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Research paper | Publishing Language: Chinese

Mechanisms of PFAS Transport in Groundwater Driven by Seasonal Rainfall

Wenli Song1,2Tianyuan Zheng1,2( )Chao Gao3,4Peihua Li1,2Yujie Hao1,2( )
College of Environmental Science and Engineering, Ocean University of China, Qingdao 266100, China
Shandong Provincial Key Laboratory of Marine Engineering Geology and the Environment, Qingdao 266100, China
College of Civil and Architectural Engineering, Taishan University, Taian 271000, China
Shandong Engineering Research Center of High-Durability and Corrosion-Resistant New Building Materials, Taian 271000, China
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Abstract

Current research on the transport of per- and polyfluoroalkyl substances (PFAS) in groundwater is often confined to steady-state assumptions or laboratory scales, which inadequately capture the nonlinear transport mechanisms driven by seasonal precipitation. To address this gap, this study developed a numerical model based on groundwater flow theory, incorporating adsorption at the air-water interface (AWI). Using perfluorooctanoic acid (PFOA) as a representative PFAS, we conducted a 30-year (1990—2020) dynamic simulation to quantitatively analyze the transport mechanisms under the influence of seasonal precipitation. The results indicate that the AWI in the vadose zone exerts a significant nonlinear retardation effect on PFOA. During dry periods, PFOA accumulates at the AWI; however, abrupt increases in water content during intense rainfall events compress the AWI area, triggering rapid desorption (time lag < 7 d) and subsequent leaching of PFOA into the groundwater. In highly permeable aquifers, this process facilitates the formation of a PFOA plume characterized by low concentrations (< 1 μg/L) but high discharge flux (>0.5 g/(m2·d)). Under high hydraulic gradients (dh/dx> 0.003), advection becomes the dominant transport mechanism, resulting in an elongated plume morphology (length-to-width ratio> 3∶1). This study elucidates the nonlinear regulatory mechanisms of transient hydrological processes on the multi-interfacial behavior of PFAS.

CLC number: P641.2 Document code: A Article ID: 1672-5174(2026)08-114-11

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Periodical of Ocean University of China
Pages 114-124

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Cite this article:
Song W, Zheng T, Gao C, et al. Mechanisms of PFAS Transport in Groundwater Driven by Seasonal Rainfall. Periodical of Ocean University of China, 2026, 56(8): 114-124. https://doi.org/10.16441/j.cnki.hdxb.20260001

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Received: 04 January 2026
Revised: 28 April 2026
Published: 01 August 2026
© Periodical of Ocean University of China