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首页> 外文期刊>Analytical chemistry >Fluorine-Specific Detection Using ICP-MS Helps to Identify PFAS Degradation Products in Nontargeted Analysis
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Fluorine-Specific Detection Using ICP-MS Helps to Identify PFAS Degradation Products in Nontargeted Analysis

机译:使用ICP-MS的氟特异性检测有助于识别非准注油分析中的PFAS降解产物

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摘要

Although several per- and polyfluoroalkyl substances (PFAS) have been banned and classified as substances of very high concern by the European Chemicals Agency, similar chemicals remain widely used compounds to date. Even though more than 4700 PFASs may occur in the environment, only 40-50 compounds are routinely determined in targeted analysis by ESI-MS using isotopically labeled standards. Nontargeted analysis using high resolution (HR) molecular mass spectrometry suffers from a lack of data mining algorithms for identification and often low ionization efficiency of the compounds. An additional problem for quantification is the potential lack of suitable species specific standards. Here, we demonstrate the usefulness of a hard ionization source (ICP-MS/MS) as a fluorine-specific detector in combination with ESI-MS for the identification of fluorine containing compounds. Simultaneous hyphenation of HPLC-ICP-MS/MS with HR-ESI-MS is applied to evaluate biodegradation products of organofluorine compounds by sewage sludge. The data are analyzed in a nontarget approach using MZmine. Due to the fluorine-specific detection by ICP-MS/MS, more than 5000 peaks (features) of the ESI-MS were reduced to 15 features. Of these, one was identified as a PFAS degradation compound of fluorotelomer alcohol (8:2 FTOH) without using targeted analysis. The feasibility of the detection of organofluorine metabolites using a fluorine-specific detection was demonstrated using a model compound and can thus be applied to new experiments and unknown organofluorine containing samples in the future.
机译:尽管欧洲化学品管理局已经禁止了几种全氟和多氟烷基物质(PFA),并将其列为高度关注的物质,但迄今为止,类似的化学品仍然被广泛使用。尽管环境中可能会出现4700多个PFASs,但在ESI-MS使用同位素标记标准进行的靶向分析中,通常只能测定40-50种化合物。使用高分辨率(HR)分子质谱法进行的非目标分析缺乏用于识别的数据挖掘算法,并且化合物的电离效率通常较低。量化的另一个问题是,可能缺乏适用于特定物种的标准。在这里,我们证明了硬电离源(ICP-MS/MS)作为氟特异性检测器与ESI-MS相结合用于识别含氟化合物的有用性。将HPLC-ICP-MS/MS与HR-ESI-MS同时联用,用于评价污水污泥对有机氟化合物的生物降解产物。使用MZmine以非目标方法分析数据。由于采用ICP-MS/MS进行氟特异性检测,ESI-MS的5000多个峰(特征)减少到15个特征。其中一种被确定为氟调聚物醇(8:2 FTOH)的PFAS降解化合物,无需进行靶向分析。使用模型化合物证明了使用氟特异性检测法检测有机氟代谢物的可行性,因此可以应用于未来的新实验和未知有机氟样品。

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