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Are (fluorinated) ionic liquids relevant environmental contaminants? High-resolution mass spectrometric screening for per- and polyfluoroalkyl substances in environmental water samples led to the detection of a fluorinated ionic liquid

机译:(氟化)离子液体相关的环境污染物吗? 环境水样品中的高分辨率质谱筛选和聚氟烷基物质导致氟化离子液体的检测

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摘要

Fragmentation flagging (FF), a high-resolution mass spectrometric screening variant that utilizes intentionally produced indicative in-source fragments, was used to screen for per- and polyfluoroalkyl substances (PFASs) in surface waters. Besides expected legacy PFAS, FF enabled the detection of some rarely investigated representatives, such as trifluoromethanesulfonic acid (TFMSA). Additionally, a novel PFAS was detected and identified as tris(pentafluoroethyl)trifluorophosphate (FAP) via MS/MS experiments and confirmed with a reference standard. The first monitoring of FAP in 20 different surface waters revealed a localized contamination affecting three connected rivers with peak concentrations of up to 3.4 mu g/L. To the best of our knowledge, this is the first time FAP has been detected in environmental water samples. The detection of FAP, which is exclusively used as a constituent of ionic liquids (ILs), raises questions about the environmental relevance of ILs in general and particularly fluorinated ILs. A following comprehensive literature search revealed that ILs have already been intensely discussed as potential environmental contaminants, but findings reporting ILs in environmental (water) samples are almost non-existent. Furthermore, we address the relevance of ILs in the context of persistent, mobile, and toxic chemicals, which are at present gaining increasing scientific and regulatory interest, and as part of the PFAS "dark matter" that represents the gap between the amount of fluorine originating from known PFAS and the total adsorbable organically bound fluorine.
机译:碎片标记(FF),利用有意地产生指示性源片内碎片的高分辨率质谱筛选变体用于筛选表面水中的每氟氟烷基物质(PFASS)。除了预期的遗产PFAS之外,FF是否能够检测一些很少研究的代表,例如三氟甲磺酸(TFMSA)。另外,通过MS / MS实验检测并鉴定为三氟磷酸三氟磷酸酯(FAP)并通过参考标准证实了新型PFA。在20种不同的表面水域中的第一次监测FAP揭示了一种影响三个连接河流的局部污染,峰值浓度高达3.4μg/升。据我们所知,这是第一次在环境水样中检测到FAP。 FAP的检测完全用作离子液体(ILS)的组分,提出了关于ILS的环境相关性,特别是氟化ILS的问题。以下综合文学搜索透露,ILS已经被视为潜在的环境污染物,但报告ILS在环境(水)样品中的结果几乎不存在。此外,我们解决了ILS在持续,移动和有毒化学物质上的相关性,目前正在提高科学和监管的兴趣,以及作为PFAS“暗物质”的一部分,其代表氟的量之间的间隙源自已知的PFA和总吸附的有机结合的氟。

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