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William H. Pennock

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Open access Aug 2026

Hydrophobic Ion Pairing with Cationic Surfactant Modifies Surface Activity and Colloidal Behavior of PFAS

Quaternary ammonium compounds (QACs) are increasingly used to enhance the removal of per- and polyfluoroalkyl substances (PFAS), particularly short-chain compounds, through hydrophobic ion pairing (HIP). Here, we investigated how HIP with cetyltrimethylammonium chloride (CTAC) influences the interfacial and colloidal behavior of selected PFAS at low-micromolar concentrations below reported critical micelle concentrations (CMCs) and across varying solution chemistries (pH, ionic strength, and natural organic matter) using surface tension measurements, dynamic light scattering (DLS), ζ-potential analysis, and transmission electron microscopy (TEM). Relative to the corresponding PFAS-only controls, CTAC (6.66 μM) reduced the surface tension of PFBA, PFBS, and PFOA solutions (3.33 μM each) by 24.64, 45.71, and 70.17%, respectively. PFOS exhibited little additional surface-tension response to CTAC but responded strongly to a shorter-chain QAC (C12), indicating that interfacial behavior depends on fluorocarbon–hydrocarbon chain-length compatibility. Targeted DLS, ζ-potential, and TEM characterization identified detectable bulk coassembly in selected PFAS–QAC systems at concentrations of 3.33–33.30 μM. Electrolyte addition produced PFAS-dependent changes in interfacial behavior, while NOM reduced the interfacial activity of several mixtures. These findings provide mechanistic insight into PFAS–QAC behavior relevant to the development of QAC-assisted PFAS separation processes.

B. Pandey, Ligaya Manalastas, Afaq Ahmad et al. · 0 citations

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