
Abstract A wide range of PFAS residues were studied in an aquifer used for drinking water production which was affected by historical PFAS contamination from a landfill and military camp. Samples were taken at three monitoring and four pumping wells at different depths ranging from 33 to 147 m below the land surface and analysed for a series of 53 PFAS (C2-C14) and PFAS precursors (C4-C24). A comparison of results to earlier research from 2013, with a more limited range of PFAS, showed decreasing concentrations and migration of PFAS with increasing depth and distance from the contamination source. The PFAS profile and branched/linear isomer ratio are used as source characterization tools. The landfill was confirmed to contaminate the groundwater in both monitoring wells, while the military camp was indicated as a probable source for PFAS observed in the deep sampling points of one of the monitoring wells. Pumping wells used to produce drinking water are not yet affected by these two PFAS sources. In one of the four sampled pumping wells, a different PFAS profile and isomer pattern was observed, which indicated a different but yet unknown source. This work shows the necessity of implementing regular screening to identify potential (historical) PFAS sources to be able to prevent future contaminant migration nearby and towards drinking water abstraction wells. Keywords Sources identification PFAS profile PFAS isomers Landfill contamination Groundwater
This submission contains the following materials: Main Manuscript. Supplementary Information. Excel File: PFAS measurement data (in ng/L) presented in Table S4, including concentrations of each PFAS found in each filter of monitoring well (F1-MW1 to F6-MW1, F1-MW2 to F5-MW2), pumping well (PW1-PW4), and raw and drinking water samples.
Fluorocarbons, PFAS profile, Sources identification, Drinking Water, 628, PFAS isomers, Landfill contamination, Groundwater, Water Pollutants, Chemical, Environmental Monitoring
Fluorocarbons, PFAS profile, Sources identification, Drinking Water, 628, PFAS isomers, Landfill contamination, Groundwater, Water Pollutants, Chemical, Environmental Monitoring
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