Preparation method of miglitol
A miglitol and reaction technology, applied in the field of miglitol preparation, can solve the problems of complicated operation, low product yield and purity, and achieve the effects of simple operation steps, high product purity and mild reaction conditions
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Embodiment 1
[0032] In the autoclave, SM-1 (10.00g, 44.80mmol), Pd / C (0.5g), and acetic acid (5.38g, 89.6mmol) were added to the tetrahydrofuran / purified water system (V: 四氢呋喃 :V: 纯化水 =1:2, 500mL), stirring, temperature control 35 ~ 40 ° C, pressure control at 6 ± 0.5Mpa reaction 6h, the reaction is completed, the reaction solution is cooled to room temperature, and the solid concentrated under reduced pressure is filtered. The obtained solid was dissolved completely by adding ethanol (50 mL), and crystallized by adding toluene (100 mL). After the crystallization was completed, it was filtered and dried under reduced pressure to obtain miglitol with a yield of 97.5% and a purity of 99.87%.
Embodiment 2
[0034] In the autoclave, SM-1 (10.00g, 44.80mmol), Pd / C (0.8g), and acetic acid (5.92g, 98.56mmol) were added to the tetrahydrofuran / purified water system (V: 四氢呋喃 :V: 纯化水 =1:2, 500mL), stirring, temperature control 35 ~ 40 ° C, pressure control at 6 ± 0.5Mpa reaction 6h, the reaction is completed, the reaction solution is cooled to room temperature, and the solid concentrated under reduced pressure is filtered. The obtained solid was dissolved completely by adding ethanol (50 mL), and crystallized by adding toluene (100 mL). After the crystallization was completed, it was filtered and dried under reduced pressure to obtain miglitol with a yield of 95.6% and a purity of 99.97%.
Embodiment 3
[0036] In the autoclave, SM-1 (10.00g, 44.80mmol), Pd / C (0.2g), and acetic acid (4.84g, 80.60mmol) were added to the tetrahydrofuran / purified water system (V: 四氢呋喃 :V: 纯化水 =1:2, 500mL), stirring, temperature control 35 ~ 40 ° C, pressure control at 6 ± 0.5Mpa reaction 6h, the reaction is completed, the reaction solution is cooled to room temperature, and the solid concentrated under reduced pressure is filtered. The obtained solid was dissolved completely by adding ethanol (50 mL), and crystallized by adding toluene (100 mL). After the crystallization was completed, it was filtered and dried under reduced pressure to obtain miglitol with a yield of 95.5% and a purity of 99.85%.
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