Literature DB >> 19174905

Experimental pKa determination for perfluorooctanoic acid (PFOA) and the potential impact of pKa concentration dependence on laboratory-measured partitioning phenomena and environmental modeling.

Darcy C Burns1, David A Ellis, Hongxia Li, Colin J McMurdo, Eva Webster.   

Abstract

An accurately measured equilibrium acid dissociation constant (pKa) is essential for understanding and predicting the fate of perfluorocarboxylic acids (PFCAs) in the environment. The aqueous pKa of perfluorooctanoic acid (PFOA) has been determined potentiometrically using a standard water-methanol mixed solvent approach and was found to be 3.8 +/- 0.1. The acidity of PFOA is thus considerably weaker than its shorter-chain PFCA homologues. This was attributed to differences in molecular and electronic structure, coupled with solvation effects. The pKa of PFOA was suppressed to approximately 2.3 at higher concentrations because of the aggregation of perfluorooctanoate (PFO). Often, PFCA partion coefficients are determined at concentrations above those found in the environment. Thus, it was suggested that a pKa correction factor, which accounts for this concentration-dependent shift in acid/base equilibrium, should be applied to PFCA partition efficients before they are implemented in environmental fate models. A pKa of 3.8 +/- 0.1 suggests that a considerable concentration of the PFCA exists as the neutral species in the aqueous environment for example, in typical Ontario rainwater, it is approximately 17%. Transport, fate, and partitioning models have often ignored the presence this species completely. The environmental dissemination of PFCAs could, in part, be explained by considering the role of the neutral species.

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Year:  2008        PMID: 19174905     DOI: 10.1021/es802047v

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  11 in total

1.  Rapid and effective removal of perfluorooctanoic acid from proteomics samples.

Authors:  Chandra Sekhar Rao Kadiyala; Vennela Mullangi; Xiang Zhou; Krishna M Vukoti; Masaru Miyagi
Journal:  Proteomics       Date:  2012-08       Impact factor: 3.984

2.  Ion and organic transport in Graphene oxide membranes: Model development to difficult water remediation applications.

Authors:  Ashish Aher; Trisha Nickerson; Clair Jordan; Fox Thorpe; Evan Hatakeyama; Lindell Ormsbee; Mainak Majumder; Dibakar Bhattacharyya
Journal:  J Memb Sci       Date:  2020-03-12       Impact factor: 10.530

3.  Efficient solubilization and purification of highly insoluble membrane proteins expressed as inclusion bodies using perfluorooctanoic acid.

Authors:  Sarah M Plucinsky; Kyle T Root; Kerney Jebrell Glover
Journal:  Protein Expr Purif       Date:  2017-10-21       Impact factor: 1.650

4.  Analysis of hexafluoropropylene oxide-dimer acid (HFPO-DA) by Liquid Chromatography-Mass Spectrometry (LC-MS): Review of Current Approaches and Environmental Levels.

Authors:  Lauren Mullin; David Katz; Nicole Riddell; Robert Plumb; Jennifer A Burgess; Leo W Y Yeung; Ingrid Ericson Jogsten
Journal:  Trends Analyt Chem       Date:  2019       Impact factor: 12.296

5.  Understanding potential exposure sources of perfluorinated carboxylic acids in the workplace.

Authors:  Mary A Kaiser; Barbara J Dawson; Catherine A Barton; Miguel A Botelho
Journal:  Ann Occup Hyg       Date:  2010-10-25

6.  Perfluorooctanoic acid for shotgun proteomics.

Authors:  Chandra Sekhar Rao Kadiyala; Sara E Tomechko; Masaru Miyagi
Journal:  PLoS One       Date:  2010-12-30       Impact factor: 3.240

Review 7.  Perfluoroalkyl and polyfluoroalkyl substances in the environment: terminology, classification, and origins.

Authors:  Robert C Buck; James Franklin; Urs Berger; Jason M Conder; Ian T Cousins; Pim de Voogt; Allan Astrup Jensen; Kurunthachalam Kannan; Scott A Mabury; Stefan P J van Leeuwen
Journal:  Integr Environ Assess Manag       Date:  2011-10       Impact factor: 2.992

8.  Treatment of Aqueous Film-Forming Foam by Heat-Activated Persulfate Under Conditions Representative of In Situ Chemical Oxidation.

Authors:  Thomas A Bruton; David L Sedlak
Journal:  Environ Sci Technol       Date:  2017-11-22       Impact factor: 9.028

Review 9.  Nano-Sized Cyclodextrin-Based Molecularly Imprinted Polymer Adsorbents for Perfluorinated Compounds-A Mini-Review.

Authors:  Abdalla H Karoyo; Lee D Wilson
Journal:  Nanomaterials (Basel)       Date:  2015-06-04       Impact factor: 5.076

10.  Ice Nucleation Activity of Perfluorinated Organic Acids.

Authors:  Ralph Schwidetzky; Yuling Sun; Janine Fröhlich-Nowoisky; Anna T Kunert; Mischa Bonn; Konrad Meister
Journal:  J Phys Chem Lett       Date:  2021-03-31       Impact factor: 6.475

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