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Specific Migration of Cyclic Siloxanes from Silicone FCM

M. Eckardt, A.K. Seidel, S. Säger, T.J. Simat

Migration of cyclic dimethyl siloxanes from silicone elastomers into food – determination of D4 to D25 via on-line coupled HPLC-GC-FID

2025

Food Additives & Contaminants: Part A

A robust method for the analysis of cyclic siloxanes D4 to D25 via on-line coupled HPLC-GC-FID is presented to provide reliable data for the migration of these oligomers, in particular, into fatty foods. Post-cured and non-post-cured platinum silicone moulds were tested under different conditions of repeated use (baking at 180 °C, 15 min; chocolate preparation at max. 45 °C, 2 h). Overall siloxane migration analysis via 1H-NMR as well as oligomer profiling in the materials via GC-FID were performed to obtain a comprehensive picture. Maximum transfer was determined into shortcrust pastry for D7 (29.9 mg/kg food, 1st cycle), which was 6.4% of its initial content in the non-post-cured material. Noteworthily, under hot-use conditions, volatile siloxanes from non-post-cured materials were released mainly into ambient air, and less into food (e.g. during five cycles of baking, approx. 1% of the initial D5 amount migrated, but approx. 98% were evaporated). Post-curing sufficiently reduces migration of siloxanes < 1000 Dalton (e.g. sum D4 to D13, shortcrust pastry, 153 mg/kg from non-post-cured and 9.5 mg/kg from post-cured mould, 1st cycle). However, migration of oligomers > D20 is almost independent of post-curing and can cause an issue in terms of the overall migration limit of 60 mg/kg (e.g. 167 mg/kg total siloxanes migrated into shortcrust pastry, 3rd cycle). Also, at moderate temperatures during chocolate preparation, significant migration was determined (e.g. 21.5 mg/kg total siloxanes, 3rd cycle). In terms of risk assessment of multiple use articles made from silicone, the use of food simulant D2 can cause significant underestimations in the 3rd cycle, because of an almost total extraction during the first two migration cycles. Therefore, the assessment of silicone articles should be based on real food application testing - an appropriate method for this is presented using HPLC-GC-FID.

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