Catalyst for eliminating ozone and nitrogen oxide and its prepn. process
A nitrogen oxide and preparation technology, which is applied in the direction of catalyst activation/preparation, metal/metal oxide/metal hydroxide catalyst, physical/chemical process catalyst, etc. Unsatisfactory purification effect and other problems, to achieve good results
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Embodiment 1
[0013] In Example 1, first, 3% manganese nitrate, 1% copper nitrate, 0.25% nickel nitrate and 0.15% silver nitrate were mixed to prepare a nitrate solution with a concentration of 4.4%; the viscose activated carbon fiber carrier was immersed in After 3 hours in the nitrate solution, take it out and dry it at 40°C, then heat the viscose activated carbon fiber carrier under a nitrogen atmosphere at 300°C for 3 hours to decompose the nitrate in the micropores on the viscose activated carbon fiber carrier into dioxide Manganese, copper oxide, nickel oxide, silver oxide; then add 5% hydrogen in nitrogen at 300°C for 20 minutes to obtain a small amount of corresponding nano-scale single crystal metal in the micropores on the surface of the catalyst carrier; finally, the catalyst carrier is cooled After reaching room temperature, a catalyst to eliminate ozone and nitrogen oxides is obtained.
Embodiment 2
[0014] Example 2: Firstly, 8.4% manganese nitrate, 3.6% copper nitrate, 0.84% nickel nitrate and 0.25% silver nitrate were mixed to prepare a nitrate solution with a concentration of 13.09%; the viscose activated carbon fiber carrier was immersed in After 4 hours in the nitrate solution, take it out and dry it at 50°C, then heat the viscose activated carbon fiber carrier under a nitrogen atmosphere at 350°C for 4 hours to decompose the nitrate in the micropores on the viscose activated carbon fiber carrier into manganese oxide , Copper oxide, nickel oxide, silver oxide; then add 10% hydrogen to 350℃ nitrogen for 30 minutes to obtain a small amount of corresponding nano-scale single crystal metal in the micropores on the surface of the catalyst carrier; finally, cool the catalyst carrier to After room temperature, a catalyst to eliminate ozone and nitrogen oxides is obtained.
Embodiment 3
[0015] In Example 3, firstly, 5% manganese nitrate, 2% copper nitrate, 0.5% nickel nitrate and 0.2% silver nitrate were mixed to prepare a nitrate solution with a concentration of 7.7%; the viscose activated carbon fiber carrier was immersed in After 3.5 hours in the nitrate solution, take it out and dry it at 45°C, then heat the viscose activated carbon fiber carrier under a nitrogen atmosphere at 320°C for 3.5 hours to decompose the nitrate in the micropores on the viscose activated carbon fiber carrier into manganese oxide , Copper oxide, nickel oxide, silver oxide; add 8% hydrogen to nitrogen at 330°C for 25 minutes to obtain a small amount of corresponding nano-scale single crystal metal in the micropores on the surface of the catalyst carrier; finally, cool the catalyst carrier to After room temperature, a catalyst to eliminate ozone and nitrogen oxides is obtained.
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