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神秘果种子多酚大孔树脂纯化工艺研究
引用本文:马艺丹,刘红,马思聪,闫瑞昕,廖小伟. 神秘果种子多酚大孔树脂纯化工艺研究[J]. 食品与机械, 2016, 32(2): 139-144
作者姓名:马艺丹  刘红  马思聪  闫瑞昕  廖小伟
作者单位:海南师范大学化学与化工学院,海南 海口 571158;海南师范大学化学与化工学院,海南 海口 571158; 热带特色药食同源植物研究与开发重点实验室,海南 海口 571127
基金项目:国家自然科学基金资助项目(编号:2166009);海南省社会发展专项(编号:2015SF11);海口市应用技术研究与开发项目(编号:2014-90);海南省省级创新训练项目(编号:2013116580)
摘    要:分别采用6种大孔树脂(AB-8、D101、HPD-500、S-8、DM130、X-5)纯化神秘果种子多酚,以吸附量、吸附率、解吸量、解吸率为评定参数,优选出X-5为最佳树脂。研究其吸附等温线,发现其与Langmuir等温线拟合良好。静态吸附与解吸结果表明:最佳pH 5.8,最佳解吸液为70%乙醇。动态吸附与解吸结果表明:最优样品液浓度为1.2mg/mL,吸附液体积为100mL,解吸液体积为50mL,吸附流速为1.0mg/mL,解吸流速为1.5mg/mL。研究结果表明:经X-5纯化后的神秘果种子多酚含量提高了2倍,T-AOC测定总抗氧化能力提高了2.5倍。说明该工艺适用于神秘果种子多酚的纯化。

关 键 词:神秘果;多酚;纯化;抗氧化活性;大孔树脂
收稿时间:2015-11-28

Purification of polyphenols from Synsepalum dulcificum seed with macroporous resins
MAYidan,LIUHong,MASicong,YANRuixin,LIAOXiaowei. Purification of polyphenols from Synsepalum dulcificum seed with macroporous resins[J]. Food and Machinery, 2016, 32(2): 139-144
Authors:MAYidan  LIUHong  MASicong  YANRuixin  LIAOXiaowei
Affiliation:College of Chemistry and Chemical Engineering, Hainan Normal University, Haikou, Hainan 571158, China;College of Chemistry and Chemical Engineering, Hainan Normal University, Haikou, Hainan 571158, China; Key Laboratory of Research and Development on Topical and Special Medicine and Edible Plant, Haikou, Hainan 571127, China
Abstract:Taking the absorbability and desorption properties as parameters, the purifying conditions of polyphenol from Synsepalum dulcificum seed by macroporous resins, compared with five types of macroporous resins were investigated. The result showed that the X-5 macroporous resins was the best one. Through a nonlinear curve fitting with the Langmuir adsorption models, it was found that the fitting degree of adsorption isotherm and Langmuir function curve was very high. The optimal adsorption process conditions were as followed: pH 5.8, 1.0 mL/min adsorption velocity. Besides, the best desorption conditions were: sample volume 100 mL, desorption velocity of flow 1.5 mL/min, dynamically elute with 50 mL concentration of desorption soluntion 70%. After being separated and purified by resin, the polyphenol content improved about 2 times and total antioxidant capacity significantly improved about 2.5 times. The method can be used for purification of polyphenols from Synsepalum dulcificum seed.
Keywords:Synsepalum dulcificum   polyphenol   purification   antioxidant activity   macroporous resins
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