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Probabilistic migration modelling focused on functional barrier efficiency and low migration concepts in support of risk assessment

机译:概率迁移模型侧重于功能障碍效率和低迁移概念,以支持风险评估

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摘要

Migration modelling provides reliable migration estimates from food-contact materials (FCM) to food or food simulants based on mass-transfer parameters like diffusion and partition coefficients related to individual materials. In most cases, mass-transfer parameters are not readily available from the literature and for this reason are estimated with a given uncertainty. Historically, uncertainty was accounted for by introducing upper limit concepts first, turning out to be of limited applicability due to highly overestimated migration results. Probabilistic migration modelling gives the possibility to consider uncertainty of the mass-transfer parameters as well as other model inputs. With respect to a functional barrier, the most important parameters among others are the diffusion properties of the functional barrier and its thickness. A software tool that accepts distribution as inputs and is capable of applying Monte Carlo methods, i.e., random sampling from the input distributions of the relevant parameters (i.e., diffusion coefficient and layer thickness), predicts migration results with related uncertainty and confidence intervals. The capabilities of probabilistic migration modelling are presented in the view of three case studies (1) sensitivity analysis, (2) functional barrier efficiency and (3) validation by experimental testing. Based on the predicted migration by probabilistic migration modelling and related exposure estimates, safety evaluation of new materials in the context of existing or new packaging concepts is possible. Identifying associated migration risk and potential safety concerns in the early stage of packaging development is possible. Furthermore, dedicated material selection exhibiting required functional barrier efficiency under application conditions becomes feasible. Validation of the migration risk assessment by probabilistic migration modelling through a minimum of dedicated experimental testing is strongly recommended.
机译:迁移建模基于传质参数(例如与各个材料相关的扩散系数和分配系数),提供了从食品接触材料(FCM)到食品或食品模拟物的可靠迁移估计。在大多数情况下,传质参数不易从文献中获得,因此,在给定不确定性的情况下进行了估算。从历史上看,不确定性是通过首先引入上限概念来解决的,由于高度估计了迁移结果,结果证明适用性有限。概率迁移模型可以考虑传质参数以及其他模型输入的不确定性。关于功能性阻挡层,最重要的参数是功能性阻挡层的扩散特性及其厚度。接受分布作为输入并能够应用蒙特卡洛方法(即从相关参数(即扩散系数和层厚度)的输入分布中随机采样)的软件工具预测具有相关不确定性和置信区间的迁移结果。在以下三个案例研究中介绍了概率迁移建模的功能:(1)敏感性分析,(2)功能屏障效率和(3)通过实验测试进行验证。基于通过概率迁移模型预测的迁移以及相关的暴露估计,可以在现有或新包装概念的背景下对新材料进行安全性评估。在包装开发的早期阶段识别相关的迁移风险和潜在的安全隐患是可能的。此外,在应用条件下表现出所需功能阻挡效率的专用材料选择变得可行。强烈建议通过最少的专用实验测试通过概率迁移模型来验证迁移风险评估。

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