming a support by impregnating aluminum oxide from the transition series with an aqueous solution of a cerium salt and a zirconium salt and optionally an iron salt and/or a nickel salt, or impregnating with an aqueous suspension of oxides, hydroxides, or carbonates of cerium, zirconium, and optionally iron and/or nickel; tempering the support by heating in air at a temperature from 500 to 900.degree., impregnating the support with an aqueous solution of a salt or a noble metal and a base metal wherein the noble metal is platinum, palladium or rhodium or mixtures thereof and the base metal is cerium, the amount of noble metal component being from 0.03 to 3 weight percent and the amount of cerium being 0.01 to 150% by weight based on the total weight of the noble metal and cerium in the form of cerium oxide being an amount from 0.0007 to 0.35 gram per liter of carrier volume, contacting the so impregnated support with a hydrogen gas stream at a temperature from 250 to 650.degree. C. and thereby forming the carrier catalyst.
- 2. A catalyst for purifying exhaust gases from internal combustion engines comprising a support composed of aluminum oxide from the transition series, which contains 5 to 70 weight % CeO.sub.2 and 1.6 to 1.9 weight % ZrO.sub.2, 1 to 10 weight % Fe.sub.2 O.sub.3, and 0 to 20 weight % NiO.sub.2, and a catalytically active phase deposited on the support, said phase consisting of 0.03 to 3 weight % of a noble metal selected from the group of platinum, palladium and rhodium or mixtures thereof, in combination with a base metal, cerium, the amount of cerium being 0.01 to 150% by weight, based on the total weight of noble metal and cerium in the form of cerium oxide being an amount from 0.0007 to 0.35 gram per liter of carrier volume; said catalyst produced by the method of claim 1.
- 3. The catalyst according to claim 2 wherein the weight ratio of platinum and/or palladium to the rhodium is 2:1 to 20:1.
- 4. The catalyst according to claim 2 which is produced by impregnating the support with an aqueous solution comprising a cerium and zirconium salt.
- 5. The catalyst according to claim 4 wherein the solution also contains an iron salt or a nickel salt, or mixture thereof.
- 6. The catalyst according to claim 2 wherein the support is mixed with an aqueous suspension of the oxides or hydroxides or carbonates of cerium, zirconium, iron and nickel.
- 7. The catalyst according to claim 4 wherein the support after impregnation is tempered in air by heating to 500 to 900.degree. C.
- 8. The catalyst according to claim 4 wherein after impregnating, an additional impregnating of the support is done with an aqueous solution of a salt of the noble metal and the base metal and then drying.
- 9. The catalyst according to claim 2 wherein the support is treated in a hydrogen-containing gas stream at temperatures from 250 to 650.degree. C.
- 10. The catalyst according to claim 2 deposited on a honeycomb ceramic substrate.
- 11. The catalyst according to claim 2 deposited on a honeycomb metal substrate.
- 12. The catalyst according to claim 2 wherein the catalytically active phase is present in an amount of 5 to 30% by weight based on the support.
- 13. The catalyst according to claim 2 wherein the support is lattice-stabilized alumina.
- 14. The method according to claim 13 wherein the support is deposited on a honeycomb shaped carrier of ceramic or metal.
- 15. A catalyst produced by the method of claim 14.
- 16. The method of claim 13 wherein said impregnated support is contacted with a hydrogen gas stream at a temperature from 250 to 650.degree. C. for 4 hours.
- 17. A catalyst of improved light off behavior for purifying exhaust gases from internal combustion engines comprising a support composed of aluminum oxide from the transition series, which contains 5 to 70 weight % CeO.sub.2 and 1.6 to 1.9 weight % ZrO.sub.2, 0 to 10 weight % Fe.sub.2 O.sub.3, and 0 to 20 weight % NiO.sub.2, and a catalytically active phase deposited on the support, said phase consisting of 0.03 to 3 weight % of a noble metal selected from the group of platinum, palladium and rhodium or mixtures thereof, in combination with a base metal, cerium, the amount of cerium being 0.01 to 150% by weight, based on the total weight of noble metal; said catalyst produced by the method of claim 1.
- 18. A method of improving the lean activity of catalysts for purifying exhaust gases from internal combustion engines, said method comprises contacting the catalyst of claim 2 with said exhaust gases for conversion of pollutants.
Priority Claims (1)
Number |
Date |
Country |
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3803122 |
Feb 1988 |
DEX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/303,287, filed Jan. 30, 1990, now abandoned.
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Continuations (1)
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Number |
Date |
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Parent |
303287 |
Jan 1990 |
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