气相色谱-质谱与嗅觉测量法联用分析橙油中致香物质
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TQ651. 2

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上海烟草集团有限责任公司卷烟烟气重点实验室开放项目


Identification of aromatic compounds in orange oil with gas chromatography-mass spectrometry/olfactometry
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    摘要:

    本文采用气相色谱-质谱与嗅觉测量法 (gas chromatography-mass spectrometry/olfactometry, GC-MS/O) 联用的分析方法,对橙油的致香物质进行了分析与鉴别。GC-MS检测到35种挥发性物质,其中含量较高的化合物为柠檬烯(80.79%)、芳樟醇(3.85%)、癸醛(2.90%)、β-月桂烯(1.94%)、α-蒎烯(0.82%)、辛醛(0.71%)等。而GC-O分析到的具有香气的化合物为α-蒎烯、辛醛、柠檬烯、芳樟醇、α-松油醇、癸醛、肉豆蔻醛、(E,E)-2,4-癸二烯醛及一种具有花香、甜橘香的未知物质。进一步采用强度法与稀释法相结合鉴别橙油关键致香物质,结果表明α-松油醇和未知物质具有最大的香气强度和稀释因子(FD因子),即二者对橙油整体香气贡献最大。采用GC-MS/O联用技术可以有效筛选出精油中的香味活性物质,而强度法与稀释法结合又可快速、准确、全面的分析样品中关键致香物质。

    Abstract:

    Gas chromatography with simultaneous mass spectrometry and olfactometry(GC-MS/O) was used to determine the aroma compounds of orange oil. Totally, 35 volatile compounds were detected by GC-MS, mainly including limonene(80.79%), linalool(3.85%), decanal(2.90%), β-myrcene(1.94%), α-pinene(0.82%), octanal(0.71%). A total of 8 aroma-active compounds have been perceived, which were α-pinene, octanal, limonene, linalool, α-terpineol, decanal, tetradecanal, (E, E)-2, 4-decadienal and one unknown compound. The combination of direct intensity and aroma extract dilution analysis (AEDA) was employed further, which demonstrated that α-terpineol and the unknown compound both having biggest FD factor and maximum aroma intensity contribute the most to the aroma of orange oil. It’s proved that GC-MS/O can filter out aroma compounds effectively, and the combination of direct intensity and aroma extract dilution analysis (AEDA) can help to distinguish the key aroma compounds quickly, accurately and comprehensively.

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引用本文

张士成.气相色谱-质谱与嗅觉测量法联用分析橙油中致香物质[J].精细化工,2012,29(2):

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  • 收稿日期:2011-10-17
  • 最后修改日期:2011-11-06
  • 录用日期:2011-11-21
  • 在线发布日期: 2012-01-09
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