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Dynamic Microwave-Assisted Extraction of Total Ginsenosides from Ginseng Fibrous Roots 被引量:1

Dynamic Microwave-Assisted Extraction of Total Ginsenosides from Ginseng Fibrous Roots
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摘要 A dynamic microwave-assisted extraction(DMAE) method is established for the extraction of total ginsenosides from ginseng fibrous roots. The extraction process has been simulated and its main affection factors(liquid/solid ratio K of solvent to ginseng powders(V/m), irradiation time, irradiation temperature, extracting solution concentration, flow rate of solvent and microwave power) have been optimized by response surface methodology(RSM). The optimum conditions of extraction are the liquid/solid ratio of 270 m L/g, the extraction temperature of 75 ℃, the extraction time of 35 min, ethanol concentration of 70%(V/V), the solvent flow rate of 1.3 m L/min, and the microwave power of 500 W. The yield of ginsenosides obtained by the proposed DAME method is(15.0±0.7) %, which is well agreement with the yield predicted by the model. Compared with static microwave-assisted extraction, DMAE has a higher extraction yield and can avoid the degradation of ginsenoside. A dynamic microwave-assisted extraction(DMAE) method is established for the extraction of total ginsenosides from ginseng fibrous roots. The extraction process has been simulated and its main affection factors(liquid/solid ratio K of solvent to ginseng powders(V/m), irradiation time, irradiation temperature, extracting solution concentration, flow rate of solvent and microwave power) have been optimized by response surface methodology(RSM). The optimum conditions of extraction are the liquid/solid ratio of 270 m L/g, the extraction temperature of 75 ℃, the extraction time of 35 min, ethanol concentration of 70%(V/V), the solvent flow rate of 1.3 m L/min, and the microwave power of 500 W. The yield of ginsenosides obtained by the proposed DAME method is(15.0±0.7) %, which is well agreement with the yield predicted by the model. Compared with static microwave-assisted extraction, DMAE has a higher extraction yield and can avoid the degradation of ginsenoside.
出处 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2015年第3期247-254,共8页 武汉大学学报(自然科学英文版)
基金 Supported by the National Natural Science Foundation of China(21006075) the Natural Science Foundation of Hubei Province(2014CFA115) the New Century Excellent Talents in University(NCET-11-0966) the Key Project of Chinese Ministry of Education(213024A)
关键词 dynamic microwave-assisted extraction total ginsenosides ginseng fibrous root dynamic microwave-assisted extraction total ginsenosides ginseng fibrous root
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