Skip to main content
U.S. flag

An official website of the United States government

Aging of biosolids in fields prolongs the release of biosolid-borne PFAS and promotes the release of select PFCA in water

September 16, 2026

Land application of biosolids can introduce PFAS into croplands. Biosolids transported to surface waters through runoff may subsequently release PFAS into aquatic environments. The objective was to evaluate the effects of the aging of biosolids and the presence of sediment on the release of biosolid-borne PFAS to water at the water-sediment interface under anaerobic conditions. Through two independent rounds of microcosm experiments, we demonstrate that by day 136, most of the PFAS compounds (e.g., perfluorocarboxylic acids, or PFCAs) released <10 ng per g biosolids dry weight, except for 5:3 FTCA. Kinetically, the aging process substantially delayed the release of some long-chain PFAS (i.e., PFNA, PFDA, and PFOS) to water, due to the collapse of the porous structure of biosolids during aging. After day 136, the amount of long-chain PFAS released from aged biosolids reached levels similar to those released from the fresh biosolids due to the recovery of the pore structure during the release experiment. Mass balance analysis showed considerably higher, final masses of PFPeA, PFHxA, and PFOA than their initial masses, suggesting that precursors were biotransformed into these compounds during the release experiment, and biosolid aging led to elevated biotransformation and release of these three PFCAs. Sediment had little effect on the kinetics or extent of PFAS release from biosolids, except that the extent of FTCA release was reduced in the presence of sediment potentially due to adsorption. Overall, biosolid aging can delay the release of long-chain PFAS and promote the biotransformation to and release of PFCAs.

Publication Year 2027
Title Aging of biosolids in fields prolongs the release of biosolid-borne PFAS and promotes the release of select PFCA in water
DOI 10.1016/j.watres.2026.126921
Authors Qu Wen, Daniel S Snow, Nirupam Aich, Michelle M. Lorah, Kelly L. Smalling, John Hribljan, Paul Ayayee, Xudong Lin
Publication Type Article
Publication Subtype Journal Article
Series Title Water Research
Index ID 70280425
Record Source USGS Publications Warehouse
USGS Organization New Jersey Water Science Center
Was this page helpful?