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Original Articles

Updated evaluation of the migration of styrene monomer and oligomers from polystyrene food contact materials to foods and food simulants

, &
Pages 723-733 | Received 23 Oct 2013, Accepted 15 Dec 2013, Published online: 25 Feb 2014
 

Abstract

Due to the 2011 labelling of styrene monomer as “reasonably anticipated to be a human carcinogen” by the National Institutes of Health’s National Toxicology Program (NTP) and the controversy over whether styrene oligomers mimic the physiological effects of estrogen, an updated review of styrene monomer and oligomers in food and food contact materials (FCMs) was performed. The concentrations of styrene monomer and oligomers were determined in 24 polystyrene (PS) products and ranged from 9.3 to 3100 mg kg–1 for the styrene monomer, 130–2900 mg kg–1 for the sum of three styrene dimers, and 220–16,000 mg kg–1 for the sum of six styrene trimers. Foods in contact with PS packaging had styrene monomer concentrations ranging from 2.6 to 163 ng g–1; dimer concentrations from the limit of quantitation (LOQ) to 4.8 ng g–1 and trimer concentrations were all below the LOQ (2 ng g–1). Diffusion coefficients (Dp) and partition coefficients (K) were also calculated for styrene dimers and trimers. The results presented here indicate that styrene monomer concentrations in foods have not significantly changed since the 1980s and monomer concentrations in food packaging quantified in this study were all below USFDA limits. Although styrene dimers and trimers are present in higher concentrations in PS FCMs than the monomer, their migration to food is limited because of their high K values (4 × 102 to 2 × 106) and their low diffusion coefficients in PS products. Additionally, diffusion coefficients calculated using USFDA-recommended food simulants and Arrhenius plots describing the temperature dependence of styrene dimers and trimers can be used in future calculations of dietary intake of the styrene oligomers.

GRAPHICAL ABSTRACT

Acknowledgements

The authors would like to thank Steven Barrientos for his assistance in the lab with the styrene monomer and oligomer analysis.

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