PAPERmaking! Vol10 Nr3 2024

Störmer et al.

10.3389/fchem.2024.1397913

Poças, M. D. F., Oliveira, J. C., Pereira, J. R., Brandsch, R., and Hogg, T. (2011). Modelling migration from paper into a food simulant. Food control. 22, 303 – 312. doi:10. 1016/j.foodcont.2010.07.028 Raffael, B., and Simoneau, C. (2002) Proceedings of the fi nal EU Project workshop FAIR CT-98-4318 “ Recyclability of food packaging materials with respect to food safety considerations: polyethylene terephthalate (PET), paper and board and plastics covered by functional barriers ” . Roduit, B., Borgeat, C. H., Cavin, S., Fragniere, C., and Dudler, V. (2005). Application of Finite Element Analysis (FEA) for the simulation of release of additives from multilayer polymeric packaging structures. Food Addit. Contam. 22, 945 – 955. doi:10.1080/02652030500323997 Serebrennikova, A., Teubler, R., Hoffellner, L., Leitner, E., Hirn, U., and Zojer, K. (2022). Transport of organic volatiles through paper: physics-informed neural networks for solving inverse and forward problems. Transp. Porous Media 145, 589 – 612. doi:10. 1007/s11242-022-01864-7 Serebrennikova, A., Teubler, R., Hoffellner, L., Leitner, E., Hirn, U., and Zojer, K. (2024). Physics informed neural networks reveal valid models for reactive diffusion of volatiles through paper. Chem. Eng. Sci. 285, 119636. doi:10.1016/j.ces.2023.119636 Simoneau, C., Raffael, B., Garbin, S., Hoekstra, E., Mieth, A., Alberto Lopes, J. F., et al. (2016) Non-harmonised food contact materials in the EU: regulatory and market situation: baseline study: fi nal report . Sturaro, A., Rella, R., Parvoli, G., Ferrara, D., and Tisato, F. (2006). Contamination of dry foods with trimethyldiphenylmethanes by migration from recycled paper and board packaging. Food Addit. Contam. 23, 431 – 436. doi:10.1080/02652030500526052 Summer fi eld, W., and Cooper, I. (2001). Investigation of migration from paper and board into food-development of methods for rapid testing. Food Addit. Contam. 18, 77 – 88. doi:10.1080/02652030010004674 Technavio (2023). Food contact paper market by material, type and geography - forecast and analysis 2023-2027. Available at: https://www.technavio.com/report/food- contact-paper-market-industry-analysis (Accessed February 12, 2024). Tosa, V., Kovacs, K., Mercea, P., and Piringer, O. G. (2008). “ A fi nite difference method for modeling migration of impurities in multilayer systems, ” in Numerical analyisis and applied mathematics, international conference 2008 Editors T. F. Simos, G. Psihoyios, and C. Tsitouras (American Institute of Physics), 802 – 805. Triantafyllou, V. I., Akrida-Demertzi, K., and Demertzis, P. G. (2002). Migration studies from recycled paper packaging materials: development of an analytical method for rapid testing. Anal. Chim. Acta 467, 253 – 260. doi:10.1016/s0003-2670(02)00189-7 