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探索目标 PFAS 在运输和储存阶段的提取废水中的完整性。

Exploring the integrity of targeted PFASs in extracted wastewater samples during transport and storage stages.

机构信息

RECETOX, Faculty of Science, Masaryk University, Kamenice 753/5, 625 00, Brno, Czech Republic.

Environmental Chemistry Laboratory, California Department of Toxic Substances Control (DTSC), Berkeley, CA, 94710, United States.

出版信息

Chemosphere. 2021 Nov;282:131065. doi: 10.1016/j.chemosphere.2021.131065. Epub 2021 Jun 1.

Abstract

Little information exists on the effects of shipping and handling on per- and polyfluoroalkyl substances (PFASs) in environmental samples. Thus, we evaluated the integrity of dried wastewater extracts and the sensitivity of our high-resolution mass spectrometry (HRMS) instrument to perform such analyses by monitoring 13 representative PFASs in samples extracted, evaporated, and stored at room temperature up to one month. Relative to zero-day recoveries of six detected PFASs ranged between 94 and 124% (RSD <38%) for influents, between 88 and 126% (RSD <18%) for effluents after 28 days. Larger variabilities are tentatively associated with the lack of specific mass-labeled standards and the interactions between analytes and remaining matrix components over time. In a second stage, a mix of local and international dry-shipped wastewater samples were analyzed and the same PFASs were quantified. Up to six PFASs were identified, with median concentrations ranging from 1.3 (perfluoro butyl sulfonate (PFBS)) to 7.7 ng/L (perfluoro hexanoic acid (PFHxA)) and from 1.5 (PFBS) to 13.8 ng/L (PFHxA) in local influents and effluents respectively; and from 0.7 (perfluoro hexyl sulfonate (PFHxS)) to 52.8 ng/L (PFHxA) and from 0.5 (PFHxS) to 21.4 ng/L (PFHxA) in Greek influents and effluents, respectively. The importance of this study lies on the need to consider the wider recovery shifts and expanded variability ranges of PFASs derived from the transport and storage times of dried extracts, particularly when applied to HRMS and wide-scope screening approaches.

摘要

关于运输和处理对环境样品中全氟和多氟烷基物质(PFASs)的影响,相关信息有限。因此,我们通过监测在室温下提取、蒸发和储存长达一个月的样本中 13 种代表性的 PFASs,评估了干燥废水提取物的完整性以及我们的高分辨率质谱(HRMS)仪器进行此类分析的灵敏度。与零天回收率相比,六种检测到的 PFASs 的相对回收率在进水样本中为 94%至 124%(RSD<38%),在 28 天后的出水样本中为 88%至 126%(RSD<18%)。更大的变异性可能与缺乏特定的质量标记标准以及分析物与剩余基质成分随时间的相互作用有关。在第二阶段,分析了当地和国际的干运废水样本混合物,并对相同的 PFASs 进行了定量分析。鉴定出了六种 PFASs,中位数浓度范围分别为本地进水 1.3ng/L(全氟丁基磺酸盐(PFBS))至 7.7ng/L(全氟己酸(PFHxA))和本地出水 1.5ng/L(PFBS)至 13.8ng/L(PFHxA);希腊进水 0.7ng/L(全氟己基磺酸盐(PFHxS))至 52.8ng/L(PFHxA)和希腊出水 0.5ng/L(PFHxS)至 21.4ng/L(PFHxA)。这项研究的重要性在于需要考虑从干燥提取物的运输和储存时间衍生的 PFASs 的更广泛的回收率变化和扩大的可变性范围,特别是当应用于 HRMS 和广泛范围的筛选方法时。

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