Deep eutectic solvent‐based modified quick, easy, cheap, effective, rugged, and safe extraction combined with solidification of floating organic droplet‐dispersive liquid–liquid microextraction of some pesticides from canola oil followed by gas chromatography analysis

Author:

Arvanaghi Mona1,Javadi Afshin23ORCID,Afshar Mogaddam Mohammad Reza45ORCID

Affiliation:

1. Department of Food Science and Technology Mamaghan Branch, Islamic Azad University Mamaghan Iran

2. Department of Food Hygiene Faculty of Veterinary Tabriz Medical Sciences, Islamic Azad University Tabriz Iran

3. Health Promotion Research Center Tabriz Medical Sciences, Islamic Azad University Tabriz Iran

4. Food and Drug Safety Research Center Tabriz University of Medical Sciences Tabriz Iran

5. Pharmaceutical Analysis Research Center Tabriz University of Medical Sciences Tabriz Iran

Abstract

Herein, a modified quick, easy, cheap, effective, rugged, and safe extraction was developed based on deep eutectic solvent for the extraction of several pesticides from canola oil samples. In this work, first, different sorbents were selected to remove the sample interferences, and the composition of the sorbents was optimized by simplex centroid design. The extracted analytes were more concentrated by solidification of floating deep eutectic solvent droplet‐dispersive liquid–liquid microextraction. Low limits of detection (0.15–0.23 ng/g) and quantification (0.49–0.76 ng/g), high extraction recoveries (74–87%) and enrichment factors (224–263), and good repeatability (relative standard deviation equal to or less than 5.1 and 4.7% for intra‐ and interday precisions, respectively) were achieved using the proposed method. The suggested approach was used for the quantification of the analytes in different canola oil samples. Additionally, the effects of microwave irradiations exposure and sonication in decontamination of the samples were evaluated. In this method, there was no need for centrifugation and toxic solvents. Also, effective extraction of the analytes and minimizing interferences were achieved through the use of various sorbents.

Publisher

Wiley

Subject

Filtration and Separation,Analytical Chemistry

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