Perovskite type catalyst prepared by sol-gel weak oxidation calcination and method
A perovskite, sol-gel technology, applied in physical/chemical process catalysts, metal/metal oxide/metal hydroxide catalysts, chemical instruments and methods, etc., can solve the problems of catalyst performance degradation and difficult maintenance. , to achieve the effect of mild and easy control of reaction conditions, less damage to the environment and equipment, and easy control of reaction conditions
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Embodiment 1
[0017] Use lanthanum nitrate, strontium acetate hemihydrate, cobalt nitrate hexahydrate, manganese acetate tetrahydrate, EDTA, and citric acid as raw materials. The molar ratio of raw materials is 0.5:0.5:0.8:0.2:2:1. Adjust the pH of the solution to 6-7 with 0.3% ammonia water or urea to obtain a transparent sol, evaporate the water in a water bath to form a gel, and dry it at 250°C for 5 hours. The xerogel was calcined at 950°C for 5 hours under weak oxidation conditions, and ground into powder after cooling to obtain (La 0.5 Sr 0.5 )(Co 0.8 mn 0.2 )O 3-λ catalyst. The performance parameters of the prepared catalysts are listed in Table 1. figure 1 X-ray diffraction pattern of the prepared catalyst.
Embodiment 2
[0019] Use lanthanum nitrate, strontium acetate hemihydrate, cobalt nitrate hexahydrate, manganese acetate tetrahydrate, EDTA, and citric acid as raw materials. The molar ratio of raw materials is 0.5:0.5:0.8:0.2:2:1. Adjust the pH of the solution to 6-7 with 0.3% ammonia water or urea to obtain a transparent sol, evaporate the water in a water bath to form a gel, and dry it at 250°C for 5 hours. The xerogel was calcined at 900°C for 5 hours under weak oxidation, and after cooling, it was ground into powder to obtain (La 0.5 Sr 0.5 )(Co 0.8 mn 0.2 )O 3-λ catalyst. The performance parameters of the prepared catalysts are listed in Table 1.
Embodiment 3
[0021] Use lanthanum nitrate, strontium acetate hemihydrate, cobalt nitrate hexahydrate, manganese acetate tetrahydrate, EDTA, and citric acid as raw materials. The molar ratio of raw materials is 0.5:0.5:0.8:0.2:2:1. Adjust the pH of the solution to 6-7 with 0.3% ammonia water or urea to obtain a transparent sol, heat to evaporate water to form a gel, and then dry at 250°C. The xerogel was calcined at 1000°C for 5 hours under weak oxidation, and after cooling, it was ground into powder to obtain (La 0.5 Sr 0.5 )(Co 0.8 mn 0.2 )O 3-λ catalyst. The performance parameters of the prepared catalysts are listed in Table 1.
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