Nickel-modified molecular sieve SCR catalyst and preparation method thereof
A technology of SCR catalyst and molecular sieve, which is applied in the field of catalyst preparation to achieve good adsorption performance, no biological toxicity, and easy reduction
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Embodiment 1
[0020] This nickel-modified molecular sieve SCR catalyst uses ZSM-5 zeolite molecular sieve as a carrier, and also contains nickel element accounting for 1% of the ZSM-5 zeolite molecular sieve mass fraction, and the copper element is mainly distributed in the form of Ni2+ in ZSM-5 surface and shallow pores.
[0021] The preparation method is as follows:
[0022] A. Immerse a nickel nitrate solution with a nickel nitrate quality of 3 grams in 100 grams of ZSM-5, and stir at 75°C for 24 hours;
[0023] B. Then dry at about 120°C for 3.5 hours;
[0024] C. Calcining the obtained step B at a high temperature at about 550° C. for 3.5 hours;
[0025] D. Naturally cool the obtained product in step C to 15°C to 25°C.
[0026] The prepared catalyst is crushed to 20-40 mesh and used in SCR to catalyze the reduction of NOx to N2. At 260°C, the conversion rate of NOx reaches 88%; at 470°C, the conversion rate of NOx reaches over 95%. In addition, the conversion rate of NOx at 220°C i...
Embodiment 2
[0028] This nickel-modified molecular sieve SCR catalyst uses ZSM-5 zeolite molecular sieve as a carrier, and also contains nickel element accounting for 15% of the ZSM-5 zeolite molecular sieve mass fraction, and the copper element is mainly distributed in the form of Ni2+ in ZSM-5. surface and shallow pores.
[0029] The preparation method is as follows:
[0030] A, the nickel nitrate quality is 46.5 grams of nickel nitrate solution impregnated in 100 grams of ZSM-5, stirred at 75 ℃ for 24 hours;
[0031] B. Then dry at about 120°C for 3.5 hours;
[0032] C. Calcining the obtained step B at a high temperature at about 550° C. for 3.5 hours;
[0033] D. Naturally cool the obtained product in step C to 15°C to 25°C.
[0034] The prepared catalyst is crushed to 20-40 mesh and used for SCR to catalyze the reduction of NOx to N2, and the conversion rate of NOx reaches 98% at 240°C-400°C.
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