Comparing measured and modelled PFOS concentrations in a UK freshwater catchment and estimating emission rates

Research output: Journal contributionsJournal articlesResearchpeer-review

Authors

  • Mark R Earnshaw
  • Alexander G Paul
  • Robert Loos
  • Simona Tavazzi
  • Bruno Paracchini
  • Martin Scheringer
  • Konrad Hungerbühler
  • Kevin C Jones
  • Andrew J Sweetman

The lifecycle, sources and fate of perfluorooctane sulfonate (PFOS) continue to generate scientific and political interest, particularly since PFOS was listed by the Stockholm Convention and largely restricted in Europe. It continues to be detected in aquatic environments, with only limited studies into the on-going sources. This paper explores PFOS emissions discharged by the general population into a small catchment comprising two rivers in the UK. A sampling campaign was undertaken to improve our understanding of population-derived PFOS sources from sewage treatment plants (STPs) and in rivers. A corresponding modelling exercise allowed an emission estimate of 13μg/day/per capita to be derived for the Aire and Calder rivers. PFOS emission was linked to STP discharges bylinear regression of measured and modelled concntrations (R(2)=0.49-0.85). The model was able to accurately estimate the spatial trends of PFOS in the rivers, while predicted concentrations were within a factor of three based on per capita emission values taken from the literature. Measured PFOS concentrations in rivers suggested that emissions from STPs are partially dependent on treatment type, where plants with secondary or tertiary treatment such as activated sludge processes emit less PFOS, possibly due to increased partitioning and retention. With refinements based on the type of treatment at each STP, predictions were further improved. The total PFOS mass discharged annually via rivers from the UK has been estimated to be between 215 and 310kg, based on the per capita emission range derived in this study.

Original languageEnglish
JournalEnvironmental international
Volume70
Pages (from-to)25-31
Number of pages7
ISSN0160-4120
DOIs
Publication statusPublished - 01.09.2014

    Research areas

  • Chemistry - Alkanesulfonic Acids, Environmental Monitoring, Fluorocarbons, Great Britain, Kinetics, Models, Theoretical, Rivers, Sewage, Water Pollutants, Chemical