Alkoxy magnesium catalyst carrier as well as preparation method and application thereof
A technology of alkoxymagnesium catalyst and catalyst carrier, which is applied in the field of catalyst and its preparation, which can solve the problems of low bulk density, damage to particle shape, and complicated operation, and achieve uniform particle shape, avoid violent reaction, and simple operation
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Embodiment 1
[0034] This embodiment provides a magnesium alkoxide catalyst carrier, which is prepared by the following steps:
[0035] In a reactor with a stirrer, install a reflux condenser, thermometer and burette. The upper part of the reflux condenser is connected with a pipe, and the other end of the pipe is connected with an oil seal device for easy observation of H 2 The production. After fully replacing with nitrogen, add 2g of magnesium powder, 10mL of decane, 30mL of absolute ethanol, 0.2g of iodine and 1.5mL of n-butyl titanate to the reactor, and start the activation reaction for 15 minutes until it reaches the reaction temperature of the reaction system , Every time the reaction system no longer emits H 2 After adding the same amount of magnesium powder, alcohol, iodine and decane as the previous addition, adding 5 times in total, after adding the last raw material and the reaction does not produce H 2 After that, the maturation reaction was continued for 2h. After the final rea...
Embodiment 2
[0038] This embodiment provides a magnesium alkoxide catalyst carrier, which is prepared by the following steps:
[0039] The same method as in Example 1 was carried out, except that 1.5 mL of tributyl phosphate was added to the reaction system and reacted at 78°C for 4 hours. After the final reaction, the product was washed, separated and dried to obtain a good Liquid white solid powder.
[0040] The obtained product was characterized using the same method as in Example 1, and the results are shown in Table 1.
Embodiment 3
[0042] This embodiment provides a magnesium alkoxide catalyst carrier, which is prepared by the following steps:
[0043] Carry out the same method as Example 1, except that 1.5 mL of di-n-butyl phthalate is added to the reaction system and reacted at 78°C for 4 hours. After the final reaction, the product is washed, separated and dried. A white solid powder with good fluidity is obtained.
[0044] The obtained product was characterized using the same method as in Example 1, and the results are shown in Table 1.
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