广东农业科学
廣東農業科學
엄동농업과학
GUANGDONG AGRICULTURAL SCIENCES
2009年
12期
129-132,141
,共5页
高瑞英%党志%傅中%张秀宇%邹颖楠
高瑞英%黨誌%傅中%張秀宇%鄒穎楠
고서영%당지%부중%장수우%추영남
当归%阿魏酸%超临界CO_2萃取%GC-MS
噹歸%阿魏痠%超臨界CO_2萃取%GC-MS
당귀%아위산%초림계CO_2췌취%GC-MS
Angelica sinensis (Oliv.) Diels%ferulic acid%supercritical CO_2 extraction%GC-MS
考察超临界CO_2萃取当归中阿魏酸的最佳工艺条件、有效物质定量方法及萃取物组成.采用正交试验法,使用乙醇为夹带剂,以收膏率和提取物中阿魏酸含量为目标函数,对药材粒度、夹带剂(乙醇)浓度、萃取压力、萃取温度等当归超临界萃取工艺条件进行研究,GC-MS分析和比较夹带剂对萃取效果的影响.结果优选出最佳超临界萃取条件是:药材粒度0.30~0.85 mm、夹带剂(乙醇)浓度80%、萃取压力35 Mpa、萃取温度60℃-50℃-45℃;纯CO_2超临界萃取物鉴定出 62个组分,使用夹带剂的超临界萃取物鉴定出83个组分,两者有54个相同组分;优选超临界萃取工艺所得的挥发油及阿魏酸提取量较高,使用夹带剂有利于阿魏酸等极性物质的萃取.
攷察超臨界CO_2萃取噹歸中阿魏痠的最佳工藝條件、有效物質定量方法及萃取物組成.採用正交試驗法,使用乙醇為夾帶劑,以收膏率和提取物中阿魏痠含量為目標函數,對藥材粒度、夾帶劑(乙醇)濃度、萃取壓力、萃取溫度等噹歸超臨界萃取工藝條件進行研究,GC-MS分析和比較夾帶劑對萃取效果的影響.結果優選齣最佳超臨界萃取條件是:藥材粒度0.30~0.85 mm、夾帶劑(乙醇)濃度80%、萃取壓力35 Mpa、萃取溫度60℃-50℃-45℃;純CO_2超臨界萃取物鑒定齣 62箇組分,使用夾帶劑的超臨界萃取物鑒定齣83箇組分,兩者有54箇相同組分;優選超臨界萃取工藝所得的揮髮油及阿魏痠提取量較高,使用夾帶劑有利于阿魏痠等極性物質的萃取.
고찰초림계CO_2췌취당귀중아위산적최가공예조건、유효물질정량방법급췌취물조성.채용정교시험법,사용을순위협대제,이수고솔화제취물중아위산함량위목표함수,대약재립도、협대제(을순)농도、췌취압력、췌취온도등당귀초림계췌취공예조건진행연구,GC-MS분석화비교협대제대췌취효과적영향.결과우선출최가초림계췌취조건시:약재립도0.30~0.85 mm、협대제(을순)농도80%、췌취압력35 Mpa、췌취온도60℃-50℃-45℃;순CO_2초림계췌취물감정출 62개조분,사용협대제적초림계췌취물감정출83개조분,량자유54개상동조분;우선초림계췌취공예소득적휘발유급아위산제취량교고,사용협대제유리우아위산등겁성물질적췌취.
The supercritical CO_2 extraction-process of ferulic acid from Angelica were optimized in this study, and the components of extracts were analyzed by Gas Chromatography mass spectrometry (GC-MS). The yield of volatile oil and ferulic acid was regarded as the markers and the content of ferulic acid was determined by HPLC. The extraction processing conditions were optimized by orthogonal test. The extraction effects were compared by GC-MS analysis on co-solvent were employed or not. The optimized extraction technique was: the particle size was between 0.30~0.85 ram, the extraction pressure was 35 Mpa, and the program of extraction temperature was 60℃-50℃-45℃, 80% C_2H_5OH as entrainer. Sixty-two components were identified in the pure CO_2 extracts, eithty three components in SFE-CO_2 extracts, and fifty-four components in both of them. The optimal process feasible with the advantages of high production of volatile oil and ferulic acid. The employ of co-solvent can increase the content of ferulic acid in the extracts.