A kind of catalyst and its preparation method and application
A technology of catalyst and auxiliary agent, applied in the field of ammonia decomposition, can solve the problems of low low-temperature catalytic activity and poor ammonia decomposition effect, and achieve the effects of enhancing interaction, improving ammonia decomposition effect, and improving low-temperature catalytic activity
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Embodiment 1
[0038] This embodiment provides a catalyst, including 0.8 g of nickel as an active component, 1.2 g of cerium oxide as an auxiliary agent, and 8 g of potassium titanate as a carrier.
[0039] The present embodiment provides the preparation method of above-mentioned catalyst, comprise,
[0040] S1. Disperse P25 titanium dioxide in an aqueous potassium hydroxide solution with a concentration of 5 mol / L, and the ratio of potassium hydroxide to titanium dioxide is 5:1 to obtain a suspension.
[0041] S2. The suspension was subjected to a hydrothermal reaction at 120° C. for 36 hours, and the hydrothermal reaction product was calcined at 500° C. for 12 hours to obtain a potassium titanate carrier.
[0042] S3. Dissolving 2.48g of nickel nitrate and 2.27g of cerium nitrate in water to obtain a metal salt mixed solution, wherein the concentration of metal ions is 1mol / L.
[0043] S4. Ultrasonic disperse 8 g of potassium titanate carrier in deionized water, and heat to 50° C. to obta...
Embodiment 2
[0048] This embodiment provides a catalyst, including 1.6 g of nickel as an active component, 0.8 g of lanthanum oxide as an auxiliary agent, and 7.6 g of potassium titanate as a carrier.
[0049] The present embodiment provides the preparation method of above-mentioned catalyst, comprise,
[0050] S1. Disperse P25 titanium dioxide in an aqueous potassium hydroxide solution with a concentration of 7 mol / L, and the ratio of potassium hydroxide to titanium dioxide is 12:1 to obtain a suspension.
[0051] S2. The suspension was subjected to a hydrothermal reaction at 150° C. for 24 hours, and the hydrothermal reaction product was calcined at 650° C. for 7 hours to obtain a potassium titanate carrier.
[0052] S3. Dissolving 35g of nickel chloride and 12.0g of lanthanum chloride in water to obtain a metal salt mixed solution, wherein the concentration of metal ions is 3mol / L.
[0053] S4. Add 76g of potassium titanate carrier into the metal salt mixed solution obtained in S3 for ...
Embodiment 3
[0057] This embodiment provides a catalyst, including 2.4 g of nickel as an active component, 0.5 g of praseodymium oxide as an auxiliary agent, and 7.1 g of potassium titanate as a carrier.
[0058] The present embodiment provides the preparation method of above-mentioned catalyst, comprise,
[0059] S1. Disperse P25 titanium dioxide in an aqueous potassium hydroxide solution with a concentration of 10 mol / L, and the ratio of potassium hydroxide to titanium dioxide is 20:1 to obtain a suspension.
[0060] S2. The suspension is subjected to a hydrothermal reaction at a temperature of 190° C. for 12 hours, and the hydrothermal reaction product is calcined at a temperature of 800° C. for 3 hours to obtain a potassium titanate carrier.
[0061] S3. Dissolving 7.2 g of nickel acetate and 0.96 g of praseodymium acetate in water to obtain a metal salt mixed solution, wherein the concentration of metal ions is 3 mol / L.
[0062] S4. Add 7.1 g of potassium titanate carrier into the me...
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