Catalyst for catalytic cleaning of lean-burn engine tail gas and its preparing process
A lean-burn engine, catalytic purification technology, applied in catalyst activation/preparation, metal/metal oxide/metal hydroxide catalyst, physical/chemical process catalyst, etc. Wide operating temperature window, etc., to achieve good low-temperature catalytic activity, expand the reaction activity window, and improve the effect of dispersion.
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Embodiment 1
[0033] For the problem of narrow working window of the existing catalyst used for lean-burn engine exhaust, the catalyst prepared by the following method widens the working window of the catalyst by increasing the content of titanium dioxide and cerium-zirconium oxide.
[0034] The first step, the preparation of titanium dioxide sol
[0035] Dissolve 28.43ml of tetrabutyl titanate in 56.87ml of absolute ethanol, then add 4.8ml of diethanolamine, stir at room temperature for 2 hours, add 9.9ml of a mixed solution of water and ethanol with a volume ratio of 1:10, and then add 0.5g of polyethylene glycol with a molecular weight of 2000, and then ultrasonically dispersed for 10 minutes, a transparent yellow sol can be obtained;
[0036] The second step, preparation of titanium dioxide coating on the surface of alumina powder
[0037] Add 2.0g of alumina powder into 50ml of titanium sol for 2min, dry at 120°C for 6h; repeat this step twice; then raise the temperature to 600°C in a...
Embodiment 2
[0046] For existing catalysts used for lean-burn engine exhaust gas, the reaction temperature is relatively high, and the following method is used to prepare a catalyst with a relatively high content of palladium in the catalytic active component.
[0047] The first step, the preparation of titanium dioxide sol
[0048] Dissolve 12.19ml of tetrabutyl titanate in 73.11ml of absolute ethanol, then add 4.8ml of diethanolamine, stir at room temperature for 2 hours, add 9.9ml of a mixed solution of water and ethanol with a volume ratio of 1:10, and then add 2.0g of polyethylene glycol with a molecular weight of 2000, and then ultrasonically dispersed for 20 minutes, a transparent light yellow sol can be obtained;
[0049] The second step, preparation of titanium dioxide coating on the surface of alumina powder
[0050] Add 2.0g of alumina powder into 50ml of titanium sol for 10min, dry at 100°C for 10h; repeat this step 5 times; then raise the temperature to 400°C in a muffle furn...
Embodiment 3
[0059]For the problems of high reaction temperature and narrow working window of existing catalysts used for exhaust gas of lean-burn engines, the following method is used to prepare catalysts with appropriate content of titanium dioxide and cerium-zirconium oxides and low palladium content, which can meet the requirements of the laboratory need.
[0060] The first step, the preparation of titanium dioxide sol
[0061] Dissolve 17.02ml of tetrabutyl titanate in 68.28ml of absolute ethanol, then add 4.8ml of diethanolamine, stir at room temperature for 2 hours, add 9.9ml of a mixed solution of water and ethanol with a volume ratio of 1:10, and then add 1.0g of polyethylene glycol with a molecular weight of 2000, and ultrasonically disperse for 15 minutes, a transparent light yellow sol can be obtained;
[0062] The second step, preparation of titanium dioxide coating on the surface of alumina powder
[0063] Add 2.0g of alumina powder into 50ml of titanium sol for 5min, dry a...
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