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Synergetic Use of Principal Component Analysis Applied to Normed Physicochemical Measurements and GC × GC‐MS to Reveal the Stabilization Effect of Selected Essential Oils on Heated Rapeseed Oil
Author(s) -
Sghaier Lilia,
Cordella Christophe B. Y.,
Rutledge Douglas N.,
Lefèvre Fanny,
Watiez Mickaël,
Breton Sylvie,
Sassiat Patrick,
Thiebaut Didier,
Vial Jérôme
Publication year - 2017
Publication title -
journal of food science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.772
H-Index - 150
eISSN - 1750-3841
pISSN - 0022-1147
DOI - 10.1111/1750-3841.13712
Subject(s) - rapeseed , chemistry , odor , nutmeg , food science , essential oil , peroxide value , gas chromatography–mass spectrometry , chromatography , organic chemistry , mass spectrometry
Lipid oxidation leads to the formation of volatile compounds and very often to off‐flavors. In the case of the heating of rapeseed oil, unpleasant odors, characterized as a fishy odor, are emitted. In this study, 2 different essential oils (coriander and nutmeg essential oils) were added to refined rapeseed oil as odor masking agents. The aim of this work was to determine a potential antioxidant effect of these essential oils on the thermal stability of rapeseed oil subject to heating cycles between room temperature and 180 °C. For this purpose, normed determinations of different parameters (peroxide value, anisidine value, and the content of total polar compounds, free fatty acids and tocopherols) were carried out to examine the differences between pure and degraded oil. No significant difference was observed between pure rapeseed oil and rapeseed oil with essential oils for each parameter separately. However, a stabilizing effect of the essential oils, with a higher effect for the nutmeg essential oil was highlighted by principal component analysis applied on physicochemical dataset. Moreover, the analysis of the volatile compounds performed by GC × GC showed a substantial loss of the volatile compounds of the essential oils from the first heating cycle.

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