Start-up method for fluidized bed
A fluidized bed, starting oil technology, applied in the petroleum industry, start-up of hydrotreating operations, hydrocarbon oil cracking, etc., can solve the problems of troublesome reactor start-up, collision loss, dust hazard, blockage of distributor, etc. Drying process, short start-up time, and the effect of avoiding clogging
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preparation example Construction
[0025] The preparation method of catalyst particle can be conventional various suitable methods, as dropping ball (comprising spherical or hemispherical), extruding strip or tabletting etc., can use existing relevant granulation equipment, also can first form bigger block after Obtained by crushing. The waxy substance can be melted and mixed with catalyst particles, and then passed through a granulation device to make catalyst particles of various desired shapes and particle sizes. It is also possible to directly mix the catalyst particles with the wax substance powder and then directly pass through a granulation device to make catalyst particles of required shape and particle size.
[0026] Since the catalyst loading in the ebullating bed reactor is generally 30% to 70% of the effective capacity of the reactor, the catalyst loading requirement can also be met when all catalyst particles are used.
Embodiment 1
[0028] For an ebullated bed reactor with a reactor volume of 4L, the amount of catalyst particles is 2L, and the particle size is 0.2mm. According to the method described in CN200610046937.8, the catalyst is pre-vulcanized outside the device, and the added amount of the vulcanizing agent is 110% of the vulcanizing agent required when all the active metals are converted into vulcanized states. After the pre-sulfurization of the catalyst particles, add 1L of melted Fischer-Tropsch synthetic wax, whose melting point is 100°C, and heat to 110°C. After the two are evenly mixed, pellet catalyst particles with a particle diameter of 3 mm are made by dropping balls (dropping into cooling water at 20° C.). There is no catalyst dust during the catalyst particle filling process. After the reactor was replaced and airtight, diesel oil was fed after the temperature was raised to 90°C, and the Fischer-Tropsch synthetic wax wrapped with the catalyst was replaced at a constant temperature af...
Embodiment 2
[0032] The filling process is the same as in Example 1, except that the active metal in the ebullating bed hydrogenation catalyst is converted into a sulfided state, and then coated and bonded with microcrystalline wax to form catalyst particles with a diameter of 4mm. 80%. After displacement and airtightness, the microcrystalline wax is dissolved with diesel fraction and discharged from the unit. Then introduce vacuum wax oil into the reaction system, directly increase the temperature of the reactor to 320°C at 10-30°C / h, and then gradually replace the raw materials to full load. The total start time is 2.5 days, and the product effect meets the design requirements.
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