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采用在线湍流流动色谱-LC-MS/MS 同时分析不同基质中的几种增塑剂类别。

Simultaneous analysis of several plasticizer classes in different matrices by on-line turbulent flow chromatography-LC-MS/MS.

机构信息

Institute of Environmental Assessment and Water Research (IDAEA)-CSIC, Jordi Girona 18-26, 08034, Barcelona, Spain.

出版信息

Anal Bioanal Chem. 2024 Dec;416(29):6957-6972. doi: 10.1007/s00216-024-05593-2. Epub 2024 Oct 19.

Abstract

The development of methodologies for the determination of plasticizers is essential for assessing the environmental and human impact resulting from the use of plastics. A fast analytical method with on-line purification based on turbulent flow chromatography (TFC) coupled to tandem mass spectrometry (MS-MS) has been developed for the analysis of ten phthalates, four alternative plasticizers (including adipates and citrates), and 20 organophosphate esters (OPEs). The method has been validated for the determination of plasticizers across different matrices. Analytical parameters showed acceptable recoveries ranging between 50 and 125%, RSDs lower than 20%, and mLODs of 0.001-2.08 ng g wet weight (ww), 0.002-0.30 ng g, and 0.001-0.93 ng m for foodstuffs, face masks, and ambient air, respectively. These methodologies were applied to foodstuff samples purchased in grocery stores, reusable and self-filtering masks, and indoor air measured in different locations. Plasticizers were detected in all the analyzed samples, with values up to 22.0 μg g ww, 6.78 μg g, and 572 ng m for foodstuffs, face masks, and indoor air, respectively. The contribution of each family to the total plasticizer content varied between 1.3 and 87%, 0.5 and 98%, and 0.5 and 65% for phthalates, alternative plasticizers, and OPEs, respectively. These findings highlighted the need for analytical methodologies capable of simultaneously assessing a wide number of plasticizers with minimal extraction steps. This capability is crucial in order to obtain more conclusive insights into the impact of these pollutants on both the environment and human health, arising from different sources of exposure such as foodstuffs, plastic materials, and atmospheric air.

摘要

发展用于测定增塑剂的方法对于评估塑料使用所带来的环境和人类影响至关重要。本研究建立了一种基于湍流流色谱(TFC)与串联质谱(MS-MS)联用的快速在线净化分析方法,用于测定十种邻苯二甲酸酯、四种替代增塑剂(包括己二酸酯和柠檬酸酯)和二十种有机磷酸酯(OPEs)。该方法已在不同基质中对增塑剂的测定进行了验证。分析参数显示,回收率在 50%至 125%之间,相对标准偏差(RSD)低于 20%,食品、口罩和环境空气中的方法检测限(mLOD)分别为 0.001-2.08ng/g 湿重(ww)、0.002-0.30ng/g 和 0.001-0.93ng/m。这些方法被应用于在杂货店购买的食品样本、可重复使用和自过滤口罩以及在不同地点测量的室内空气。在所分析的样品中均检测到了增塑剂,其含量最高分别为 22.0μg/g ww、6.78μg/g 和 572ng/m。食品、口罩和室内空气中的增塑剂含量分别以邻苯二甲酸酯、替代增塑剂和 OPEs 为主,其各自的家族对总增塑剂含量的贡献分别在 1.3%至 87%、0.5%至 98%和 0.5%至 65%之间。这些发现突出表明需要开发能够在最小提取步骤下同时评估大量增塑剂的分析方法。这对于从食物、塑料材料和大气空气等不同来源获得更具结论性的关于这些污染物对环境和人类健康影响的见解至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fda/11579108/acd3be042206/216_2024_5593_Fig1_HTML.jpg

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