Slurry reactor nickel-based methanation catalyst prepared according to sediment burning method and application thereof
A methanation catalyst and slurry bed technology, which is applied in the field of nickel-based catalyst preparation, can solve the problems of increased production cost, poor dispersion, and high requirements for the control process, and achieve reduced energy consumption, improved methanation activity, and large specific surface area Effect
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Embodiment 1
[0023] (1) Prepare an aluminum nitrate solution with a solution concentration of 1.0mol / L, an aqueous solution of lanthanum nitrate with a solution concentration of 1.0mol / L, and a urea solution with a solution concentration of 5.0mol / L. Adjust the adding rate of aluminum nitrate aqueous solution to be 58.6mL / min, the adding rate of lanthanum nitrate aqueous solution to be 0.1mL / min, and the adding rate of urea solution to be 50.0mL / min, so that the temperature is 75°C and the stirring rate is 500 rpm in the reactor The precipitation in the medium was complete, and the addition was stopped after 2 h. During this process, the pH value of the solution was monitored with precision pH test paper, and the pH value of the solution was controlled to be 8.0.
[0024] (2) Keep the stirring rate constant, and at a temperature of 60°C, add nickel nitrate aqueous solution with a solution concentration of 1.0mol / L and urea aqueous solution with a solution concentration of 5.0mol / L to the a...
Embodiment 2
[0028] (1) Prepare aluminum nitrate solution with a solution concentration of 1.0mol / L, dysprosium nitrate aqueous solution with a solution concentration of 1.0mol / L and urea solution with a solution concentration of 6.0mol / L. Adjust the adding rate of aluminum nitrate aqueous solution to be 17.1mL / min, the adding rate of dysprosium nitrate aqueous solution to be 0.2mL / min, and the adding rate of urea solution to be 50.0mL / min, so that the temperature is 75°C and the stirring rate is 400 rpm in the reactor The precipitation in the medium was complete, and the addition was stopped after 1 h. During this process, the pH value of the solution was monitored with precision pH test paper, and the pH value of the solution was controlled to be 8.0.
[0029](2) Keep the stirring rate constant, and at a temperature of 40°C, add nickel nitrate aqueous solution with a solution concentration of 0.5mol / L and urea aqueous solution with a solution concentration of 2.0mol / L to the above suspen...
Embodiment 3
[0033] (1) Prepare an aluminum nitrate solution with a solution concentration of 2.0mol / L, an aqueous solution of lanthanum nitrate with a solution concentration of 0.5mol / L, and a urea solution with a solution concentration of 5.0mol / L. Adjust the adding rate of aluminum nitrate aqueous solution to be 21.2mL / min, the adding rate of lanthanum nitrate aqueous solution to be 0.5mL / min, and the adding rate of urea solution to be 50.0mL / min, so that the temperature is 80°C and the stirring rate is 700 revolutions per minute. The precipitation in the vessel was complete, and the addition was stopped after 0.5h. During this process, the pH value of the solution was monitored with precision pH test paper, and the pH value of the solution was controlled to be 10.0.
[0034] (2) Keep the stirring rate constant, and at a temperature of 30°C, add nickel nitrate aqueous solution with a solution concentration of 2.0mol / L and an aqueous urea solution with a solution concentration of 5.0mol / ...
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