Preparation method of boron-containing hydrogenation and demetalization catalyst
A technology for hydrodemetallization and catalyst, which can be used in metal/metal oxide/metal hydroxide catalysts, chemical instruments and methods, physical/chemical process catalysts, etc., and can solve the problems of low utilization rate of macropores
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Embodiment 1
[0034]Take 55g of industrial ammonium heptamolybdate, put it in ammonia water, stir until there is no insoluble matter, then add 25g of industrial basic nickel carbonate, stir until there is no insoluble matter, and make MoO 3 10 g / 100 ml, NiO1.2 g / 100 ml molybdenum-nickel-ammonia active metal salt solution. The immersion solution with different concentrations can be prepared by adjusting the addition amount of ammonium heptamolybdate and basic nickel carbonate according to the needs.
[0035] Weigh the carbon black powder I11.4 with a particle size of 800 mesh (the particles can pass through the 800 mesh sieve but not the 1000 mesh sieve) and put it in the spray rolling pot. The carbon black powder in the spray dipping contains molybdenum oxide 0.6 gram, the active metal impregnating solution 3.4ml of nickel oxide 0.4 gram, then continue to spray distilled water and make carbon black powder adsorption saturation, the carbon black powder after impregnating is dried 3 hours in ...
Embodiment 2
[0041] With embodiment 1, just carbon black powder I weight is 14.3 grams, and particle diameter is 600 orders (particle can pass through 600 mesh sieves but cannot pass through 800 mesh sieves), contains molybdenum oxide 0.8 gram, nickel oxide in the active component I 0.5 grams, the active ingredient impregnating liquid dosage is 7.2ml. Boron-containing solution I contains 0.6 grams of boron oxide, the amount of boric acid solution is 7.2 ml, the weight of carbon black powder II is 5.7 grams, and the particle size is 400 mesh (the particles can pass through the 400-mesh sieve but not the 500-mesh sieve), Active component II contains 0.6 g of molybdenum oxide and 0.2 g of nickel oxide, and the amount of active component impregnating solution is 1.2 ml. The boron-containing solution II contains 0.2 grams of boron oxide, the amount of boric acid solution is 1.7 ml, and the content of urea in the solution is 7.5 grams. The add-on of polyethylene glycol solution is 43 grams, and...
Embodiment 3
[0043] With embodiment 1, just carbon black powder I weight is 7.2 grams, and particle diameter is 1000 orders (particle can pass through 1000 mesh sieve holes but cannot pass through 1340 mesh sieve holes), contains molybdenum oxide 0.7 gram, nickel oxide in the active component I 0.3 grams, the active ingredient impregnating liquid dosage is 2.9ml. Boron-containing solution I contains 0.4 grams of boron oxide, the amount of boric acid solution is 2.9 ml, the weight of carbon black powder II is 7.2 grams, and the particle size is 500 mesh (the particles can pass through the 500-mesh sieve but not the 600-mesh sieve), The active component II contains 0.4 grams of molybdenum oxide and 0.3 grams of nickel oxide, and the amount of active component impregnation solution is 2.9 ml. Boron-containing solution II contains 0.3 grams of boron oxide, the amount of boric acid solution is 2.9 ml, and the content of urea in the solution is 11.5 grams. The addition amount of polyethylene gl...
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