Industrial technology for quickly extracting high-purity chlorogenic acid from sweet potato leaf
A technology of chlorogenic acid and sweet potato leaves, applied in the preparation of carboxylate, the preparation of organic compounds, organic chemistry and other directions, can solve the problems of increased reagent cost, complicated extraction process, increased energy cost, etc., and achieves low equipment requirements and purification. The effect of simple process and low safety hazard
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Embodiment 1
[0032] Add 150kg of hydrochloric acid solution (0.1mol / L HCl, 20% ethanol) to 300kg of fresh sweet potato leaves with a water content of 81%, mince, extract at room temperature for 5 hours, add granular activated carbon for 1 hour after solid-liquid separation, concentrate under reduced pressure and decolorize Afterwards, extract the alcoholic water extract to 1L, and then absorb 50L of the eluate through KLFC-150 macroporous resin. Concentrate the eluate properly to 1L, adjust the pH to 3 and the temperature to 10°C for 24 hours to obtain chlorogenic acid crystals. Chlorogenic acid content is 90.8%.
Embodiment 2
[0034] Add 100kg of hydrochloric acid solution (0.1mol / L HCl, 20% ethanol) to 200kg of fresh sweet potato leaves with a water content of 85%, mince, extract for 3 hours at room temperature, add powdered activated carbon for 30 minutes after solid-liquid separation, concentrate under reduced pressure and decolorize After the alcoholic water extract to 1.5L, then adsorbed by KLFC-150 macroporous resin to obtain 60L of eluate, properly concentrate the eluate to 1L, adjust the pH to 3 and the temperature to 10°C for 24h to obtain chlorogenic acid crystals , the content of chlorogenic acid is 94.3%.
Embodiment 3
[0036] Add 150kg of hydrochloric acid solution (0.1mol / L HCl, 20% ethanol) to 600kg of fresh sweet potato leaves with a water content of 85%, mince, extract for 5 hours at room temperature, add granular activated carbon for 30 minutes after solid-liquid separation, concentrate under reduced pressure and decolorize Afterwards, 20L of alcohol-water extract was obtained, then extracted with ethanol, concentrated under reduced pressure, and the volume of the extract was concentrated to 1L, and then absorbed by KLFC-150 macroporous resin to obtain 40L of eluate, which was properly concentrated to 1L. Adjust the pH to 3 and the temperature to 5°C for 24 hours to obtain chlorogenic acid crystals with a chlorogenic acid content of 99.5%.
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