School of Geography and Tourism, Qufu Normal University, Rizhao, 276826, China.
School of Life Science, Qufu Normal University, Qufu, 273165, China.
Ecotoxicol Environ Saf. 2020 May;194:110404. doi: 10.1016/j.ecoenv.2020.110404. Epub 2020 Mar 5.
Conversion of perfluoroalkyl acid (PFAA) precursors in the environment has been a hotspot research in recent years. This study firstly determined the spatial distribution of PFAAs and their precursors including 8:2 fluorotelomer unsaturated acid (8:2 FTUCA), perfluorooctane sulfoneamide (FOSA), and diperfluorooctane sulfonamido ethanol-based phosphate (di-SAmPAP), then investigated the conversion of the potential precursors in the seawater and sewage treatment plants (STPs) effluents. The results indicated that the target pollutants showed a typical concentration gradient from nearshore to offshore. And the obviously increased concentration of perfluorinated carboxylic acids (△[PFCAs]) after oxidation treatment can verify the existence of PFAA precursors in the seawater and STP effluents. The concentrations of PFCAs with carbon atom numbers 4-9 (PFCA) revealed the most increase. Moreover, the levels of △[PFCAs] and the ratios of △[PFCAs] to their concentration before oxidation (△[PFCA]/[PFCA]) indicated obvious spatial variations in the seawater and STP effluents. The higher levels of △[PFCA] and the lower ratios of ∑△[PFCA]/∑[PFAA] were observed in the STP effluents, which implied that precursors might be decomposed during the sewage treatment process. These results suggested the STP effluents might have an important effect on the PFAAs levels of seawater.
近年来,环境中全氟烷基酸(PFAA)前体的转化已成为热点研究领域。本研究首次测定了全氟烷基酸及其前体(包括 8:2 氟代烯基不饱和酸(8:2FTUCA)、全氟辛烷磺酰胺(FOSA)和二氟辛烷磺酰胺基乙醇基磷酸酯(di-SAmPAP))在海水中的空间分布,并研究了潜在前体在海水中和污水处理厂(STP)废水中的转化。结果表明,目标污染物呈现出从近岸到近海的典型浓度梯度。氧化处理后全氟羧酸(△[PFCAs])浓度的明显增加证实了海水中和 STP 废水中存在 PFAA 前体。碳原子数为 4-9(PFCA)的 PFCAs 浓度增加最多。此外,△[PFCAs]的水平和氧化前后△[PFCAs]与[PFCA]的比值(△[PFCA]/[PFCA])表明海水中和 STP 废水中存在明显的空间变化。STP 废水中△[PFCA]水平较高,∑△[PFCA]/∑[PFAA]比值较低,表明前体可能在污水处理过程中分解。这些结果表明 STP 废水中的 PFAA 可能对海水的水平有重要影响。