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Chemometric Assessment and Best-Fit Function Modelling of the Toxic Potential of Selected Food Packaging Extracts

机译:食品包装提取物毒性潜力的化学计量学评估和最佳拟合函数建模

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摘要

Food packaging materials constitute an ever more threatening environmental pollutant. This study examined options to specifically assess the ecotoxicity of packaged wastes, such as cans, subjected to various experimental treatments (in terms of extraction media, time of exposure, and temperature) that imitate several basic conditions of the process of food production. The extracts were studied for their ecotoxicity with bioluminescent Vibrio fischeri bacteria. The first objective of this study was to find patterns of similarity between different experimental conditions; we used multivariate statistical methods, such as hierarchical cluster analysis, to interpret the impact of experimental conditions on the ecotoxicity signals of the package extracts. Our second objective was to apply best-fit function modelling for additional data interpretation, taking into account, that ecotoxicity for various temperature conditions is time- and temperature dependent. We mathematically confirmed that chemometric data treatment allows for better understanding how different experimental conditions imitating the real use of food packaging. We also demonstrate that the level of ecotoxicity depends on different extraction media, time of exposure, and temperature regime.
机译:食品包装材料构成了越来越具有威胁性的环境污染物。这项研究检查了一些选项,以专门评估经过包装的废物(如罐头)的生态毒性,这些废物经过各种实验处理(就提取介质,暴露时间和温度而言),这些处理模仿了食品生产过程中的几个基本条件。研究了提取物与生物发光费氏弧菌的生态毒性。这项研究的第一个目标是发现不同实验条件之间的相似性模式。我们使用多元统计方法(例如层次聚类分析)来解释实验条件对包装提取物生态毒性信号的影响。我们的第二个目标是将最佳拟合函数模型用于其他数据解释,同时考虑到各种温度条件下的生态毒性取决于时间和温度。我们从数学上证实了化学计量数据处理可以更好地理解不同的实验条件如何模仿食品包装的实际使用。我们还证明了生态毒性的程度取决于不同的提取介质,暴露时间和温度范围。

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