Preparation method of 1-bromoethyl acetate
A technology of bromoethyl acetate and acetyl bromide, applied in the field of preparation of 1-bromoethyl acetate, can solve the problems of difficult reaction control, reduced catalysis, low product purity, etc., and achieves low cost and avoidance requirements Effect
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Embodiment 1
[0040] Add 250mL of acetyl bromide to the reaction flask, add 2.5g of alumina powder (catalyst) while stirring, and cool down to 5°C; after completion, slowly add 10mL of paraldehyde; Heat up to 12°C and continue to stir for 5 hours; after the reaction is complete, remove the solids by filtration; transfer the suction-filtered solution to the reaction flask, add 150ml of dichloromethane under stirring, and continue to maintain the solution temperature at 10°C and stir for 20 minutes; Add 105ml of purified water at 2°C to the reaction bottle, stir and extract for 20 minutes, after completion, let stand to separate, remove the upper aqueous phase to obtain the lower organic phase and transfer it to the reaction bottle; control the inner temperature of the bottle below 25°C, and depressurize Distillation, distilled off fractions, that is, the product 1-bromoethyl acetate. The yield was 79%. Gas chromatography analysis product purity is 90.1%.
Embodiment 2
[0042] Add 250mL of acetyl bromide to the reaction flask, add 2.75g of alumina powder under stirring, and cool down to 8°C; after completion, slowly add 12.5mL of paraldehyde dropwise; The stirring reaction was continued at 15°C for 2 hours.
[0043] After the reaction is complete, remove the solid matter by filtration; transfer the suction-filtered solution to the reaction flask, add 188ml of dichloromethane under stirring, and continue to maintain the solution temperature at 15°C and stir for 20 minutes; add 141ml of purified water at 5°C to the solution, and stir After extraction for 20 minutes, after completion, the layers were separated, and the upper aqueous phase was removed to obtain the lower organic phase, which was then transferred to a reaction flask.
[0044] Then add 141ml of purified water at 5°C to the organic phase in the reaction flask, stir and extract for 20 minutes, leave to stand for stratification, remove the upper phase water phase to obtain the lower p...
Embodiment 3
[0046]Add 250mL of acetyl bromide to the reaction flask, add 3.0g of alumina powder under stirring, and cool down to 10°C; after completion, slowly add 15mL of paraldehyde dropwise; The reaction was continued to stir for 2 hours at °C.
[0047] After the reaction is complete, remove the solid matter by filtration; transfer the suction-filtered solution to the reaction flask, add 200ml of dichloromethane under stirring, and continue to maintain the solution temperature at 18°C and stir for 20 minutes; add 150ml of purified water at 5°C to the solution, and stir After extraction for 20 minutes, after completion, the layers were separated, and the upper aqueous phase was removed to obtain the lower organic phase, which was then transferred to a reaction flask.
[0048] Then add 150ml of purified water at 5°C to the organic phase in the reaction flask, stir and extract for 20 minutes, let stand to separate layers, remove the upper phase water phase to obtain the lower phase orga...
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