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Irreversible sorption of trace concentrations of perfluorocarboxylic acids to fiber filters used for air sampling

机译:痕量全氟羧酸对空气采样用纤维过滤器的不可逆吸附

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摘要

Due to the apparent environmental omnipresence of perfluorocarboxylic acids (PFAs), an increasing number of researchers are investigating their ambient particle- and gas-phase concentrations. Typically this is done using a high-volume air sampler equipped with Quartz Fiber Filters (QFFs) or Glass Fiber Filters (GFFs) to sample the particle-bound PFAs and downstream sorbents to sample the gas-phase PFAs. This study reports that at trace, ambient concentrations gas-phase PFAs sorb to QFFs and GFFs irreversibly and hardly pass through these filters to the downstream sorbents. As a consequence, it is not possible to distinguish between particle- and gas-phase concentrations, or to distinguish concentrations on different particle size fractions, unless precautions are taken. Failure to take such precautions could have already caused reported data to be misinterpreted. Here it is also reported that deactivating QFFs and GFFs with a silylating agent renders them suitable for sampling PFAs. Based on the presented study, a series of recommendations for air-sampling PFAs are provided.
机译:由于全氟羧酸(PFA)的明显环境无处不在,越来越多的研究人员正在研究其周围颗粒和气相的浓度。通常,这是通过使用配备有石英纤维过滤器(QFF)或玻璃纤维过滤器(GFF)的大容量空气采样器完成的,以对结合颗粒的PFA和下游吸附剂进行采样,以对气相PFA进行采样。这项研究报告指出,在痕量环境浓度下,气相PFA不可逆地吸附到QFF和GFF,并且几乎不会通过这些过滤器到达下游吸附剂。因此,除非采取预防措施,否则无法区分颗粒浓度和气相浓度,或区别不同粒径分数的浓度。不采取这种预防措施可能已经导致报告的数据被误解。在此还报道了用甲硅烷基化剂使QFF和GFF失活使其适合于对PFA进行采样。根据提出的研究,提供了有关空气采样PFA的一系列建议。

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