Triantafyllou, V. I., Akrida-Demertzi, K., and Demertzis, P. G. (2005). Determination of partition behavior of organic surrogates between paperboard packaging materials and air. J. Chromatogr. A 1077, 74 – 79. doi:10.1016/j.chroma.2005.04.061 Triantafyllou, V. I., Akrida-Demertzi, K., and Demertzis, P. G. (2007). A study on the migration of organic pollutants from recycled paperboard packaging materials to solid food matrices. Food Chem. 101, 1759 – 1768. doi:10.1016/j.foodchem.2006.02.023 Urbelis, J. H., and Cooper, J. R. (2021). Migration of food contact substances into dry foods: a review. Food Addit. Contam. Part A 38, 1044 – 1073. doi:10.1080/19440049. 2021.1905188 Van Den Houwe, K., Van Loco, J., Lynen, F., and Van Hoeck, E. (2018). The use of Tenax ® as a simulant for the migration of contaminants in dry foodstuffs: a review. Packag. Technol. Sci. 31, 781 – 790. doi:10.1002/pts.2320 Vollmer, A., Biedermann, M., Grundböck, F., Ingenhoff, J.-E., Biedermann-Brem, S., Altkofer, W., et al. (2011). Migration of mineral oil from printed paperboard into dry foods: survey of the German market. Eur. Food Res. Technol. 232, 175 – 182. doi:10.1007/s00217-010-1376-6 Welle, F. (2013). A new method for the prediction of diffusion coef fi cients in poly(ethylene terephthalate). J. Appl. Polym. Sci. 129, 1845 – 1851. doi:10.1002/app.38885 Wellenreuther, F., Detzel, A., Krüger, M., and Busch, M. (2022). “ "Updated life-cycle assessment of graphic and tissue paper - spotlight report, ” in TEXTE. Umweltbundesamt (German environment agency) . Wolf, N., Hoyer, S., and Simat, T. J. (2023). Effect of relative humidity on the desorption of odour-active volatile organic compounds from paper and board: sensory evaluation and migration to Tenax ® . Food Addit. Contam. Part A 40, 1096 – 1113. doi:10. 1080/19440049.2023.2238845 Zabaleta, I., Blanco-Zubiaguirre, L., Baharli, E. N., Olivares, M., Prieto, A., Zuloaga, O., et al. (2020). Occurrence of per- and poly fl uorinated compounds in paper and board packaging materials and migration to food simulants and foodstuffs. Food Chem. 321, 126746. doi:10.1016/j.foodchem.2020.126746 Zhang, K., Noonan, G. O., and Begley, T. H. (2008). Determination of 2,6- diisopropylnaphthalene (DIPN) and n-dibutylphthalate (DBP) in food and paper packaging materials from US marketplaces. Food Addit. Contam. Part A 25, 1416 – 1423. doi:10.1080/02652030802163380 Zülch, A., and Piringer, O. (2010). Measurement and modelling of migration from paper and board into foodstuffs and dry food simulants. Food Addit. Contam. Part A 27, 1306 – 1324. doi:10.1080/19440049.2010.483693 Zur fl uh, M., Biedermann, M., and Grob, K. (2013). Simulation of the migration of mineral oil from recycled paperboard into dry foods by Tenax? Food Addit. Contam. Part A 30, 909 – 918. doi:10.1080/19440049.2013.790089

