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商用塑料食品容器中银的迁移及其对消费者暴露评估的影响。

Migration of silver from commercial plastic food containers and implications for consumer exposure assessment.

机构信息

Institute for Chemical and Bioengineering, ETH Zurich, Zurich, Switzerland.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2013;30(3):612-20. doi: 10.1080/19440049.2012.762693. Epub 2013 Feb 13.

DOI:10.1080/19440049.2012.762693
PMID:23406534
Abstract

Food storage containers with embedded silver as an antibacterial agent promise longer durability of food. For risk assessment the release of this silver into the stored food and resulting human exposure need to be known. For the purpose of exposure assessment, silver migration from commercial plastic containers with declared content of 'nano-' or 'micro-silver' into different food simulants (water, 10% ethanol, 3% acetic acid, olive oil) was quantitatively determined by ICP-MS and the form of the released silver was investigated. The highest migration of silver was observed for the acidic food simulant with 30 ng silver cm(-2) contact surface within 10 days at 20°C. In a second and third use cycle, migration dropped by a factor of up to 10, so that the maximum cumulated release over three use cycles was 34 ng cm(-2). The silver release over time was described using a power function and a numerical model that simulates Fickian diffusion through the plastic material. The released silver was found to be in ionic form, but also in the form of silver nanoparticles (around 12%). Consumer exposure to the total amount of silver released from the food containers is low in comparison with the background silver exposure of the general population, but since natural background concentrations are only known for ionic silver, the exposure to silver nanoparticles is not directly comparable with a safe background level.

摘要

作为抗菌剂的嵌入式银的食品储存容器有望延长食品的保质期。为了进行风险评估,需要了解这种银会释放到储存的食物中,以及人类会因此暴露于其中。为了进行暴露评估,通过 ICP-MS 定量测定了商业塑料容器(宣称含有“纳米”或“微银”)中银向不同食品模拟物(水、10%乙醇、3%乙酸、橄榄油)的迁移情况,并研究了释放出的银的形态。在 20°C 下,10 天内酸性食品模拟物的接触表面上的银迁移量最高,达到 30ng/cm²。在第二和第三个使用周期中,迁移量下降了 10 倍,因此在三个使用周期内的最大累积释放量为 34ng/cm²。通过幂函数和模拟塑料材料中菲克扩散的数值模型描述了随时间的银释放情况。释放出的银被发现呈离子形式,但也呈银纳米颗粒形式(约 12%)。与一般人群的自然背景银暴露相比,从食品容器中释放出的银总量对消费者的暴露量较低,但由于天然背景浓度仅适用于离子银,因此无法将暴露于银纳米颗粒与安全的背景水平直接进行比较。

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