1. 中国热带农业科学院农产品加工研究所
2. 农业部热带作物产品加工重点开放实验室
扫 描 看 全 文
袁源, 周伟, 付云飞, 等. 气相色谱-质谱联用法结合保留指数对高良姜挥发油成分的分析[J]. 分析测试学报, 2016,35(6):692-697.
Analysis of Volatile Oils in Rhizoma Alpiniae Officinarum by GC-MS and Retention Index[J]. 2016,35(6):692-697.
采用气相色谱-质谱联用(GC-MS)法结合保留指数(RI)对高良姜水蒸气蒸馏法(SD)、超声波辅助溶剂提取法(UAE)和亚临界流体萃取法(SFE)所制备的挥发油进行分析,分别鉴定出51,46和60个挥发性组分,并通过峰面积归一化法确定各组分的相对含量。结果表明,高良姜挥发油的指标性成分1,8-桉叶素含量的大小顺序为SD法≈SFE法>UAE法,UAE法虽耗时少、能耗低,但由于所用有机溶剂难去除,所得挥发油品质较差。SFE法可得到部分SD法无法得到的化合物,如2-羟基-1,8-桉叶素、二苯基庚烷类等。另外β-石竹烯、α-石竹烯、α-法尼烯、γ-杜松烯等高沸点组分比例,SFE法所得高于另两种方法;α-蒎烯、莰烯、β-蒎烯、柠檬烯、樟脑和α-松油醇等低沸点组分比例,SD法所得最高。同一批药材不同提取方法所得的挥发油成分大部分相似,但部分成分与组分比例因不同提取方法的原理存在差异,实际生产中可根据功效需求选择不同提取方法加以开发利用。
A gas chromatography-mass spectrometry(GC-MS) combined with retention index(RI) method was developed for the analysis of volatile oils in Rhizoma Alpiniae Officinarum extracted by steam distillation(SD),ultrasonic assisted solvent extraction(UAE) and subcritical fluid extraction(SFE).51,46 and 60 volatile components in the oils extracted by the three above-mentioned methods were identified,respectively.Meanwhile,each of them was quantified by area normalization method.The results indicated that the content of the index constituent,i.e.,1,8-cineole,the content by SD was similar to that by SFE,and higher than that by UAE.Although UAE was time-saving and less energy consumption,the oil quality was poorer due to the use of organic solvents hard to remove.In addition,some constituents could be gained by SFE but not by SD,such as 2-hydroxycineole,diarylheptanoids and etc.On one hand,the relative contents of high boiling components obtained by SFE,like β-caryophyllene,α-caryophyllene,α-farnesene and γ-cadinene,were higher than the others.On another hand,the relative contents of low boiling components obtained by SD,like α-pinene,camphene,β-pinene,limonene,camphor and α-terpineol,were the highest of three.In conclusion,volatile oil components by different extraction methods from the same batch of materials were proved broadly similar,but there were some differences in composition and component ratio.Therefore,development and utilization of different extraction methods must be selected according to the functional requirements of products.
挥发油气相色谱-质谱联用(GC-MS)水蒸气蒸馏法超声波辅助溶剂提取法亚临界流体萃取法
volatile oilgas chromatography-mass spectrometry(GC-MS)steam distillationultrasonic assisted solvent extractionsubcritical fluid extraction
0
浏览量
1015
下载量
9
CSCD
关联资源
相关文章
相关作者
相关机构