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Validation of quantitative measurements and semi-quantitative estimates of emerging perfluoroethercarboxylic acids (PFECAs) and hexfluoroprolyene oxide acids (HFPOAs)

机译:验证新兴全氟醚羧酸(PFECA)和六氟丙烯氧化酸(HFPOA)的定量测​​量和半定量估计

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摘要

Legacy perfluorinated compounds exhibit significant environmental persistence and bioaccumulation potential, which has spawned an ongoing effort to introduce replacement compounds with reduced toxicological risk profiles. Many of these emerging chemical species lack validated quantitative methods, and, frequently, appropriate analytical standards for accurate monitoring and identification. To fill this knowledge gap, a general method for the quantitative determination of perfluoroether carboxylic acids (PFECAs) by LC–MS/MS was single-lab validated on spike-recovery samples in surface, drinking, and wastewater for a variety of perfluorinated ether standards. Relative error measurements for spike-recovery samples in each matrix ranged from 0.36% to 25.9%, with an average error of 10% overall. Coefficient of variation (CV) for each compound ranged from 10 to 28% with an average of 17%. The quantitative methodology was applied during repeated weekly monitoring of the Cape Fear River during remediation of PFECA hexafluoropropyloxide dimer-acid (HFPO-DA), known by the brand name “GenX.” Semi-quantitative concentration estimates for emerging PFECA compounds lacking analytical standards was also carried out using surrogate calibration curves and mass labeled HFPO-DA as an internal standard. Estimates of the emerging compounds were possible using matched standards, but application of the estimation methodology to compounds with known concentration revealed that such estimates may possess up to an order of magnitude, or more, in uncertainty due to the difficulty of matching with an appropriate standard. Nevertheless, the estimation biases are primarily systematic (extraction efficiency and instrument response) rather than stochastic, enabling the collection of time-course data; both HFPO-DA and the emerging compounds were reduced in surface water and drinking water concentration of several orders of magnitude after removal of the source waste stream.
机译:传统的全氟化化合物显示出显着的环境持久性和生物蓄积潜力,这催生了不断的努力来引入具有降低的毒理学风险特征的替代化合物。这些新兴化学物种很多都缺乏经过验证的定量方法,而且缺乏用于准确监控和鉴定的适当分析标准。为了填补这一知识空白,通过LC-MS / MS定量测定水,废水和废水中加标回收样品的全氟醚羧酸(PFECA)通用方法,适用于各种全氟醚标准品。每个基质中加标回收样品的相对误差测量范围为0.36%至25.9%,总体平均误差为10%。每种化合物的变异系数(CV)为10%至28%,平均为17%。在对PFECA六氟环氧丙烷二聚酸(HFPO-DA)进行补救的过程中,每周对Cape Fear River进行每周一次的重复监测,采用了定量方法,该商标名为“ GenX”。还使用替代品校准曲线和质量标记的HFPO-DA作为内标,对缺乏分析标准品的新兴PFECA化合物进行了半定量浓度估算。可以使用匹配的标准品对新兴化合物进行估算,但是将估算方法应用于已知浓度的化合物表明,由于难以与合适的标准品相匹配,此类估算值可能具有高达一个数量级或更多的不确定性。 。然而,估计偏差主要是系统性的(提取效率和仪器响应),而不是随机的,从而可以收集时程数据;去除源废水后,HFPO-DA和新兴化合物的地表水和饮用水浓度均降低了几个数量级。

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