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Evaluation of Multivariate Filters on Vibrational Spectroscopic Fingerprints for the PLS-DA and SIMCA Classification of Argan Oils from Four Moroccan Regions

  • Meryeme El Maouardi
  • , Mohammed Alaoui Mansouri
  • , Kris De Braekeleer
  • , Abdelaziz Bouklouze
  • , Yvan Vander Heyden
  • Biopharmaceutical and Toxicological Analysis Research Team
  • University Mohammed V
  • Department of Analytical Chemistry
  • Vrije Universiteit Brussel
  • University of Oulu
  • Université Libre de Bruxelles

Research output: Contribution to journalArticlepeer-review

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Abstract

This study aimed to develop an analytical method to determine the geographical origin of Moroccan Argan oil through near-infrared (NIR) or mid-infrared (MIR) spectroscopic fingerprints. However, the classification may be problematic due to the spectral similarity of the components in the samples. Therefore, unsupervised and supervised classification methods—including principal component analysis (PCA), Partial Least Squares-Discriminant Analysis (PLS-DA) and Soft Independent Modeling of Class Analogy (SIMCA)—were evaluated to distinguish between Argan oils from four regions. The spectra of 93 samples were acquired and preprocessed using both standard preprocessing methods and multivariate filters, such as External Parameter Orthogonalization, Generalized Least Squares Weighting and Orthogonal Signal Correction, to improve the models. Their accuracy, precision, sensitivity, and selectivity were used to evaluate the performance of the models. SIMCA and PLS-DA models generated after standard preprocessing failed to correctly classify all samples. However, successful models were produced after using multivariate filters. The NIR and MIR classification models show an equivalent accuracy. The PLS-DA models outperformed the SIMCA with 100% accuracy, specificity, sensitivity and precision. In conclusion, the studied multivariate filters are applicable on the spectroscopic fingerprints to geographically identify the Argan oils in routine monitoring, significantly reducing analysis costs and time.

Original languageEnglish
Article number5698
Number of pages18
JournalMolecules
Volume28
Issue number15
Early online date27 Jul 2023
DOIs
Publication statusPublished - 30 Aug 2023

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© 2023 by the authors.

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