Literature DB >> 20166593

13C nuclear magnetic resonance spectroscopic detection of the adulteration of extra virgin olive oils extracted from different cultivars with cold-pressed hazelnut oil.

Giovanna Vlahov1.   

Abstract

13C NMR spectroscopy was applied to detect the adulteration of olive oils with hazelnut oil. Considering that the linolenate chain and the squalene hydrocarbon were absent in hazelnut oil, unlike olive oil, a 13C NMR spectroscopy method was developed to measure in addition to the triglyceride normal chains (i.e., saturated, oleate, and linoleate chains), the resonances of the linolenate chain and of squalene hydrocarbon. Acyl chain and squalene resonances highly discriminated olive oil samples by cultivars. Nevertheless, the "hazelnut oil percentage factor" prevailed over the "cultivar factor," thus correctly classifying 86% of the authentic and adulterated olive oil samples according to the hazelnut oil percentages. In particular, 85.7, 73.7, and 100.0% of the authentic olive oil samples, and the samples adulterated with 5 and 20% of hazelnut oil, were correctly classified through cross-validation.

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Year:  2009        PMID: 20166593

Source DB:  PubMed          Journal:  J AOAC Int        ISSN: 1060-3271            Impact factor:   1.913


  2 in total

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Authors:  Christine M Fisher; Katherine T Peter; Seth R Newton; Andrew J Schaub; Jon R Sobus
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2.  A Simple and Effective Mass Spectrometric Approach to Identify the Adulteration of the Mediterranean Diet Component Extra-Virgin Olive Oil with Corn Oil.

Authors:  Francesco Di Girolamo; Andrea Masotti; Isabella Lante; Margherita Scapaticci; Cosima Damiana Calvano; Carlo Zambonin; Maurizio Muraca; Lorenza Putignani
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  2 in total

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