Hampton Roads Sanitation District, 1434 Air Rail Avenue, Virginia Beach, VA, 23455, United States.
Water Quality Research and Development, Southern Nevada Water Authority, 1299 Burkholder Blvd., Henderson, United States.
Chemosphere. 2021 Jan;262:127900. doi: 10.1016/j.chemosphere.2020.127900. Epub 2020 Aug 6.
Sequencing batch reactors (SBRs) were operated for 36 days to simulate the potential wastewater treatment impacts as well as fate and transport of per- and polyfluoroalkyl substances (PFAS) that could be associated with a release of alcohol resistant aqueous film forming foam (AR-AFFF) from on-site methanol fire suppression systems. The results of this study indicate that two days of exposure to AFFF were associated with small reductions in mixed liquor solids content and nitrification rates. No impacts on denitrification or biological phosphorus removal were observed. The addition of AFFF was associated with increases in 6:2 fluorotelomer sulfonate (6:2 FTS) in influent, effluent, and solids samples in the SBR. The following biotransformation pathway is proposed: an unidentified fluorotelomer precursor quickly degraded to 6:2 FTS, which then slowly degraded to several identified degradation intermediates and terminal, short-chain perfluorocarboxylic acid products. Data for 6:2 FTS, which was used as a proxy for AFFF-associated PFAS, were extrapolated to estimate that a removal of approximately 70% of AFFF via effluent and solids wasting would occur after 4 days at a full-scale treatment plant. This information can be used to better understand potential impacts on downstream processes, including potable reuse and biosolids production.
序列间歇式反应器(SBR)运行 36 天,模拟了现场甲醇灭火系统中释放的耐酒精水成膜泡沫(AR-AFFF)可能带来的废水处理影响,以及全氟和多氟烷基物质(PFAS)的归趋和传输。本研究结果表明,接触 AFFF 两天会导致混合液悬浮固体含量和硝化速率略有降低。未观察到反硝化或生物除磷受到影响。AFFF 的添加会导致 SBR 进水、出水和固体样品中 6:2 氟代烷烃磺酸盐(6:2 FTS)的增加。提出了以下生物转化途径:一种未识别的氟代烷烃前体迅速降解为 6:2 FTS,然后缓慢降解为几种已识别的降解中间产物和终端短链全氟羧酸产物。以 6:2 FTS 作为与 AFFF 相关的 PFAS 的替代物的数据被外推,以估计在全规模处理厂经过 4 天的处理后,通过废水和固体浪费会去除约 70%的 AFFF。这些信息可用于更好地了解对下游工艺的潜在影响,包括饮用水再利用和生物固体生产。