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Empirical models to predict the effect of sterilisation and storage on bisphenols migration from metallic can coatings into food simulants

机译:预测灭菌和存储对双酚从金属罐涂料迁移到食品模拟物中的影响的经验模型

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摘要

Based on response surface methodology, empirical models were built to predict the influence of can processing (heat treatment) and storage conditions (time and temperature) on the migration of bisphenol compounds from the inner lacquer of tinplate cans (4 brands) into several food simulants. Analysis using liquid chromatography revealed the presence of BADGE.2H(2)O and BPA in all samples. Models were significant in fitting the levels of these two bisphenols in food simulants depending on the input variables, with excellent adjusted coefficients of determination. Their prediction performance was validated through running new data sets. Further comparison of predicted values with bisphenols levels measured in canned vegetables revealed that the proposed models are conservative. By the desirability of the response output, the models are capable of proposing the range of can processing and storage conditions that limit migration for further compliance with the regulation. The proposed approach could be a convenient tool for the industries to control processing conditions in order to ensure the conformity of canned foods.
机译:基于响应面方法,建立了经验模型来预测罐加工(热处理)和储存条件(时间和温度)对双酚类化合物从马口铁罐内漆(4个品牌)向几种食品模拟物中迁移的影响。使用液相色谱分析显示所有样品中都存在BADGE.2H(2)O和BPA。根据输入变量,模型具有显着的拟合食物模拟物中这两种双酚含量的作用,并且具有出色的调整后测定系数。通过运行新数据集验证了其预测性能。罐装蔬菜中双酚水平的预测值与进一步的比较表明,提出的模型是保守的。通过对响应输出的期望,这些模型能够提出一系列罐加工和存储条件,这些条件限制了迁移以便进一步符合法规。所提出的方法对于工业控制加工条件以确保罐头食品的一致性可能是一种方便的工具。

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