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机构地区:[1]河西学院农业与生物技术学院,甘肃张掖734000 [2]河西学院凯源生物技术开发中心、甘肃省微藻工程技术研究中心,甘肃张掖734000
出 处:《中国酿造》2015年第10期106-110,共5页China Brewing
基 金:河西学院科研创新与应用校长基金项目(No.XZ2014-29);甘肃省中小企业创新基金项目(1047GCCG001)
摘 要:为了分离、纯化锁阳总黄酮,比较了5种大孔树脂的静态吸附过程,筛选出了适合分离锁阳总黄酮的树脂。结果表明,AB-8树脂对锁阳总黄酮有较好的分离纯化效果,其吸附过程可用Langmuir和Freundlich吸附等温式来描述;吸附条件:溶液质量浓度3.9 mg/mL,pH值为5,吸附体积5 BV,流速2 BV/h,温度25℃;洗脱条件:体积分数为60%乙醇洗脱体积5 BV,体积分数为70%乙醇洗脱体积10 BV,流速2 BV/h,锁阳总黄酮纯度由9.83%升高至67.8%,其回收率为84.02%。因此,AB-8大孔树脂较适合分离纯化锁阳总黄酮。In order to isolate and purify the total flavonoids from Cynomorium songaricum, comparing with static adsorption process of 5 kinds of macroporous resins, and the suitable resin was determined. The results showed that AB-8 resin was the optimal due to its highest separation and purification of the total flavonoids from C. songarictun and its adsorption process could be described by the Langmuir and Freundlich isotherms. The optimum adsorption conditions were solution concentration 3.9 mg/ml, pH 5.0, adsorbed volume 5 BV, flow velocity 2 BV/h, temperature 25 ℃. The optimum elution conditions were 60% ethanol 5 BV, 70% ethanol 10 BV, flow velocity 2 BV/h. Under this condition, the content of C. songaricum total flavonoids increased from 9.83% to 67.8%, and the recovery rate was 84.02%. AB-8 resin was suitable for the separation and purification of the total flavonoids from C. songaricum.
分 类 号:S567.9[农业科学—中草药栽培]
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