江西农业学报
江西農業學報
강서농업학보
ACTA AGRICULTURAE JIANGXI
2015年
5期
71-74
,共4页
吴恒%吴雨松%殷沛沛%刘劲芸%唐杰%阴耕云
吳恆%吳雨鬆%慇沛沛%劉勁蕓%唐傑%陰耕雲
오항%오우송%은패패%류경예%당걸%음경운
西双版纳%小叶杜鹃花%水蒸气蒸馏法%无溶剂微波萃取法%气质联用技术
西雙版納%小葉杜鵑花%水蒸氣蒸餾法%無溶劑微波萃取法%氣質聯用技術
서쌍판납%소협두견화%수증기증류법%무용제미파췌취법%기질련용기술
Xishuangbanna%Rhododendron parvifolium%Steam distillation%Solvent-free microwave extraction%GC/MS
分别采用水蒸气蒸馏萃取法( SD)和无溶剂微波萃取法( SFME)对西双版纳小叶杜鹃花的挥发油进行了提取,结合气相色谱法-质谱联用技术对其挥发性成分进行了分析,结果表明:2种方法提取的挥发油在得率、品质和组成成分上存在较大差异,法精油得率为1.12%,香气与样品差异较大,分离鉴定到58个组分;SFME法精油得率为1.32%,香气与样品更接近,分离鉴定到67个组分。 SD、SFME法所提取的挥发油主要化学成分均为萜类化合物及其含氧衍生物,其中蒎烯含量最高,分别占精油总量的22.58%和26.08%,其次为(-)-β-波旁烯、大根香叶烯D和(-)-斯巴醇等。
分彆採用水蒸氣蒸餾萃取法( SD)和無溶劑微波萃取法( SFME)對西雙版納小葉杜鵑花的揮髮油進行瞭提取,結閤氣相色譜法-質譜聯用技術對其揮髮性成分進行瞭分析,結果錶明:2種方法提取的揮髮油在得率、品質和組成成分上存在較大差異,法精油得率為1.12%,香氣與樣品差異較大,分離鑒定到58箇組分;SFME法精油得率為1.32%,香氣與樣品更接近,分離鑒定到67箇組分。 SD、SFME法所提取的揮髮油主要化學成分均為萜類化閤物及其含氧衍生物,其中蒎烯含量最高,分彆佔精油總量的22.58%和26.08%,其次為(-)-β-波徬烯、大根香葉烯D和(-)-斯巴醇等。
분별채용수증기증류췌취법( SD)화무용제미파췌취법( SFME)대서쌍판납소협두견화적휘발유진행료제취,결합기상색보법-질보련용기술대기휘발성성분진행료분석,결과표명:2충방법제취적휘발유재득솔、품질화조성성분상존재교대차이,법정유득솔위1.12%,향기여양품차이교대,분리감정도58개조분;SFME법정유득솔위1.32%,향기여양품경접근,분리감정도67개조분。 SD、SFME법소제취적휘발유주요화학성분균위첩류화합물급기함양연생물,기중파희함량최고,분별점정유총량적22.58%화26.08%,기차위(-)-β-파방희、대근향협희D화(-)-사파순등。
By using steam distillation ( SD) method and solvent-free microwave extraction ( SFME) method respectively, the volatile oil in Rhododendron parvifolium cultivated in Xishuangbanna was extracted, and then its volatile chemical components were separated and identified by GC/MS technology.The results showed that the yield, quality and composition of volatile oil extracted by the above two methods were greatly different.The yield of essential oil extracted by SD method was 1.12%, its fragrance was obvi-ously different from that of original samples, and 58 components were separated and identified.The yield of essential oil extracted by SFME method was 1.32%, its fragrance was more close to that of original samples, and 67 components were separated and identi-fied.But the main chemical components of volatile oil extracted by SD and SFME methods all were terpenoids and their oxygen-con-taining derivatives.Among them, pinene content was the highest, accounting for 22.58%and 26.08%of total essential oil respec-tively;followed by the content of (-)-β-Bourbonene, germacrene D, (-)-spathulenol and so on.