Hydrodesulfurization catalyst for removing sulfur compounds in medium/low-temperature coal tar and application thereof
A low-temperature coal tar and hydrodesulfurization technology, which is applied in the field of hydrodesulfurization catalysts and coal tar hydrodesulfurization catalysts, can solve the problems of reactor blockage, low cetane number, catalyst deactivation, etc., and achieve good water resistance, Good hydrodenitrogenation performance, high mechanical strength effect
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Embodiment 1
[0021] Weigh 400g of alumina precursor pseudoboehmite, 50g of bentonite, 50g of Hβ molecular sieve and BF 3 25 g and mix well, then add to the above mixture with a pore volume of 0.2-0.4cm 3 100g of pseudo-boehmite / g, 16g of squash gum, 48g of nitric acid, and 440g of distilled water were kneaded in a kneader for 55min, and then put into an extruder to extrude. The formed carrier was dried at 40°C for 4 hours, and then dried at 100°C for 10 hours, then heated to 650°C at a heating rate of 2°C / min, and fired for 8 hours to obtain 627g of the finished carrier. Calculated on a dry basis, alumina accounted for 80% of the total mass of the carrier, and silicon Aluminum acid accounts for 10% of the total mass of the carrier, and Hβ molecular sieve accounts for 10% of the total mass of the carrier.
[0022] Add 297g of ammonium metatungstate, 323g of nickel nitrate, and 289g of ammonium molybdate into 625g of distilled water, stir at 60°C to dissolve completely, then add 83g of phos...
Embodiment 2
[0026] Weigh 800g of alumina precursor pseudoboehmite, 86g of bentonite, 125g of Hβ molecular sieve and BF 3 55g and mix well, then add to the above mixture with a pore volume of 0.2-0.4cm 3 70g of pseudo-boehmite / g, 14g of squash gum, 30g of citric acid, and 923g of distilled water were kneaded in a kneader for 45min, and then put into an extruder to extrude. The formed carrier was dried at 25°C for 5 hours, and then dried at 100°C for 9 hours, then heated to 550°C at a heating rate of 2°C / min, and calcined for 6 hours to obtain 1026g of the finished carrier. Calculated on a dry basis, alumina accounted for 80% of the total mass of the carrier, silicon Aluminum acid accounts for 7% of the total mass of the carrier, and Hβ molecular sieve accounts for 13% of the total mass of the carrier.
[0027] Add 256g of ammonium metatungstate, 224g of nickel carbonate, and 205g of molybdenum trioxide into 600g of distilled water, stir at 40°C to dissolve completely, then add 60g of phos...
Embodiment 3
[0031] Weigh 1000g of alumina precursor pseudoboehmite, 103g of bentonite, 91g of Hβ molecular sieve and BF 3 80g and mix well, then add 0.2-0.4 cm pore volume to the above mixture 3 50g of pseudo-boehmite / g, 12g of squash gum, 28g of oxalic acid, and 858g of distilled water were kneaded in a kneader for 60min, and then put into an extruder to extrude. The formed carrier was dried at 15°C for 6 hours, and then dried at 100°C for 8 hours, then heated to 450°C at a heating rate of 5°C / min, and calcined for 6 hours to obtain 895 g of the finished carrier. Calculated on a dry basis, alumina accounted for 85% of the total mass of the carrier, silicon Aluminum acid accounts for 5% of the total mass of the carrier, and Hβ molecular sieve accounts for 10% of the total mass of the carrier.
[0032] Add 257g of ammonium paratungstate, 241g of nickel citrate, and 152g of molybdenum nitrate into 787g of distilled water, stir at 15°C to dissolve completely, then add 80g of phosphoric acid, ...
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