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琯溪蜜柚(Citrus Grandis (L.) Osbeck)精油经紫外线照射和空气暴露后醛类成分及其转化的表征

Characterization of the Aldehydes and Their Transformations Induced by UV Irradiation and Air Exposure of White Guanxi Honey Pummelo (Citrus Grandis (L.) Osbeck) Essential Oil.

作者信息

Li Li Jun, Hong Peng, Chen Feng, Sun Hao, Yang Yuan Fan, Yu Xiang, Huang Gao Ling, Wu Li Ming, Ni Hui

机构信息

College of Food and Biology Engineering, Jimei University , Xiamen 361021, China.

Fujian Provincial Key Laboratory of Food Microbiology and Enzyme Engineering , Xiamen 361021, China.

出版信息

J Agric Food Chem. 2016 Jun 22;64(24):5000-10. doi: 10.1021/acs.jafc.6b01369. Epub 2016 Jun 13.

Abstract

Aldehydes are key aroma contributors of citrus essential oils. White Guanxi honey pummelo essential oil (WPEO) was investigated in its aldehyde constituents and their transformations induced by UV irradiation and air exposure by GC-MS, GC-O, and sensory evaluation. Nine aldehydes, i.e., octanal, nonanal, citronellal, decanal, trans-citral, cis-citral, perilla aldehyde, dodecanal, and dodecenal, were detected in WPEO. After treatment, the content of citronellal increased, but the concentrations of other aldehydes decreased. The aliphatic aldehydes were transformed to organic acids. Citral was transformed to neric acid, geranic acid, and cyclocitral. Aldehyde transformation caused a remarkable decrease in the minty, herbaceous, and lemon notes of WPEO. In fresh WPEO, β-myrcene, d-limonene, octanal, decanal, cis-citral, trans-citral, and dodecenal had the highest odor dilution folds. After the treatment, the dilution folds of decanal, cis-citral, trans-citral, and dodecenal decreased dramatically. This result provides information for the production and storage of aldehyde-containing products.

摘要

醛类是柑橘属植物精油中关键的香气成分。采用气相色谱 - 质谱联用仪(GC-MS)、气相色谱 - 嗅觉测量仪(GC-O)和感官评价法,对白关溪蜜柚精油(WPEO)中的醛类成分及其在紫外线照射和空气暴露下的转化情况进行了研究。在WPEO中检测到9种醛类,即辛醛、壬醛、香茅醛、癸醛、反式柠檬醛、顺式柠檬醛、紫苏醛、十二醛和十二碳烯醛。处理后,香茅醛含量增加,但其他醛类的浓度降低。脂肪醛转化为有机酸。柠檬醛转化为橙花酸、香叶酸和环柠檬醛。醛类的转化导致WPEO的薄荷味、草本味和柠檬味显著降低。在新鲜的WPEO中,β-月桂烯、d-柠檬烯、辛醛、癸醛、顺式柠檬醛、反式柠檬醛和十二碳烯醛具有最高的气味稀释倍数。处理后,癸醛、顺式柠檬醛、反式柠檬醛和十二碳烯醛的稀释倍数显著降低。该结果为含醛产品的生产和储存提供了信息。

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