Method for chemically removing trace cyclopentadiene from piperylene
A technology for cyclopentadiene and piperylene, which is applied in the field of chemically removing trace cyclopentadiene in piperylene, can solve the problem of complicated filtering and precipitation process, affecting material transfer, and generation of waste residue and waste liquid. It can solve the problems of large amount and other problems, so as to achieve the effect of simple distillation and purification process, less environmental pollution and simple process.
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Embodiment 1
[0024] At room temperature, add 20 g of n-butanol to 4 g of potassium hydroxide and stir for 5 minutes to obtain solution A.
[0025] 34 g of piperylene and 45 g of cyclohexanone were added to the solution A and stirred for 72 hours to obtain a mixed solution B1. At 75°C, the solution B1 was subjected to atmospheric distillation to obtain 30 g of the effluent C1 and the distillate D1 in the bottle. The cyclopentadiene content in the effluent C was analyzed by chromatography to be below 10 ppm.
[0026] Add 30 g of piperylene to the distillate D1 in the bottle and stir for 98 hours to obtain a mixed solution B2. At 75° C., solution B2 was subjected to atmospheric distillation to obtain 29 g of effluent C2 and bottle distillate D2. The cyclopentadiene content in effluent C2 was analyzed by chromatography to be below 10 ppm.
[0027] Add 29 g of piperylene to the distillate D2 in the bottle and stir for 72 hours to obtain a mixed solution B3. At 75° C., solution B3 was subjected to at...
Embodiment 2
[0029] At room temperature, 80 g of n-butanol was added to 4 g of potassium hydroxide and stirred for 5 minutes to obtain solution A.
[0030] 34 g of piperylene and 90 g of cyclohexanone were added to the solution A and stirred for 72 hours to obtain a mixed solution B. At 60° C., solution B was subjected to atmospheric distillation to obtain 29 g of effluent C1 and bottle distillate D. The content of cyclopentadiene in effluent C was analyzed by chromatography to be below 10 ppm.
Embodiment 3
[0032] At room temperature, 80 g of n-butanol was added to 4 g of potassium hydroxide and stirred for 5 minutes to obtain solution A.
[0033] 34 g of piperylene and 75 g of cyclohexanone were added to solution A and stirred for 72 hours to obtain mixed solution B. At 70°C, the solution B was subjected to atmospheric distillation to obtain 30 g of the effluent C1 and the distillate D in the bottle. The content of cyclopentadiene in the effluent C was analyzed by chromatography to be below 10 ppm.
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