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Evaluating the saturated paste extraction method for determining PFAS solid-liquid partitioning coefficients (Kd) in
Oscar Liljeström1, Dan Berggren Kleja2, Malin Ellbrant3
1Swedish University of Agricultural Sciences (SLU), Department of Aquatic Sciences and Assessment, P. O. Box 7050, SE-750 07, Uppsala, Sweden.
None:
Per- and polyfluoroalkyl substances (PFAS) is a chemical family that contains many mobile compounds, including through groundwater transport. As much of the world's water supply originates from groundwater, it is crucial to predict PFAS transport through these systems, governed by their solid-liquid partitioning coefficient (Kd). In this study, Kd of PFAS in low (<0.2%) organic carbon (OC) sandy aquifers from PFAS-contaminated sites were determined using i) batch leaching tests ii) field-derived Kd values based on analyses of drill cores and groundwater, and iii) the saturated paste extraction method (SPEM). A strong correlation was observed between SPEM-derived Kd values and PFAS perfluoroalkyl chain length, demonstrating that SPEM is sufficiently sensitive to resolve small differences in PFAS Kd even at low absolute values. Extraction time of SPEM was critical, with Kd values increasing during prolonged extraction, likely due to air entering the soil column, increasing the air-water interface area. A suitable extraction time was identified as 10-15 s, corresponding to the extraction of ∼40% of the total liquid volume. The mean Kd values from the 10-15 s SPEM extraction ranged from 0.0034 (perfluoropentanoic acid (PFPeA)) to 1.4 (perfluorooctanoic sulfonic acid (PFOS)), with an increase in Kd of ∼0.41 log units per perfluoroalkyl carbon. 6:2 fluorotelomer sulfonamido betaine (FTAB) exhibited a higher Kd of 6.3, likely due to its bulky and zwitterionic head group. The SPEM-derived Kd agreed with the field-derived values. This study highlights SPEM as a promising method for determining PFAS Kd in low sorption environments and the high mobility of PFAS in low-OC sand aquifers.
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