Low-carbon olefine oligomerization catalyst and preparation method thereof
A low-carbon olefin and catalyst technology, which is applied in the field of low-carbon olefin superimposed catalyst and its preparation field, can solve the problems of high temperature resistance of resin catalyst, easy falling off of sulfonic acid group, poor catalytic activity, etc., and achieves good stability and high performance. Catalytic activity, the effect of improving stability
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Embodiment 1
[0031] 1). Suspension polymerization:
[0032] Step 1) Preparation of water phase:
[0033] In parts by weight, add 100 parts of water, 0.5 parts of polyvinyl alcohol, and 2 parts of inorganic dispersants into the reactor, and stir evenly;
[0034] Step 2) Preparation of oil phase:
[0035] In parts by weight, 100 parts of styrene and 10 parts of divinylbenzene monomers are added with N-vinylpyrrolidone accounting for 3% of the total monomers and trifluorobenzene accounting for 1% of the total monomers. Ethylene participates in the polymerization, then add 2 parts of peroxide initiator, 35 parts of porogen, and stir evenly;
[0036] Step 3) Suspension Polymerization:
[0037] Add the oil phase solution prepared in step 2) to the reaction kettle with the prepared water phase in step 1), stir, then react at 70°C for 16 hours, discharge after the reaction, and wash the obtained polymerized white balls to The water is clear, and the porogen is extracted after drying.
[0038]...
Embodiment 2
[0041] In step 2), N-vinylpyrrolidone, which accounts for 1% of the total amount of monomers, is added, and the other steps are exactly the same as in Example 1, and the sample number is KR02.
Embodiment 3
[0043] In step 2), N-vinylpyrrolidone, which accounts for 5% of the total amount of monomers, is added, and the other steps are exactly the same as in Example 1, and the sample number is KR03.
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