Plymouth University, B525 Portland Square, Drake Circus, Plymouth, Devon PL4 8AA, UK.
Atkins Limited, 500, Park Avenue, Aztec West, Almondsbury, Bristol BS32 4RZ, UK.
Sci Total Environ. 2021 Oct 15;791:148391. doi: 10.1016/j.scitotenv.2021.148391. Epub 2021 Jun 9.
This study comprises a detailed analysis of data for perfluorooctanesulfonic acid (PFOS), and perfluorooctanoic acid (PFOA) for over 600 wastewater treatment works effluents (WwTW) as well as samples upstream and downstream of each discharge of effluent into its receiving water. This has allowed an investigation of not only the effectiveness of removal of the perfluoroalkyl substances (PFAS) compounds during wastewater treatment but also implications for compliance with the environmental quality standard (EQS) set for PFOS under the Water Framework Directive. It is shown that effluents contain concentrations of PFOS that exceed the annual average EQS by a factor between 1.1-fold and 40-fold. The corresponding factors for PFOA are between 2-fold and 22-fold. The presence of high concentrations upstream, means that between a quarter and a third of individual effluents are found to reduce the concentration of fluorocarbons in the river downstream of the discharge point. The elevated concentrations upstream of the studied wastewater treatment works suggest inputs of these perfluoro compounds into the aquatic environment are ubiquitous and therefore difficult to address from simply setting permit conditions for individual WwTW. The freshwater EQS set for PFOS is based on several worst-case accumulation coefficients and large safety factors, which, when combined, result in a sub ng/L EQS. Consequently, the use of the biota derived quality standard may be a more realistic measure of environmental risk. It may be prudent, to assess the effectiveness of controls implemented in the last few years before considering widespread end-of-pipe treatment.
本研究对超过 600 个污水处理厂(WwTW)的废水以及每个排放口的废水进入接收水前后的样本中的全氟辛烷磺酸(PFOS)和全氟辛酸(PFOA)数据进行了详细分析。这不仅可以调查在废水处理过程中去除全氟烷基物质(PFAS)化合物的效果,还可以调查遵守《水框架指令》为 PFOS 设定的环境质量标准(EQS)的情况。结果表明,废水中的 PFOS 浓度超过 EQS 的年均值 1.1 至 40 倍。PFOA 的相应因子在 2 至 22 倍之间。上游高浓度的存在意味着在单个废水中,有四分之一到三分之一的废水在排放点下游的河流中降低了氟碳化合物的浓度。研究中的污水处理厂上游的浓度升高表明,这些全氟化合物已经普遍存在于水生环境中,因此,仅通过为个别 WwTW 设置许可条件来解决这些化合物的问题是困难的。PFOS 的淡水 EQS 是基于几个最坏情况的累积系数和大的安全系数,当它们结合在一起时,会产生 sub ng/L 的 EQS。因此,使用生物群衍生的质量标准可能是衡量环境风险的更现实的措施。在考虑广泛的终端处理之前,评估过去几年实施的控制措施的有效性可能是谨慎的。