Preparation method for adhesive-free fluidized bed catalyst
A fluidized bed and catalyst technology, which is applied in the field of preparation of molecular sieve fluidized bed catalysts, can solve the problem of low catalytic activity of fluidized bed catalysts, and achieve the effects of good catalyst activity, good diffusion performance, good diffusion performance and smooth surface
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Embodiment 1
[0025]Weigh 500 grams of kaolin and 2 grams of safflower powder, mix evenly, add 2000 grams of distilled water, shear at high speed with a high-speed shear for 30 minutes, then add 400 grams of ZSM-5 molecular sieve with a silicon-aluminum molecular ratio of 30, and then high-speed shear Cut for 30 minutes, then add 500 grams of aluminum sol containing 20% by weight of alumina, continue high-speed shearing for 30 minutes, then add 1 gram of triammonium citrate, continue high-speed shearing for 30 minutes, and measure the suspension with a laser particle size analyzer The particle size, the average particle size is 2 microns. Spray molding with a spray dryer, the spray molding conditions are: inlet temperature 240°C, outlet temperature 120°C, centrifugal speed 10000 rpm, cyclone pressure difference at the outlet is 0.7KPa, feed rate is 1 kg / hour, and the formed micro Ball Catalyst Precursor I. The catalyst precursor I was calcined by temperature programming at 400° C. for 3 ...
Embodiment 2~10
[0029] According to the method of Example 1, using the ingredients and preparation conditions in Table 1 and Table 3, wherein the silica sol contains 40% by weight of silicon dioxide, the performance of the prepared fluidized bed catalyst is shown in Table 2.
[0030]
[0031]
[0032] table 3
[0033]
Embodiment 11
[0035] Get the method for 200 grams of embodiment 1 to make fluidized bed ZSM-5 catalyst, put into inner diameter and be the fluidized bed reactor of 50 millimeters, adopt the component that Shanghai Gaoqiao petrochemical company produces is C 4 ~C 10 The light oil is used as the raw material (see Table 4 for the physical properties of the raw material), and the activity of the catalyst is evaluated. The reaction temperature range is 680 ° C, the reaction pressure is 0.02 MPa, and the weight space velocity is 1 hour -1 , Water / feedstock oil weight ratio is 1: 1 under evaluation, product distribution is shown in Table 5, obtains ethylene weight yield and is 28%, and propylene weight yield is 22%, and diene weight total yield is 50%.
[0036] Table 4 Light Oil Raw Material Indicators
[0037] project
data
Density(20℃)kg / m 3
704.6
Distillation Range Initial Distillation Range °C
40
Final boiling range °C
160
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