Method for grading catalysts for hydrofining of inferior distillate oil
A hydrofining preparation and hydrofining technology, which is applied in the field of oil refining, can solve the problems of affecting the desulfurization and denitrification effect of the lower catalyst, the decline of catalyst activity, and the shortening of the operation cycle, and achieve high ring-opening and fracture efficiency, moderate surface acidity, and mechanical strong effect
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[0021] Preparation of hydrogenation protecting agent:
[0022] Mix 250g of a macroporous aluminum hydroxide dry rubber powder with 6g of scallop powder, 9g of 66% concentrated nitric acid and 10g of oxalic acid, add deionized water, knead and mix in a kneader, and then extrude into strips through an extruder , to obtain clover strips with a diameter of 3 mm. After drying in an oven at 120°C for 12 hours and calcining in a muffle furnace at 500°C for 4 hours, the carrier ZT-0 was obtained, and its properties are shown in Table 1.
[0023] Take 60mL of ammonia water, add 30g of ammonium metatungstate and 3.5g of basic nickel carbonate, heat and stir, and after it is completely dissolved, set the volume to 100mL to obtain a metal co-immersion solution, and put it aside for later use. Take 120 g of the carrier strips prepared in the previous step in the dipping tank, add the above-mentioned co-impregnation solution, and uniformly soak for 3 hours, then dry the wet strips in an ov...
Embodiment 1
[0034] The reaction is carried out in a 200mL hydrogenation reactor, and the hydrogenation protection agent, hydrofinishing preparation A, and hydrofinishing preparation B are filled sequentially along the flow direction. Fill 40mL, fill 60mL of hydrofinishing preparation B, and fill the rest with inert ceramic balls.
[0035] The raw material oil A used in this evaluation reaction is a low-quality distillate oil provided by a refinery of CNOOC. The raw material oil is a high-sulfur and high-nitrogen naphthenic oil. 12% of coked gasoline and 31% of coked diesel are mixed, and their properties are shown in Table 3. The operating conditions used to evaluate the reaction 1: pressure 8.0MPa, reaction temperature 340 ℃, hydrogen oil volume ratio 600:1, volume space velocity 1.0h -1 .
[0036] The product properties are shown in Table 3. It can be seen from Table 3 that after the hydrorefining reaction of raw material oil A under this process condition, the sulfur content of the ...
Embodiment 2
[0038] The reaction is carried out in a 200mL hydrogenation reactor, and the hydrogenation protection agent, hydrofinishing preparation A, and hydrofinishing preparation B are filled sequentially along the flow direction. Fill 50mL, fill 50mL of hydrofinishing preparation B, and fill the rest with inert ceramic balls.
[0039] Raw material oil A was used as raw material for this evaluation reaction. The operating conditions used in the evaluation reaction 2: pressure 6.5MPa, reaction temperature 340°C, hydrogen-oil volume ratio 400:1, volume space velocity 1.5h -1 .
[0040] The product properties are shown in Table 4. It can be seen from Table 4 that after the hydrorefining reaction of raw material oil A under this process condition, the sulfur content of the separated product diesel oil is 48.2 μg / g (less than 50 μg / g), and the nitrogen content is 79.5 μg / g, which can be seen in this patent The provided catalyst graded packing system achieves the purpose of ultra-deep des...
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