Preparation method, product and application of high-efficiency treatment catalyst for ferrochromium-based nitric oxide at room temperature and pressure
A nitric oxide and catalyst technology, which is applied in the field of high-efficiency treatment of ferrochromium-based nitric oxide at room temperature and pressure, can solve the problems of difficult desorption, restrict the catalytic performance and service life of the catalyst, and achieve accelerated desorption rate, The effect of good oxidation activity at room temperature and simple preparation method
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Embodiment 1
[0020] A chromium-iron-based high-efficiency treatment catalyst for nitric oxide at normal temperature and normal pressure is prepared by adopting an optimized co-precipitation method according to the following steps:
[0021] The first step is to dissolve chromium sulfate and ferric sulfate with a molar ratio of 9:1 in deionized water to form a metal salt solution, and the total molar concentration of the metal salt solution is 0.15 mol / L;
[0022] Second step: add potassium sulfate in above-mentioned metal salt solution, the mol ratio of metal salt and potassium sulfate is 1:0.1;
[0023] In the third step, concentrated ammonia water was added dropwise to adjust the pH to about 9, reacted for 5h, suction filtered, dried at 50-100°C, and calcined at 400°C for 4h to obtain Cr9Fe1-400.
Embodiment 2
[0025] A chromium-iron-based high-efficiency treatment catalyst for nitric oxide at room temperature and normal pressure is prepared according to the following steps:
[0026] The first step is to dissolve chromium sulfate and ferric sulfate with a molar ratio of 7:3 in deionized water to form a metal salt solution, and the total molar concentration of the metal salt solution is 0.15 mol / L;
[0027] Second step: add potassium sulfate in above-mentioned metal salt solution, the mol ratio of metal salt and potassium sulfate is 1:0.1;
[0028] In the third step, concentrated ammonia water was added dropwise to adjust the pH to about 9, reacted for 5h, suction filtered, dried at 50-100°C, and calcined at 400°C for 4h to obtain Cr7Fe3-400.
Embodiment 3
[0030] A chromium-iron-based high-efficiency treatment catalyst for nitric oxide at room temperature and normal pressure is prepared according to the following steps:
[0031] The first step is to dissolve chromium sulfate and ferric sulfate with a molar ratio of 5:5 in deionized water to form a metal salt solution, and the total molar concentration of the metal salt solution is 0.15 mol / L;
[0032] Second step: add the potassium sulfate of specific ratio in above-mentioned metal salt solution, the mol ratio of metal salt and potassium sulfate is 1:0.1;
[0033] In the third step, concentrated ammonia water was added dropwise to adjust the pH to about 9, reacted for 5h, suction filtered, dried at 50-100°C, and calcined at 400°C for 4h to obtain Cr5Fe5-400.
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