Preparation method of hydrorefining catalyst composition
A technology for hydrorefining and catalysts, applied in chemical instruments and methods, metal/metal oxide/metal hydroxide catalysts, physical/chemical process catalysts, etc. It can improve the performance of ultra-deep hydrodesulfurization, high hydrodenitrogenation reaction performance, and reasonable pore structure of the catalyst.
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Embodiment 1
[0038] Dissolve nickel chloride and aluminum chloride solutions in clean water respectively to prepare mixed solution A. The weight concentration of NiO in mixed solution A is 19g / L, Al 2 o 3 The weight concentration is 13g / L. Dissolve ammonium metatungstate, ammonium molybdate and aluminum chloride solution in clean water respectively to prepare mixed solution B, and in mixed solution B, WO 3 The weight concentration is 39g / L, MoO 3 The weight concentration is 16g / L, Al 2 o 3 The weight concentration is 13g / L. The temperature of the solution in reaction tank 1 was raised to 40°C, and ammonia water with a concentration of 25wt% was added to solution A until a dark blue solution was formed. 7.8, to obtain the precipitate slurry I containing nickel and aluminum. Add 1000mL of clean water into the reaction tank 2, add ammonia water and solution B with a concentration of 10 wt % into the reaction tank 2 in parallel, keep the gelling temperature at 60°C, and control the pH va...
Embodiment 2
[0040]According to the method of Example 1, according to the component content ratio of catalyst B in Table 1, nickel nitrate, aluminum nitrate, zirconium oxychloride solution is added to the dissolution tank 1, and the working solution A is prepared, and the solution A is added to the dissolution tank 2. Prepare working solution B with aluminum nitrate, ammonium metatungstate and ammonium molybdate. The temperature of the solution in reaction tank 1 was raised to 50°C, and ammonia water with a concentration of 20wt% was added to solution A until a dark blue solution was formed. 8.2, Obtain the precipitate slurry I containing nickel and aluminum. Add 1000mL of clean water into the reaction tank 2, add ammonia water with a concentration of 8 wt% and solution B into the reaction tank 2 in parallel, keep the gelling temperature at 55°C, and control the pH value at 7.6 during the gelling reaction process. The glue time is controlled at 60 minutes to generate slurry II containing ...
Embodiment 3
[0042] According to the method for embodiment 1, press the component content ratio of catalyst C in table 1, add nickel chloride, aluminum chloride, phosphoric acid solution in dissolving tank 1, prepare working solution A, add chlorine in dissolving tank 2 Prepare working solution B with aluminum chloride, ammonium metatungstate and ammonium molybdate. The temperature of the solution in reaction tank 1 was raised to 55°C, and ammonia water with a concentration of 18wt% was added to solution A until a dark blue solution was formed. 8.0, the precipitate slurry I containing nickel and aluminum was obtained. Add 1000mL of clean water into the reaction tank, add ammonia water with a concentration of 12 wt % and solution B into the reaction tank concurrently, keep the gelling temperature at 50°C, and control the pH value at 8.0 during the gelling reaction process, and the gelling time It is controlled within 60 minutes to generate slurry II containing tungsten, molybdenum and alum...
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