Automobile tail gas cleaning catalyst and its preparation method

A technology for purifying catalysts and automobile exhaust. It is applied in the direction of catalyst activation/preparation, physical/chemical process catalysts, chemical instruments and methods, etc. It can solve the problems of poor selectivity of silver active parts, high catalyst cost, and poor sulfur resistance.

Active Publication Date: 2009-02-11
BYD CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Among them, rhodium is used as a common reducing NO x The catalytically active component has the advantages of good light-off activity, good aging resistance, and strong anti-poisoning ability, but due to its resource shortage and high price, the cost of the entire catalyst is relatively high, and Pt or/and Pd without Rh Although the catalyst has the characteristics of strong anti-aging ability and good low-temperature ignition performance, it is not effective for NO x The ability to restore is poor
[0004] In order to reduce costs, people have carried out a lot of research work on the use of non-noble me...

Method used

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  • Automobile tail gas cleaning catalyst and its preparation method
  • Automobile tail gas cleaning catalyst and its preparation method
  • Automobile tail gas cleaning catalyst and its preparation method

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preparation example Construction

[0022] The preparation method of above-mentioned catalyst that the embodiment of the present invention provides, comprises the following steps:

[0023] (1) impregnating activated alumina with a mixture of soluble silver salt and citric acid, followed by drying and roasting steps to obtain silver-loaded alumina; impregnating different oxygen storage materials with soluble salts of platinum and palladium respectively, Through the steps of drying and roasting in sequence, the oxygen storage material loaded with platinum and the oxygen storage material loaded with palladium are obtained;

[0024] (2) Alumina loaded with silver, an oxygen storage material loaded with platinum or / and palladium, water, and a binder are mixed and ball-milled to 1-10 μm to make a coating slurry;

[0025] (3) Coating the coating slurry in one or more layers on the catalyst carrier, and each layer of coating contains aluminum oxide loaded with silver and an oxygen storage material loaded with platinum o...

Embodiment 1

[0032] Impregnated 100g of γ-alumina with a mixed aqueous solution containing 5.0g of silver nitrate and 5.0g of citric acid, dried at 110°C for 4 hours, and fired at 550°C for 3 hours to obtain silver-modified alumina. Immerse 80g of cerium-zirconium solid solution with chloroplatinic acid solution containing 0.48g of platinum. The cerium-zirconium solid solution is in parts by weight, wherein Ce:Zr=4:6, and then dried at 110°C for 4h and roasted at 600°C for 3h to obtain platinum-modified Oxygen storage material: impregnate another 80g of cerium-zirconium solid solution with palladium chloride hydrochloric acid solution containing 2.4g of palladium, the cerium-zirconium solid solution is in parts by weight, wherein Ce:Zr=4:6, and then dried at 110°C for 4h and roasted at 500°C for 3h A palladium-modified oxygen storage material is prepared. 53g of silver-modified alumina, 80g of platinum-modified oxygen storage material, 30g of pseudoboehmite and 160g of water are mixed and ...

Embodiment 2

[0034] Impregnated 100g of γ-alumina with a mixed aqueous solution containing 6.0g of silver nitrate and 10g of citric acid, dried at 110°C for 24h, and fired at 550°C for 4h to obtain silver-modified alumina. Immerse 60g of cerium-zirconium solid solution with chloroplatinic acid solution containing 0.6g of platinum. The cerium-zirconium solid solution contains La, in parts by weight, wherein Ce:Zr:La=3:6:1, and then dried at 110°C for 24h, 550°C Roasting for 4 hours to obtain a platinum-modified oxygen storage material; impregnate another 60 g of cerium-zirconium solid solution with 2.5 g of palladium-containing palladium chloride hydrochloric acid solution, which contains La in parts by weight, where Ce:Zr:La=3 :6:1, and then dried at 105°C for 24h and calcined at 550°C for 4h to obtain a palladium-modified oxygen storage material. Mix 104g of silver-modified alumina, 59g of platinum-modified oxygen storage material, 60g of palladium-modified oxygen storage material, 20g of...

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Abstract

The invention provides a catalyst used for purifying motor vehicle exhaust, and a preparation method thereof. The catalyst comprises a carrier with one coating or a plurality of coatings; each coating contains alumina carrying silver and an oxygen storage material carrying platinum or/and palladium, wherein, the silver is impregnated to be carried on the active alumina by a mixed solution of soluble silver salt and citric acid, and the platinum and the palladium are respectively impregnated to be carried on the oxygen storage material by the salt solutions thereof, wherein, the platinum and the palladium are not carried on the same oxygen storage material. The preparation method comprises the following steps: (1) the active alumina is impregnated by using the mixed solution of the soluble silver salt and the citric acid to prepare the alumina carrying silver; the oxygen storage material carrying the platinum and the oxygen storage material carrying the palladium are prepared; (2) a coating sizing material is prepared; (3) the coating sizing material is coated on the catalyst carrier to prepare the catalyst. The catalyst provided by the invention for purifying the motor vehicle exhaust has low cost, good combustion activity and good resistance to aging.

Description

technical field [0001] The invention belongs to the technical field of environmental protection catalysts, in particular to a catalyst for purifying automobile exhaust and a preparation method thereof. Background technique [0002] With the development of the automobile industry, the output of automobiles has increased sharply, and the tail gas emitted by automobiles has become one of the main pollution sources of the atmosphere. CO, Hydrocarbons (HC), NO in automobile exhaust x Such ingredients are extremely harmful to human health and the public environment. In order to eliminate this severe pollution, countries around the world have enacted stricter emission regulations one after another. Therefore, minimizing vehicle exhaust emissions has become a major issue to be solved urgently in the field of global environmental protection. At present, the method of adding an exhaust catalytic converter to an electronically controlled fuel injection system with an oxygen sensor ha...

Claims

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Application Information

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IPC IPC(8): B01J23/66B01J37/025B01D53/94
Inventor 刘武略欧玲丁大勇王胜杰
Owner BYD CO LTD
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