Jaén, J., Domeño, C., Úbeda, S., Aznar, M., and Nerín, C. (2022). Migration of mineral oil aromatic hydrocarbons (MOAH) from cardboard containers to dry food and prediction tool. Food control. 138, 109016. doi:10.1016/j.foodcont.2022.109016 Jickells, S. M., Poulin, J., Mountfort, K. A., and Fernandez-Ocana, M. (2005). Migration of contaminants by gas phase transfer from carton board and corrugated board box secondary packaging into foods. Food Addit. Contam. 22, 768 – 782. doi:10. 1080/02652030500151992 Koster, S., Bani-Estivals, M.-H., Buonumo, M., Bradley, E. L., Chagnon, M.-C., Garcia, L., et al. (2015). “ Guidance on the best practices on the risk assessment of Non Intentionally Added Substances (NIAS) in food contact materials and articles, ” in ILSI Europe report series (Brussels: International Life Sciences Institute (ILSI), ILSI Europe Packaging Materials Task Force). Kourkopoulos, A., Sijm, D. T. H. M., and Vrolijk, M. F. (2022). Current approaches and challenges of sample preparation procedures for the safety assessment of paper and cardboard food contact materials: a comprehensive review. Compr. Rev. Food Sci. Food Saf. 21, 4108 – 4129. doi:10.1111/1541-4337.13009 Laine, C., Pitkänen, M., Ohra-Aho, T., Gestranius, M., and Ketoja, J. A. (2016). Novel test approach for evaluating and modelling barrier properties of food contact materials against mineral oil contaminants. Packag. Technol. Sci. 29, 571 – 583. doi:10.1002/pts.2239 Leeman, W., and Krul, L. (2015). Non-intentionally added substances in food contact materials: how to ensure consumer safety. Curr. Opin. Food Sci. 6, 33 – 37. doi:10.1016/j. cofs.2015.11.003 Lestido-Cardama, A., Störmer, A., and Franz, R. (2020). Dialkylketones in paperboard food contact materials-method of analysis in fatty foods and comparative migration into liquid simulants versus foodstuffs. Molecules 25, 915. doi:10.3390/molecules25040915 Lorenzini, R., Biedermann, M., Grob, K., Garbini, D., Barbanera, M., and Braschi, I. (2013). Migration kinetics of mineral oil hydrocarbons from recycled paperboard to dry food: monitoring of two real cases. Food Addit. Contam. Part A 30, 760 – 770. doi:10. 1080/19440049.2013.766765 Lorenzini, R., Fiselier, K., Biedermann, M., Barbanera, M., Braschi, I., and Grob, K. (2010). Saturated and aromatic mineral oil hydrocarbons from paperboard food packaging: estimation of long-term migration from contents in the paperboard and data on boxes from the market. Food Addit. Contam. Part A Chem. Analysis, Control, Expo. Risk Assess. 27, 1765 – 1774. doi:10.1080/19440049.2010.517568 Mercea, P. (2008). “ Models for diffusion in polymers, ” in Plastic packaging: interactions with food and pharmaceuticals Editors O. G. Piringer and A. L. Baner 2 (Weinheim Wiley-VCH), 123 – 162. Mercea, P. V., Kalisch, A., Ulrich, M., Benz, H., Piringer, O. G., To ş a, V., et al. (2018). Modelling migration of substances from polymers into drinking water. Part 1 - diffusion coef fi cient estimations. Polym. Test. 65, 176 – 188. doi:10.1016/j.polymertesting.2017. 11.025 Merkel, S., Kappenstein, O., Sander, S., Weyer, J., Richter, S., Pfaff, K., et al. (2018). Transfer of primary aromatic amines from coloured paper napkins into four different food matrices and into cold water extracts. Food Addit. Contam. Part A 35, 1223 – 1229. doi:10.1080/19440049.2018.1463567 Nerin, C., Bourdoux, S., Faust, B., Gude, T., Lesueur, C., Simat, T., et al. (2022). Guidance in selecting analytical techniques for identi fi cation and quanti fi cation of non- intentionally added substances (NIAS) in food contact materials (FCMS). Food Addit. Contam. Part A - Chem. Analysis Control Expo. Risk Assess. 39, 620 – 643. doi:10.1080/ 19440049.2021.2012599 Nerín, C., Contín, E., and Asensio, E. (2007). Kinetic migration studies using Porapak as solid-food simulant to assess the safety of paper and board as food-packaging materials. Anal. Bioanal. Chem. 387, 2283 – 2288. doi:10.1007/s00216-006-1080-3 Nguyen, P. M., Goujon, A., Sauvegrain, P., and Vitrac, O. (2013). A computer-aided methodology to design safe food packaging and related systems. AIChE J. 59, 1183 – 1212. doi:10.1002/aic.14056 Nguyen, P.-M., Julien, J. M., Breysse, C., Lyathaud, C., Thébault, J., and Vitrac, O. (2017). Project SafeFoodPack Design: case study on indirect migration from paper and boards. Food Addit. Contam. Part A 34, 1703 – 1720. doi:10.1080/19440049.2017. 1315777 Oldring, P., Faust, B., Gude, T., Lesueur, C., Simat, T., Stoermer, A., et al. (2023). “ An overview of approaches for analysing NIAS from different FCMs, ” in ILSI Europe report series (black and white report) (Brussels: Zenodo). doi:10.5281/zenodo.7801292 Pan, J. J., Chen, Y. F., Zheng, J. G., Hu, C., Li, D., and Zhong, H. N. (2021). Migration of mineral oil hydrocarbons from food contact papers into food simulants and extraction from their raw materials. Food Addit. Contam. Part A Chem. Anal. Control Expo. Risk Assess. 38, 870 – 880. doi:10.1080/19440049.2021.1891300 Piringer, O., Wolff, E., and Pfaff, K. (1993). Use of high temperature-resistant sorbents as simulants for testing. Food Addit. Contam. 10, 621 – 629. doi:10.1080/ 02652039309374189 Piringer, O. G. (2008). Prediction of diffusion coef fi cients in plastic materials. Rev. Chim. 59, 1186 – 1189. doi:10.37358/rc.08.11.1996 Pivnenko, K., Eriksson, E., and Astrup, T. F. (2015). Waste paper for recycling: overview and identi fi cation of potentially critical substances. Waste Manag. 45, 134 – 142. doi:10.1016/j.wasman.2015.02.028

Frontiers in Chemistry

15

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