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<mods:namePart>Arce Antón, Mar</mods:namePart>
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<mods:namePart>Ortiz Fernández, Mª Cruz</mods:namePart>
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<mods:namePart>Sanllorente Méndez, Silvia</mods:namePart>
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<mods:dateAccessioned encoding="iso8601">2023-03-02T13:14:35Z</mods:dateAccessioned>
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<mods:dateIssued encoding="iso8601">2022-10</mods:dateIssued>
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<mods:identifier type="issn">0026-265X</mods:identifier>
<mods:identifier type="uri">http://hdl.handle.net/10259/7486</mods:identifier>
<mods:identifier type="doi">10.1016/j.microc.2022.107648</mods:identifier>
<mods:abstract>The aim of this work is focused on the melamine migration from food contact materials (FCMs), considering data&#xd;
obtained from univariate analysis versus that obtained from multivariate approach in liquid chromatography&#xd;
coupled to diode array detector.&#xd;
Plastic food contact materials are made from monomers and additives. Moreover, non-intentionally added&#xd;
substances (NIAS) can be part of the composition of the FCM: raw material impurities or process by-products,&#xd;
inks or adhesives.&#xd;
Any compound present within a FCM can migrate to foodstuff. Specific migration of some substances from&#xd;
plastic FCMs to food/simulant is limited by European legislation in force (Commission Regulation No 10/2011).&#xd;
Quantification of analytes in migration samples through a univariate analysis could lead to erroneous results.&#xd;
As an example, in liquid chromatography NIAS can interfere when coeluting with analytes or when they have&#xd;
close retention time. In that case, an overestimation would happen and the verification of the compliance of the&#xd;
specific migration limit (SML) of a substance would be incorrect.&#xd;
A solution to the problem can be found in the application of a chemometric tool with the second-order&#xd;
advantage, which allows the unequivocal identification of analytes. Specifically, for this work, PARAFAC/&#xd;
PARAFAC2 decomposition technique along with tensors arranged from HPLC-DAD data of migration (test and&#xd;
kinetics) samples were used for the identification and quantification of melamine.&#xd;
Results of melamine quantity found in migration samples from five types of melaware by means of a multivariate approach were compared to results obtained with a univariate data analysis carried out with values of&#xd;
chromatographic peak area as response. The comparison reveals that in test samples, univariate analysis supposes an overestimation in the quantity of melamine of 30 % on average, with respect of the concentration&#xd;
obtained from the multivariate approach. Besides, in kinetics samples it is remarkable that for one migration&#xd;
cycle the melamine found was 10 times above the one that obtained with PARAFAC decomposition.&#xd;
Summing up, multivariate data analysis of migration samples supposes a great advantage in order to comply&#xd;
with the established regulation about migrants and to decrease the false non-compliant results.</mods:abstract>
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<mods:languageTerm authority="rfc3066">eng</mods:languageTerm>
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<mods:accessCondition type="useAndReproduction">Attribution-NonCommercial-NoDerivatives 4.0 Internacional</mods:accessCondition>
<mods:subject>
<mods:topic>Melamine</mods:topic>
</mods:subject>
<mods:subject>
<mods:topic>Migration</mods:topic>
</mods:subject>
<mods:subject>
<mods:topic>HPLC-DAD</mods:topic>
</mods:subject>
<mods:subject>
<mods:topic>PARAFAC</mods:topic>
</mods:subject>
<mods:subject>
<mods:topic>Food contact materials</mods:topic>
</mods:subject>
<mods:subject>
<mods:topic>Kitchenware</mods:topic>
</mods:subject>
<mods:titleInfo>
<mods:title>Univariate data analysis versus multivariate approach in liquid chromatography. An application for melamine migration from food contact materials</mods:title>
</mods:titleInfo>
<mods:genre>info:eu-repo/semantics/article</mods:genre>
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