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Fabric phase sorptive extraction: An innovative sample preparation approach applied to the analysis of specific migration from food packaging

机译:织物相吸附萃取:一种创新的样品制备方法,用于分析食品包装中的特定迁移

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Additives added to food packaging materials can migrate to food in contact with them during storage and shelf life. A novel simple, fast and sensitive analyte extraction method based on fabric phase sorptive extraction (FPSE), followed by analysis using ultra-high performance liquid chromatography and mass spectrometry detection (UPLC-MS) was applied to the analysis of 18 common non-volatile plastic additives. Three FPSE media coated with different sol-gel sorbents characterized with different polarities including sol-gel poly(dimethylsiloxane), sol-gel poly(ethylene glycol) and sol-gel poly(tetrahydrofuran) were studied. All three FPSE media showed very satisfactory results. In general, compounds with low logP values seemed to have higher enrichment factors (EFs), especially with poly(tetrahydrofuran) and poly(ethylene glycol) media. For compounds with high logP values, the use of sol-gel poly(dimethylsiloxane) improved the enrichment capacity. Sample preparation time was optimized at 20 min for sample extraction and 10 min for solvent desorption. Acetonitrile was selected as desorption solvent since recoveries were over 70% for 13 out of 18 selected compounds in all FPSE media. The best extraction recovery values were obtained when compounds were dissolved in aqueous acetic acid solution (3%), where 17 out of 18 compounds showed improvement in their signal intensity after FPSE extraction and 10 obtained enrichment factors above 3 for all the tested FPSE media. When FPSE extracts were concentrated under nitrogen, 11 out of 18 compounds reached EFs values above 100. (C) 2016 Elsevier B.V. All rights reserved.
机译:在食品包装材料中添加的添加剂可以在储存和保质期内迁移到与它们接触的食品中。一种基于织物相吸附萃取(FPSE)的新颖,快速,灵敏的分析物萃取方法,然后使用超高效液相色谱和质谱检测(UPLC-MS)进行分析,用于分析18种常见的非挥发性物质塑料助剂。研究了三种涂覆有不同极性的溶胶-凝胶吸附剂的FPSE介质,包括溶胶-凝胶聚二甲基硅氧烷,溶胶-凝胶聚乙二醇和溶胶-凝胶聚四氢呋喃。三种FPSE媒体均显示出非常令人满意的结果。通常,低logP值的化合物似乎具有较高的富集因子(EFs),尤其是在聚四氢呋喃和聚乙二醇介质中。对于具有高logP值的化合物,溶胶-凝胶聚二甲基硅氧烷的使用可提高其富集能力。样品制备时间优化为20分钟(用于样品提取)和10分钟(用于溶剂解吸)。选择乙腈作为脱附溶剂,因为在所有FPSE介质中,从18种选定化合物中,有13种的回收率超过70%。当化合物溶解在乙酸水溶液(3%)中时,可获得最佳的萃取回收率值,其中18种化合物中的17种在FPSE萃取后显示出信号强度的改善,并且所有测试的FPSE介质中有10种的富集系数高于3。当FPSE提取物在氮气下浓缩时,18种化合物中有11种的EFs值超过100.(C)2016 Elsevier B.V.保留所有权利。

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