On-Demand Webinar Recording

PFAS  is a group of contaminants for which the picture is complex in terms of  occurrence, composition, tools for risk assessment and remedial  actions. In this work a comprehensive characterization of PFAS in five  AFFF polluted soils was performed. This included known “regular” PFAS  (34), a range of “novel” PFAS e.g. ethers, sulphonamides (SA),  ultrashort and the known AFFF constituent 6:2 FTAB. TOPA (including  ultrashort) was used as a tool for determining precursors and gain  information on their (basic) structures. Leaching tests (EN12457-2;  L/S=10) were carried out; novel and PFAS34 were determined in leachates  before TOPA and PFAS34 after. The pattern of formed PFCA and  branched/linear (Br/L) isomers before/after TOPA were evaluated to  distinguish between ECF vs fluorotelomerization (FT) production. Results  showed that the PFAS composition reflected AFFF used and was mirrored  in both soils and leachates. Regular PFAS34 made up <5-100% in  soil/leachate of the sum after TOPA, a fraction not possible to assess  on beforehand. Formation of ultrashort PFAS, especially PFPrA after TOPA  was highly significant corresponding to 23-47% on a molar basis. 6:2  FTAB was found in all soils and was the dominant PFAS in two. Patterns  of PFCA formed indicated origin of the precursors, primarily 6:2 but  also 8:2 FT based. Br forms suggested minor contributions of C6/C8 SAs.  Measured precursors, in particular 6:2 FTAB could explain some of total  PFCA formed but the major part remained unknown.

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About the speakers

 

 


Patrick  van Hees,

Eurofins Environment

Patrick  van Hees works at Eurofins Environment in Sweden with business  development and technical support, and is also a part-time senior  adjunct lecturer at Örebro University (SE). Patrick is an Assoc Prof in  the field of analytical soil chemistry, and research has concerned  clean-up of contaminated soil as well as more basic soil processes.  Besides Sweden, Patrick has also worked at universities in the UK and  Japan. Current interests include analytical development for soil, waste  and other environmental matrices, both inorganic and organic compounds.  Patrick is also the company’s representative at the Swedish Standards  Institute (SIS) since 13 years.