Liu Xiong, Chen Li-ping, Xia Peng-fei, Liu Feng-lin, Fan Qin, Zhao Lei
Zhong Yao Cai. 2013 Nov;36(11):1853-7.
To optimize the extracting technology from Angelica sinensis by central composite design-response surface methodology.
On the basis of the single factor,independent variables were ethanol concentrations, solvent ratio and ultrasonic time, while dependent variable was the OD value of extraction rates of ferulic acid and liqustilide. A two-order polynomial equation was fitted to estimate the relationship between independent and dependent variables. Response surface method was used to optimize the extracting process.
The optimum extraction conditions for Angelica sinesis were obtained as follows: the extracting solvent was methanol concentrations of 70%, 30 fold solvent, extracting for once and for 40 minutes. The deviation between observed and predicted values was 1.23%.
The result indicates that the central composite design and response surface methodology is simple, convenient and reliable for optimizing the extraction process of Angelica sinesis with higher precision.
采用中心复合设计-响应面法优化当归的提取工艺。
在单因素基础上,自变量为乙醇浓度、溶剂比和超声时间,因变量为阿魏酸和藁本内酯提取率的OD值。拟合二阶多项式方程以估计自变量与因变量之间的关系。采用响应面法优化提取工艺。
获得当归的最佳提取条件如下:提取溶剂为甲醇浓度70%,溶剂倍数30倍,提取1次,提取40分钟。观测值与预测值之间的偏差为1.23%。
结果表明,中心复合设计和响应面法简单、方便、可靠,可用于高精度优化当归的提取工艺。