Air Force Civil Engineer Center, Joint Base San Antonio, TX, USA.
Wood Environment & Infrastructure Solutions, Inc., Knoxville, TN, USA.
Chemosphere. 2022 Dec;308(Pt 1):136247. doi: 10.1016/j.chemosphere.2022.136247. Epub 2022 Aug 29.
Per- and polyfluoroalkyl substances (PFAS) measurable in soil porewater authoritatively represent the mobile mass fraction critical to accurate assessment of leaching from source zones. This study evaluated PFAS occurrence in lysimeter-collected porewater samples for two depth intervals at a decades-old aqueous film-forming foam (AFFF)-impacted field site quarterly for a year. Notably, site-wide Log (∑PFAS) concentrations did not significantly differ among sampling events despite highly variable sample yields due to a heterogeneous and dynamic soil moisture regime. However, Log (∑PFAS) concentrations were significantly higher in the shallow interval concordant with higher mean soil concentrations and higher total organic carbon (TOC) reflecting net retention, which is supported by soil-to-groundwater annual mass discharge estimates less than 0.2% of the total source mass for any given PFAS. Interestingly, PFAS-specific Log (soil-to-porewater ratios) significantly increased with soil concentration in both depth intervals contrary to concentration dependence resulting from the saturation of sorption sites potentially implicating self-assembly as an additional operative retention mechanism. Overall, these data validate the use of suction lysimeters for short-term site characterization deployments and emphasize the importance of in situ porewater samples for interrogating PFAS transport within source zones.
可测量的土壤孔隙水中的全氟和多氟烷基物质(PFAS)权威地代表了从源区淋滤中进行准确评估的关键移动质量分数。本研究在一个具有数十年历史的水成膜泡沫(AFFF)影响的现场,每季度对两个深度间隔的渗流计收集的孔隙水样本进行了为期一年的评估。值得注意的是,尽管由于土壤湿度条件的不均匀性和动态性导致样本产量高度变化,但所有采样事件的 Log(∑PFAS)浓度均无显著差异。然而,浅层间隔的 Log(∑PFAS)浓度明显较高,与较高的平均土壤浓度和较高的总有机碳(TOC)相一致,这反映了净保留,这得到了土壤-地下水年排放量估计的支持,对于任何给定的 PFAS,排放量都不到总源质量的 0.2%。有趣的是,在两个深度间隔内,PFAS 特定的 Log(土壤-孔隙水比)与土壤浓度呈显著正相关,这与由于吸附位点饱和而导致的浓度依赖性相反,这可能暗示自组装是一种额外的操作保留机制。总体而言,这些数据验证了使用吸力渗流计进行短期现场特征描述部署的有效性,并强调了原位孔隙水样本对于研究源区内部 PFAS 运移的重要性。