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Molecules


Title:Analytical Approaches for Analysis of Safety of Modern Food Packaging: A Review
Author(s):Wrona M; Nerin C;
Address:"Department of Analytical Chemistry, Aragon Institute of Engineering Research I3A, University of Zaragoza, Maria de Luna, 3, 50018 Zaragoza, Spain"
Journal Title:Molecules
Year:2020
Volume:20200210
Issue:3
Page Number: -
DOI: 10.3390/molecules25030752
ISSN/ISBN:1420-3049 (Electronic) 1420-3049 (Linking)
Abstract:"Nowadays, food packaging is a crucial tool for preserving food quality and has become an inseparable part of our daily life. Strong consumer demand and market trends enforce more advanced and creative forms of food packaging. New packaging development requires safety evaluations that always implicate the application of complex analytical methods. The present work reviews the development and application of new analytical methods for detection of possible food contaminants from the packaging origin on the quality and safety of fresh food. Among food contaminants migrants, set-off migrants from printing inks, polymer degradation products, and aromatic volatile compounds can be found that may compromise the safety and organoleptic properties of food. The list of possible chemical migrants is very wide and includes antioxidants, antimicrobials, intentionally added substances (IAS), non-intentionally added substances (NIAS), monomers, oligomers, and nanoparticles. All this information collected prior to the analysis will influence the type of analyzing samples and molecules (analytes) and therefore the selection of a convenient analytical method. Different analytical strategies will be discussed, including techniques for direct polymer analysis"
Keywords:Food Contamination/*analysis *Food Packaging/legislation & jurisprudence Ink Nanoparticles/analysis Polymers/chemistry Volatile Organic Compounds/analysis EU legislation Ias Nias analytical techniques antioxidants food packaging nanoparticles non-volatile;
Notes:"MedlineWrona, Magdalena Nerin, Cristina eng Review Switzerland 2020/02/14 Molecules. 2020 Feb 10; 25(3):752. doi: 10.3390/molecules25030752"

 
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