Process for preparing epsilon-hexanolactam by catalyzing cyclohexanone-oxime rearranging
A technology of caprolactam and cyclohexanone oxime, which is applied in the field of catalytic cyclohexanone oxime rearrangement to prepare ε-caprolactam, can solve the problems of acidic wastewater polluting the environment, serious equipment corrosion, low value-added ammonium sulfate, etc., and achieves strong industrial operability. performance, reducing production costs, and simplifying the reaction system
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Embodiment 1
[0024] Take 15mmol of caprolactam fluoroboric acid ionic liquid, put it in a 100ml round bottom flask, add 5mmol of cyclohexanone oxime, gradually raise the temperature to 50°C under stirring and keep for 3 hours, cool the reactant to room temperature to obtain a homogeneous liquid mixture, take 1ml of it and add 6ml Acetone, fully mixed, chromatographic analysis, the conversion rate is 13%, the selectivity of the product ε-caprolactam is 65%, and the by-product is cyclohexanone.
Embodiment 2
[0026] Take 20mmol of caprolactam fluoroboric acid ionic liquid, put it in a 100ml round bottom flask, add 5mmol of cyclohexanone oxime, gradually raise the temperature to 60°C under stirring and keep for 3 hours, cool the reactant to room temperature to obtain a homogeneous liquid mixture, take 1ml of it and add 6ml Acetone, mixed well, analyzed by gas chromatography, the conversion rate was 61%, and the selectivity of the product ε-caprolactam was 81%.
Embodiment 3
[0028] Take 10mmol of caprolactam fluoroboric acid ionic liquid, put it in a 100ml round bottom flask, add 5mmol of cyclohexanone oxime, gradually raise the temperature to 90°C under stirring and keep for 6 hours, cool the reactant to room temperature to obtain a homogeneous liquid mixture, take 1ml of it and add 6ml Acetone, mixed well, analyzed by gas chromatography, the conversion rate was 90%, and the selectivity was 84%.
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