Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Combination of Stable Isotopes and Fatty Acid Composition for Geographical Origin Discrimination of One Argan Oil Vintage

View through CrossRef
Quality control and traceability of Argan oil requires precise chemical characterization considering different provenances. The fatty acid profile is an essential parameter that certifies the quality and purity of Argan oil. In addition, stable isotopes were recently shown to be accurate as an indicator for geographical origin. In this study, fatty acid composition by gas chromatography (GC) and stable isotope ratio by isotope ratio mass spectrometry (IRMS) were investigated for classifying Argan oil according to its geographical origin. Forty-one Argan oil samples, belonging to six geographical origins of Moroccan natural Argan population (Safi, Essaouira, Agadir Ida Outanane, Taroudant, Tiznit and Sidi Ifni) were collected and extracted under the same conditions. The results show that the isotope δ13C, palmitic acid (C16:0), linoleic acid (C18:2) and unsaturated fatty acids (UFA) were strongly influenced by ecological parameters. Linear discriminant analysis (LDA) was performed to discriminate the six studied provenances. Discriminant models predicted the origin of Argan oil with 92.70% success. Samples from Safi, Essaouira and Agadir Ida Outanane presented the highest classification rate (100%). In contrast, the lowest rate was reported for samples from Tiznit (85.70%). The findings obtained for fatty acids and isotope combination might be considered as an accurate tool for determining the geographical origins of Argan oil. Moreover, they can potentially be used as specific markers for oils labeled with Protected Geographical Indication (PGI).
Title: Combination of Stable Isotopes and Fatty Acid Composition for Geographical Origin Discrimination of One Argan Oil Vintage
Description:
Quality control and traceability of Argan oil requires precise chemical characterization considering different provenances.
The fatty acid profile is an essential parameter that certifies the quality and purity of Argan oil.
In addition, stable isotopes were recently shown to be accurate as an indicator for geographical origin.
In this study, fatty acid composition by gas chromatography (GC) and stable isotope ratio by isotope ratio mass spectrometry (IRMS) were investigated for classifying Argan oil according to its geographical origin.
Forty-one Argan oil samples, belonging to six geographical origins of Moroccan natural Argan population (Safi, Essaouira, Agadir Ida Outanane, Taroudant, Tiznit and Sidi Ifni) were collected and extracted under the same conditions.
The results show that the isotope δ13C, palmitic acid (C16:0), linoleic acid (C18:2) and unsaturated fatty acids (UFA) were strongly influenced by ecological parameters.
Linear discriminant analysis (LDA) was performed to discriminate the six studied provenances.
Discriminant models predicted the origin of Argan oil with 92.
70% success.
Samples from Safi, Essaouira and Agadir Ida Outanane presented the highest classification rate (100%).
In contrast, the lowest rate was reported for samples from Tiznit (85.
70%).
The findings obtained for fatty acids and isotope combination might be considered as an accurate tool for determining the geographical origins of Argan oil.
Moreover, they can potentially be used as specific markers for oils labeled with Protected Geographical Indication (PGI).

Related Results

Valorization of argan oil: all you need to know about argan oil from Morocco
Valorization of argan oil: all you need to know about argan oil from Morocco
This work makes it possible to study the argan oil which has extracted by several extraction methods (artisanal, mechanical pressing of roasted almonds, mechanical pressing of unro...
Discrimination of Geographical Origin of Unroasted Kernels Argan Oil (Argania spinosa (L.) Skeels) Using Tocopherols and Chemometrics
Discrimination of Geographical Origin of Unroasted Kernels Argan Oil (Argania spinosa (L.) Skeels) Using Tocopherols and Chemometrics
Valorisation of Argan oil requires the precise identification of different provenances markers. The concentration of tocopherol is regarded as one of the essential parameters that ...
Influence of the span 80/Gelatin B combination on the formulation and stabilization of Argan oil-in-water emulsions
Influence of the span 80/Gelatin B combination on the formulation and stabilization of Argan oil-in-water emulsions
The present study aims to evaluate the effect of the combination of a linear protein: Gelatin type B and an oil-soluble emulsifier Span 80 (sorbitan monooleate) in the stabilizatio...
The state and prospects of the use of Argania spinosa oil in nutrition and diet therapy
The state and prospects of the use of Argania spinosa oil in nutrition and diet therapy
The article provides an overview of the world experience in obtaining and food use of the oil of Argania spinosa. The relationship between technological methods of oil extraction a...
PHENOLIC COMPOSITION AND ANTI-MICROBIOLOGICAL ACTIVITY OF ESSENTIAL OILS FROM THE FRUIT PULP OF THE ARGAN TREE
PHENOLIC COMPOSITION AND ANTI-MICROBIOLOGICAL ACTIVITY OF ESSENTIAL OILS FROM THE FRUIT PULP OF THE ARGAN TREE
The study of the chemical composition of essential oils, the pulp of argan leachate, the phenolic compounds and the identification of the biological activity of secondary metabolit...
Sustainable Drilling Fluids Additives Development from Biodiesel
Sustainable Drilling Fluids Additives Development from Biodiesel
Abstract In the process of oil and gas wells drilling, the drilling fluid is an indispensable element. The drilling mud or drilling fluid is circulated during the...
Low Temperature Affects Fatty Acids Profiling and Key Synthesis Genes Expression Patterns in Zanthoxylum bungeanum Maxim
Low Temperature Affects Fatty Acids Profiling and Key Synthesis Genes Expression Patterns in Zanthoxylum bungeanum Maxim
Zanthoxylum bungeanum is one of the most important medicinal and edible homologous plants because of its potential health benefits and unique flavors. The chemical components in co...

Back to Top