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eryngium_foetidum_l [2025/12/01 13:44] andreaseryngium_foetidum_l [2025/12/01 13:45] (aktuell) andreas
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 [Composition of the Leaf and Root Oils of Eryngium foetidum L., Wong, K. C., Feng, M. C., Sam, T. W., Tan, G. L., Journal of Essential Oil Research, Vol.6(4), 1994, 369-374] [Composition of the Leaf and Root Oils of Eryngium foetidum L., Wong, K. C., Feng, M. C., Sam, T. W., Tan, G. L., Journal of Essential Oil Research, Vol.6(4), 1994, 369-374]
  
-{{:e2dodecenal.png}} (E)-2-dodecenal //(citrus metallic waxy aldehydic)//+{{:e2dodecenal.png|(E)-2-dodecenal}}  (E)-2-dodecenal //(citrus metallic waxy aldehydic)//
  
 "The essential oil of coriander leaves (Coriandrum sativum) and wild coriander leaves (Eryngium foetidum) grown in Fiji was obtained by steam distillation. The aroma profiles were characterised using gas chromatography-olfactometry (GCO) and CharmAnalysisTM. The character-impact odorants were identified using comprehensive two-dimensional gas chromatography (GC×GC) combined with time-of-flight mass spectrometry (TOFMS). During GCO analysis, the co-elution of E-2-alkenals and E-2-alken-1-ols resulted in the perception of ‘odour-clusters’... The most abundant compound in E. foetidum was E-2-dodecenal (63.5% TIC), which also contributed the most odour activity (52.9%). Other important odorants were either eugenol or a trimethylbenzaldehyde isomer, β-ionone, Z-4-dodecenal, dodecanal, and E-2-tetradecenal. GC×GC–TOFMS allowed the identification of... 20 compounds not previously reported in the literature for... E. foetidum... In particular, β-ionone was determined to be an important odorant in both samples but could not be identified with GC–qMS." \\ "The essential oil of coriander leaves (Coriandrum sativum) and wild coriander leaves (Eryngium foetidum) grown in Fiji was obtained by steam distillation. The aroma profiles were characterised using gas chromatography-olfactometry (GCO) and CharmAnalysisTM. The character-impact odorants were identified using comprehensive two-dimensional gas chromatography (GC×GC) combined with time-of-flight mass spectrometry (TOFMS). During GCO analysis, the co-elution of E-2-alkenals and E-2-alken-1-ols resulted in the perception of ‘odour-clusters’... The most abundant compound in E. foetidum was E-2-dodecenal (63.5% TIC), which also contributed the most odour activity (52.9%). Other important odorants were either eugenol or a trimethylbenzaldehyde isomer, β-ionone, Z-4-dodecenal, dodecanal, and E-2-tetradecenal. GC×GC–TOFMS allowed the identification of... 20 compounds not previously reported in the literature for... E. foetidum... In particular, β-ionone was determined to be an important odorant in both samples but could not be identified with GC–qMS." \\
eryngium_foetidum_l.txt · Zuletzt geändert: 2025/12/01 13:45 von andreas

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