Spouted fluidized bed-fluidized bed composite reactor and polymer preparation method
A spouted fluidized bed and fluidized bed technology, applied in chemical instruments and methods, chemical/physical processes, etc., can solve problems such as aggravated agglomeration, enhanced interparticle viscous force, reactor shutdown, etc., to achieve enhanced crushing effect , Enhance the effect of exercise activity
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Embodiment 1
[0039] use as figure 1 The shown spouted fluidized bed-fluidized bed composite reactor is used to prepare olefin polymers, and the recycle gas flows out from the gas outlet 8 at the top of the reactor, and the entrained fine powder particles are separated by a cyclone separator 10, and the olefin polymer is made by a compressor 11. The circulating gas has a sufficient pressure head, and then the circulating gas is cooled by the heat exchanger 12, and the gas-liquid mixed stream at the outlet of the cooler is divided into two parts, the liquid phase stream and the gas phase stream, through the gas-liquid separator 13, and the liquid phase stream The strand enters the reactor bed through the pipe 14 and the liquid injector 15 arranged at the lower position of the spouted fluidized bed, where a G-L-S three-phase fluidized region is formed. The gas phase stream is divided into a jet gas stream and an auxiliary gas stream by a flow divider 16. The jet gas stream enters the inje...
Embodiment 2
[0042] The same spouted fluidized bed polymerization reactor as in Example 1 was used to prepare polyolefin. The superficial fluidization velocity and other conditions of the injection zone and the annulus zone are kept consistent with that of Example 1. It is mainly to change the following conditions to realize the regulation and control of the molecular weight distribution of the product. By adjusting the temperature at the outlet of the heat exchanger, the mass fraction of the liquid phase in the gas-liquid mixture was controlled at 40%. Combined with controlling the amount of catalyst added, the average temperature of the bottom G-L-S three-phase region was maintained at 70°C, while the average temperature of the upper G-S three-phase region was maintained at 86°C. The pressure in the reaction zone was adjusted to 2.1 MPa.
[0043] After the above reaction process was carried out for 6 hours, the polyethylene particles were taken out through the pipeline 2, and the obtai...
Embodiment 3
[0045] The same spouted fluidized bed polymerization reactor as in Example 1 was used to prepare polyolefin. The superficial fluidization velocity and other conditions of the injection zone and the annulus zone are kept consistent with that of Example 1. By adjusting the temperature at the outlet of the heat exchanger, the mass fraction of the liquid phase in the gas-liquid mixture was controlled at 60%. Combined with controlling the amount of catalyst added, the average temperature of the bottom G-L-S three-phase region is maintained at 65°C, while the average temperature of the upper G-S three-phase region is maintained at 90°C. The pressure in the reaction zone was adjusted to 2.1 MPa.
[0046] After the above reaction process was carried out for 6 hours, the polyethylene particles were taken out through the pipeline 2, and the obtained polyethylene particles were analyzed through a gel permeation chromatography column, and the results are shown in Table 1.
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