Y-zeolite containing anti-nitrogen hydrocracking catalyst
A hydrocracking and catalyst technology, used in hydrocarbon oil cracking, petroleum industry, etc., can solve the problems of weak nitrogen resistance and low amorphous silicon and aluminum content, achieve strong nitrogen resistance, improve selectivity, and avoid coking. inactive effect
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Embodiment 1
[0017] Take by weighing a kind of macroporous acidic amorphous silica-alumina (specific surface 520m 2 / g, pore volume 1.1ml / g, SiO 2 35wt%, infrared acidity 0.40mmol / g) 77.2g and a Y zeolite 6.1g, after mixing, add 120g (prepared by adding dilute nitric acid peptization to 24.6g pore volume 0.42ml / g small-pore alumina) for bonding After the agent was rolled into a ball, it was placed in an extruder and extruded to shape, dried at 110°C for 10 hours, activated at 500°C for 4 hours to obtain a carrier, impregnated with Mo-Ni co-impregnating solution, and then dried at 110°C for 12 hours. hours, and after activation at 500°C for 3 hours, the catalyst was obtained. The final composition of the catalyst is: 51 wt% of amorphous silica-alumina, 5 wt% of Y zeolite, 14 wt% of aluminum oxide, 7.5 wt% of nickel oxide and 22.5 wt% of tungsten oxide. The specific surface area of the catalyst is 220m 2 / g, pore volume 0.33ml / g.
[0018] Wherein the treatment process of Y zeolite type...
Embodiment 2
[0023] Take by weighing a kind of macroporous acidic amorphous silicon-alumina (specific surface 460m 2 / g, pore volume 1.2ml / g, SiO 2 45wt%, infrared acidity 0.50mmol / g) 85.8g and a Y zeolite 12.1g, after mixing, add 120g (prepared by adding dilute nitric acid peptization to 15.6g pore volume 0.42ml / g small-pore alumina) for bonding After the agent was rolled into a ball, it was placed in an extruder and extruded to shape, dried at 110°C for 10 hours, activated at 500°C for 4 hours to obtain a carrier, impregnated with Mo-Ni co-impregnating solution, and then dried at 110°C for 12 hours. hours, and after activation at 500°C for 3 hours, the catalyst was obtained. The final composition of the catalyst is: 60 wt% of amorphous silica-alumina, 10 wt% of Y zeolite, 10 wt% of aluminum oxide, 5.5 wt% of nickel oxide and 14.5 wt% of tungsten oxide. The specific surface area of the catalyst is 255m 2 / g, pore volume 0.41ml / g.
[0024] Wherein the treatment process of Y zeolite t...
Embodiment 3
[0027] According to the method in Example 2, the dosage of each component was adjusted, and the final catalyst composition was 72 wt% of amorphous silica-alumina, 3 wt% of Y zeolite, 5 wt% of alumina, 5.5 wt% of nickel oxide, and 14.5 wt% of tungsten oxide. Others are with embodiment 2.
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