4.5 Article

In situ measurement-based partitioning behavior of perfluoroalkyl acids in the atmosphere

Journal

ENVIRONMENTAL ENGINEERING RESEARCH
Volume 25, Issue 3, Pages 281-289

Publisher

KOREAN SOC ENVIRONMENTAL ENGINEERS
DOI: 10.4491/eer.2019.130

Keywords

Acidity; Fog; Inter-phase distribution; Ioniable organic pollutants; PFAAs; pKa

Funding

  1. Incheon National University

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Environmental fate of ionizable organic pollutants such as perfluoroalkyl acids (PFAAs) are of increasing interest but has not been well understood because of uncertain values for parameters related with atmospheric interphase partitioning behavior. In the present study, not only the values for air-water partition coefficient (K-AW) and dissociation constant (pKa) of PFAAs were induced by adjusting to in situ measurements of air-water distribution coefficient between vapor phase and rainwater but also gas-particle partition coefficients were also estimated using three-phase partitioning model of ionizable organic pollutants, in situ measurements of PFAAs in aerosol and air vapor phase, and obtained parameter values. The pKa values of PFAAs we obtained were close to the minimum values suggested in literature except for perfluorooctane sulfonic acids, and COSMOtherm-modeled K-AW values were assessed to more appropriate among suggested values. When applying parameter values we obtained, it was predicted that air particle-associated fate and transport of PFAAs could be negligible and PFAAs could distribute ubiquitously along the transection from urban to rural region by pH-dependent phase transfer in air. Our study is expected to have some implications in prediction of the environmental redistribution of other ionizable organic compounds.

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