Department of Applied Environmental Science (ITM), Stockholm University, SE-10691, Stockholm, Sweden,
Environ Sci Pollut Res Int. 2013 Nov;20(11):7949-58. doi: 10.1007/s11356-013-1596-y. Epub 2013 Mar 15.
Polyfluoroalkyl phosphate mono-, di-, and tri-esters (mono-, di-, and triPAPs) are used to water- and grease-proof food packaging materials, and these chemicals are known precursors to perfluoroalkyl carboxylic acids (PFCAs). Existing analytical methods for PAPs lack sample clean-up steps in the sample preparation. In the present study, a method based on ultra performance liquid chromatography coupled to tandem mass spectrometry (UPLC/MS/MS) was developed and optimized for the analysis of mono-, di-, and triPAPs, including a clean-up step for the raw extracts. The method was applied to food samples and their PAP-containing packaging materials. The optimized UPLC/MS/MS method enabled the separation and identification of a total of 4 monoPAPs, 16 diPAPs, and 7 triPAPs in the technical mixture Zonyl®-RP. For sample clean-up, weak anion exchange solid phase extraction columns were tested. PAPs standard solutions spiked onto the columns were separated into a fraction containing neutral compounds (triPAPs) and a fraction with ionic compounds (mono- and diPAPs) with recoveries between 72-110%. Method limits of quantification for food samples were in the sub to low picogram per gram range. For quantitative analysis of PAPs, compound-specific labeled internal standards showed to be essential as sorption and matrix effects were observed. Mono-, di-, and/or triPAPs were detected in all food packaging materials obtained from the Swedish market. Up to nine diPAPs were detected in the food samples, with the 6:2/6:2 and 6:2/8:2 diPAPs as the dominant compounds. DiPAP concentrations in the food samples ranged from 0.9 to 36 pg/g, which was comparable to individual PFCA concentrations in the same samples. Consumption of food packed in PAP-containing materials could be an indirect source of human exposure to PFCAs.
多氟磷酸单酯、二酯和三酯(单、二和三 PAPs)用于防水和防油脂的食品包装材料,这些化学品是已知的全氟烷基羧酸(PFCAs)的前体。现有的 PAP 分析方法在样品制备中缺乏样品净化步骤。在本研究中,开发并优化了一种基于超高效液相色谱-串联质谱(UPLC/MS/MS)的方法,用于分析单、二和三 PAPs,包括原始提取物的净化步骤。该方法应用于食品样品及其含 PAP 的包装材料。优化后的 UPLC/MS/MS 方法能够分离和鉴定 Zonyl®-RP 技术混合物中总共 4 种单 PAPs、16 种二 PAPs 和 7 种三 PAPs。对于样品净化,测试了弱阴离子交换固相萃取柱。将 PAPs 标准溶液加标到柱子上,可分为中性化合物(三 PAPs)和离子化合物(单和二 PAPs)两部分,回收率在 72-110%之间。食品样品的方法检出限在亚皮克/克到低皮克/克范围内。对于 PAPs 的定量分析,由于观察到吸附和基质效应,使用化合物特异性标记的内标物是必不可少的。从瑞典市场获得的所有食品包装材料中均检测到单、二和/或三 PAPs。在食品样品中检测到多达 9 种二 PAPs,其中 6:2/6:2 和 6:2/8:2 二 PAPs 是主要化合物。食品样品中二 PAPs 的浓度范围为 0.9 至 36 皮克/克,与同一样品中单个 PFCAs 的浓度相当。食用含 PAP 材料包装的食物可能是人体接触 PFCAs 的间接来源。