A kind of hydrogenation catalyst and its preparation method and application
A hydrogenation catalyst and catalyst technology, which is applied in the fields of heavy oil, coal hydrogenation catalysis, and residual oil, can solve the problems of high production cost, uneven reaction, difficult catalyst recovery, etc., to avoid environmental pollution and land waste, and achieve high conversion rate and liquid yield, catalyst cost important effect
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Embodiment 1
[0039] The natural red mud was crushed and ground to 50 μm, and heated and dried at 130° C. to make the water content in the red mud 2.0 wt%. Add the dried red mud powder to the 10% ammonium molybdate aqueous solution to ensure that the ratio of the effective active component iron to molybdenum is 1:150. After stirring, let stand for more than 1 hour to obtain The lower layer precipitates. The precipitation is combined with heating and vacuum drying to reduce the water content to 0.35% by weight to obtain molybdenum-containing red mud powder, which is ground to 50 μm. Finally, activated carbon with a pore size of 35-65 nm and a particle size of 50 μm was added to the red mud powder of molybdenum and mixed uniformly, and the weight ratio of activated carbon to red mud was 0.3:1 to obtain catalyst 1. Under the following basic process parameters of the pilot slurry bed, the catalyst 1 was used to carry out the residual oil slurry bed hydrogenation test on the residual oil: temper...
Embodiment 2
[0041] The natural red mud is crushed and ground to 40μm, and heated and dried at 130°C to make the water content in the red mud less than 2.5wt%. Add the dried red mud powder to a 50% ammonium molybdate aqueous solution to ensure that the ratio of the effective active component iron to molybdenum is 1:200. After stirring, let it stand for more than 1 hour to obtain The lower layer precipitates. The precipitation is combined with heating drying and vacuum drying to reduce the water content to 0.35% by weight to obtain molybdenum-containing red mud powder, which is ground to 10 μm. Finally, activated carbon with a pore diameter of 35-65 nm and a particle size of 70 μm was added to the red mud powder of molybdenum and mixed uniformly, and the weight ratio of the activated carbon to the red mud was 0.3:1 to obtain catalyst 2. Under the following basic process parameters of the pilot slurry bed, the catalyst 2 was used to carry out the residual oil slurry bed hydrogenation test on...
Embodiment 3
[0043] The natural hematite powder is crushed and ground to 30 μm, and heated and dried at 130° C., so that the water content in the hematite powder is less than 2.5 wt%. Add the dried hematite powder to the 40% ammonium molybdate aqueous solution to ensure that the ratio of the effective active component iron to molybdenum is 1:180. After stirring, let it stand for more than 1 hour. The lower layer is obtained. The precipitation is combined with heating drying and vacuum drying to reduce the water content to 0.35% by weight to obtain molybdenum-containing hematite powder, which is ground to 50 μm. Finally, activated carbon with a pore size of 65-90 nm and a particle size of 90 μm is added to the molybdenum-containing hematite powder and mixed uniformly, and the weight ratio of the activated carbon to the red mud is 0.3:1 to obtain a catalyst 3. Under the following basic process parameters of the pilot slurry bed, the catalyst 3 was used to carry out the residual oil slurry be...
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