Rapid and Efficient GC-MS Method for the Multiresidue Analysis of Contaminants from Recycled Polyethylene and Polypropylene
Eleonora Conterosito, Mariachiara Lo Scalzo, Marysol Ferretti, Andrea Rosmino, Simona Stradella, Mauro Mottin, Erika Mottin, Valentina Gianotti

TL;DR
A new GC-MS method enables rapid detection of contaminants in recycled polyethylene and polypropylene plastics.
Contribution
The paper introduces a novel GC-MS method for simultaneous quantification of 40 contaminants in recycled plastics.
Findings
The method achieves recoveries above 68.3% and RSDr below 4.2%.
It allows quantification of contaminants at levels as low as a few ng/g.
The method was successfully tested on real batches of recycled plastics.
Abstract
In the context of plastic recycling, legislation is evolving and varies across regions, but it remains largely nonspecific. In the European context, producers of post-industrial and post-consumer recycled plastics must guarantee the same wholesomeness as virgin materials. However, they cannot maintain such strict control over incoming materials, because, since the secondary raw materials derived from separate waste collection, they are subjected to high variability in composition and heterogeneity over time. In this frame, a rapid, and easy-to-apply GC-MS method was developed. It employs a liquid–liquid extraction with acetone, followed by quantitative analysis with gas chromatography coupled to mass spectrometry (GC-MS). A combination of total ion chromatograms (TICs) and extracted ion chromatograms (EICs) was used. Adequate sensitivity was demonstrated in the selected concentration…
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Taxonomy
TopicsMicroplastics and Plastic Pollution · Effects and risks of endocrine disrupting chemicals · Toxic Organic Pollutants Impact
