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Siloxanes in silicone products intended for food contact:Selected samples from the Norwegian market in 2016

机译:用于食品接触的有机硅产品中的硅氧烷:2016年从挪威市场选择的样品

摘要

Silicone is used in food contact materials due to its excellent physical and chemical properties. It is thermostable and flexible and is used in bakeware and kitchen utensils. Silicone is also used to coat paper to make it water and fat resistant. There is no specific regulation in EU which covers silicone as food contact materials, but in Regulation 1935/2004 on materials intended to come into contact with food it is stated that materials should be manufactured so it do not transfer their constituents to food in quantities which could endanger human health. Silicone may contain residual siloxane oligomers which might migrate to the food when the product is being used. DTU has proposed two action limits for low molecular weight siloxanes in food contact materials. For the sum of cyclic siloxanes D3 to D8 the limits are 12 mg/kg food for adults and 2 mg/kg food for children. For the sum of cyclic siloxanes D3 to D13 and linear siloxanes L3-L13 the limit is 60 mg/kg food. In 49 samples of silicone products intended for food contact from the Norwegian markets content of siloxanes has been measured. Coated paper for baking constituted 8 of the samples and in none of those samples siloxanes were found above the detection limits. In all of the 41 remaining samples siloxanes were found in content above the quantification limits. The siloxanes were predominately cyclic siloxanes. The types of products were baking moulds and mats, muffin cups, kitchen utensils, boxes and teats. Compared to the proposed actions limits for the sum of D3 to D8 and for the sum of D3 to D13 plus L3 to L13, 24 of the samples exceeded these limits. However, the contents were determined by extraction of the total amount of the analysed siloxanes. After migration test to evaluate the migration of siloxanes into a food simulant it could be concluded, that none of the samples would exceed the action limits based on migration estimation. The silicone product exhibited a wide range of siloxane concentrations and a hypothesis could be that the products with the highest siloxane content were not properly cured. Based on the available sample documentation obtained from the producers it was not possible to draw any conclusion about this aspect.
机译:有机硅由于其优异的物理和化学性能而用于食品接触材料。它具有热稳定性和柔韧性,可用于烤盘和厨房用具。硅酮还可以用于涂布纸,以使其具有防水性和防脂性。欧盟没有将硅酮用作食品接触材料的特定法规,但在1935/2004法规中,打算与食品接触的材料规定应制造材料,以免将其成分转移到食品中。可能危害人类健康。有机硅可能包含残留的硅氧烷低聚物,在使用产品时可能会迁移到食品中。 DTU对食品接触材料中的低分子量硅氧烷提出了两个作用限值。对于环状硅氧烷D3至D8的总含量,成人食品的限值为12 mg / kg,儿童食品的限值为2 mg / kg。对于环状硅氧烷D3至D13和线性硅氧烷L3-L13的总和,限值为60 mg / kg食品。在来自挪威市场的49个用于食品接触的有机硅产品样品中,测量了硅氧烷的含量。烘烤用涂布纸构成了8个样品,在这些样品中均未发现超过检测限的硅氧烷。在所有剩余的41个样品中,发现硅氧烷含量超过了定量限。硅氧烷主要是环状硅氧烷。产品类型包括烘烤模具和垫子,松饼杯,厨房用具,盒子和奶嘴。与针对D3至D8之和以及D3至D13之和L3至L13之和的建议操作限制相比,有24个样本超出了这些限制。但是,含量是通过提取所分析的硅氧烷的总量来确定的。在进行了迁移测试以评估硅氧烷向食品模拟物中的迁移后,可以得出结论,所有样品均不会超过基于迁移估计的作用极限。有机硅产物表现出宽范围的硅氧烷浓度,并且一个假设可能是具有最高硅氧烷含量的产物没有被适当地固化。根据从生产商处获得的可用样本文档,不可能就此方面得出任何结论。

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