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响应曲面法优化白木香叶总黄酮提取工艺及其纯化

郑丹 李晓敏 何静 雷建都

北京林业大学学报2017,Vol.39Issue(8):104-110,7.
北京林业大学学报2017,Vol.39Issue(8):104-110,7.DOI:10.13332/j.1000--1522.20160343

响应曲面法优化白木香叶总黄酮提取工艺及其纯化

Optimization of extraction process for total flavonoids from leaves of Aquilaria sinensis by response surface method and purification technology

郑丹 1李晓敏 1何静 1雷建都1

作者信息

  • 1. 北京林业大学材料科学与技术学院
  • 折叠

摘要

Abstract

The leaves of Aquilaria sinensis were extracted by ethanol solution, with rutin as reference substance and nitrate as chromogenic agent, the absorbance of the extract in the 510 nm wave was determined. In the single factor experiment, the effects of ethanol concentration, extraction temperature, solid-liquid ratio and extraction time on the extraction rate of total flavonoids were studied. On the basis of single factor experiment, the optimum conditions were studied by the response surface methodology. The total flavonoids in leaves of Aquilaria sinensis were separated and purified by macroporous adsorption resin. By comparing the saturated adsorption capacity, adsorption rate and desorption rate of three kinds of resins D101, AB-8, and S-8, the resin with the best separation and purification effect was obtained, and the relationship between the adsorption time and the adsorption rate was studied. The results showed that:1) the optimal extraction conditions were 80% ethanol, 65℃, liquid to solid ratio of 20:1 ( mL/g) and 3 hours as extraction time. Under this condition, the yield of total flavonoids was 4. 83%. 2 ) Non-polar and low-polar macroporous adsorption resin were more suitable for the separation and purification of total flavonoids from the leaves of Aquilaria sinensis. 3 ) D101 macroporous adsorptive resin had best adsorption ability. The purity of flavones increased to 2. 8 times.

关键词

曲面响应法/总黄酮/白木香叶/提取/大孔吸附树脂

Key words

response surface method/total flavonoids/Aquilaria sinensis leaf/extraction/macroporous adsorption resin

分类

医药卫生

引用本文复制引用

郑丹,李晓敏,何静,雷建都..响应曲面法优化白木香叶总黄酮提取工艺及其纯化[J].北京林业大学学报,2017,39(8):104-110,7.

基金项目

"948"国家林业局引进项目(2014-4-35). (2014-4-35)

北京林业大学学报

OA北大核心CSCDCSTPCD

1000-1522

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