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April 3, 2026Environmental Science & Technology3 citations

Fluorinated Lithium Salts: A Significant Class of Environmental Pollutants of Emerging Concern from Spent Lithium-Ion Battery Recycling

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XGXiang GeJGJiali GeBDBibai Du

Key Points

  • To investigate the environmental emissions of fluorinated lithium salts during the recycling of lithium-ion batteries.
  • Established a targeted screening list of 11 fluorinated lithium salts.
  • Sampled and analyzed dust and black mass from a lithium-ion battery recycling plant.
  • Measured concentrations of fluorinated lithium salts in various environments.
  • Detected nine fluorinated lithium salts in dust and seven in black mass samples.
  • Lithium hexafluorophosphate was the most prevalent compound identified.
  • Total concentrations of fluorinated lithium salts ranged from 581 to 47,500 ng/g in dust, with higher levels in dismantling areas.

Abstract

Fluorinated lithium (Li) salts are essential constituents of Li-ion battery (LIB) electrolytes, yet their environmental emissions during the rapidly expanding recycling of retired LIBs remain unexplored. Herein, we established a targeted screening list of 11 commonly used fluorinated Li salts and reported their first identification in dust and recycled black mass (BM; a powder-like primary form of crushed spent LIBs after pyrolysis) from a typical spent LIB recycling plant in China. Nine and seven fluorinated Li salts were detected in the dust and BM samples, respectively, with lithium hexafluorophosphate as the dominant compound, followed by lithium bis(fluorosulfonyl)imide and lithium bis(trifluoromethanesulfonyl)imide. Total concentrations of fluorinated Li salts (∑F-Li salts) exhibited high levels ranging from 581 to 47,500 ng/g (median: 12,100 ng/g) in ambient dust, with significantly higher levels in LIB dismantling areas than in nondismantling areas. By contrast, ∑F-Li salts in BM samples were much lower (<LOD-1800 ng/g; median: 17.8 ng/g), indicating that fugitive emissions to the environment or the transformation/decomposition of fluorinated Li salts occurred during high-temperature pyrolysis. Our findings demonstrate that spent LIB recycling contributes to substantial emissions of fluorinated Li salts into the surrounding environment, highlighting the need for further evaluation of their environmental impacts.

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Cite This Study

Ge et al. (2026) studied this question.

synapsesocial.com/papers/69cf5f645a333a821460e7achttps://doi.org/10.1021/acs.est.5c16864
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