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Loss and in situ production of perfluoroalkyl chemicals in outdoor biosolids-soil mesocosms

机译:室外生物固体-土壤中观世界中全氟烷基化学品的损失和原位生产

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摘要

An outdoor mesocosm study was conducted in Baltimore, Maryland, to explore the fate of thirteen perfluoroalkyl substances (PFASs) over the course of three years in biosolids/soil mixtures (1:2) exposed to ambient outdoor conditions. Analysis by liquid chromatography tandem mass spectrometry showed perfluorooctanoate (PFOA) to be the most abundant analyte found early in the soil weathering experiment at 24.1 ng/g dry weight (dw), followed by perfluoroundecanoate (PFUnDA) and perfluorodecanoate (PFDA) at 18.4 and 17.4 ng/g dw, respectively. Short-chain perfluorinated carboxylates (PFCAs; C4-C8) showed observable loss from biosolids/soil mixtures, with experimentally determined first-order half-lives in soil ranging from 385 to 866 days. Perfluorooctane sulfonate (PFOS), perfluorononaoate (PFNA) and PFUnDA levels in biosolids/soil mixtures remained stable, while other long-chain PFCAs [PFDA, perfluorododecanoate (PFDoDA)] and perfluorooctane sulfonamide (PFOSA) levels increased over time, presumably due to the breakdown of unidentified precursors in a process analogous to that reported previously for wastewater treatment plants. This study informs risk assessment initiatives by furnishing data on the environmental persistence of PFASs while also constituting the first report on in situ production of long-chained PFASs in terrestrial environments.
机译:在马里兰州的巴尔的摩进行了一次室外中观研究,以探索暴露在室外环境下的生物固体/土壤混合物(1:2)中的十三种全氟烷基物质(PFAS)在三年中的命运。液相色谱串联质谱分析表明,全氟辛酸(PFOA)是土壤风化试验早期发现的最丰富的分析物,干重为24.1 ng / g(dw),其次是全氟十一酸酯(PFUnDA)和全氟癸酸酯(PFDA),分别为18.4和分别为17.4 ng / g dw。短链全氟羧酸盐(PFCAs; C4-C8)在生物固体/土壤混合物中表现出可观察到的损失,通过实验确定的在土壤中的一阶半衰期为385天至866天。生物固体/土壤混合物中的全氟辛烷磺酸(PFOS),全氟壬酸(PFNA)和PFUnDA含量保持稳定,而其他长链PFCA [PFDA,全氟十二烷酸酯(PFDoDA)]和全氟辛烷磺酰胺(PFOSA)含量随时间增加,可能是由于未分类的前体的分解过程类似于先前针对废水处理厂报道的过程。这项研究通过提供有关PFAS在环境中的持久性的数据,为风险评估计划提供了依据,同时也构成了关于在陆地环境中长链PFAS的现场生产的第一份报告。

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