Isomerization method of 2-methyl-1-butylene
A technology of isomerization and butene, which is applied in the field of 2-methyl-2-butene content, can solve the problems of increasing the burden of product purification, eliminate abnormal fluctuations in catalyst bed temperature, overcome defects, and improve conversion rate and The effect of increased selectivity
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Embodiment 1~8
[0024] Commercially available HZSM-5 molecular sieve is used, the silicon-aluminum ratio is 20-50, and the specific surface area is 200-500m 2 / g, the average pore diameter is 2-8nm. The molecular sieve is soaked in the prepared alkaline aqueous solution, washed three times with deionized water after soaking, and then dehydrated and dried for use.
[0025] The specific catalyst modification treatment conditions of each embodiment are shown in Table 2.
[0026] Table 2.
[0027]
[0028] 3. Isomerization reaction
Embodiment 9~14
[0030] The catalysts prepared in Examples 1-8 were loaded into the reactor to form a fixed-bed catalyst bed, and the isomerization reaction was carried out. The reactor is a stainless steel tubular reactor of φ25mm×1500mm, and a temperature-controlled jacket of circulating hot water is installed on the outside, and a temperature-measuring platinum resistor is installed on the upper, middle and lower parts of the catalyst bed. The amount of reaction feed is controlled by a feed pump, and the system pressure is regulated by a back pressure valve.
[0031] The reaction raw material crude isopentene passes through the fixed bed according to the set feed amount, and isomerization reaction is carried out according to the set reaction conditions. The reaction conditions of each embodiment are shown in Table 3.
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