Literature DB >> 23590254

Zwitterionic, cationic, and anionic fluorinated chemicals in aqueous film forming foam formulations and groundwater from U.S. military bases by nonaqueous large-volume injection HPLC-MS/MS.

Will J Backe1, Thomas C Day, Jennifer A Field.   

Abstract

A new analytical method was developed to quantify 26 newly-identified and 21 legacy (e.g. perfluoroalkyl carboxylates, perfluoroalkyl sulfonates, and fluorotelomer sulfonates) per and polyfluorinated alkyl substances (PFAS) in groundwater and aqueous film forming foam (AFFF) formulations. Prior to analysis, AFFF formulations were diluted into methanol and PFAS in groundwater were micro liquid-liquid extracted. Methanolic dilutions of AFFF formulations and groundwater extracts were analyzed by large-volume injection (900 μL) high-performance liquid chromatography tandem mass spectrometry. Orthogonal chromatography was performed using cation exchange (silica) and anion exchange (propylamine) guard columns connected in series to a reverse-phase (C18) analytical column. Method detection limits for PFAS in groundwater ranged from 0.71 ng/L to 67 ng/L, and whole-method accuracy ranged from 96% to 106% for analytes for which matched authentic analytical standards were available. For analytes without authentic analytical standards, whole-method accuracy ranged from 78 % to 144 %, and whole-method precision was less than 15 % relative standard deviation for all analytes. A demonstration of the method on groundwater samples from five military bases revealed eight of the 26 newly-identified PFAS present at concentrations up to 6900 ng/L. The newly-identified PFAS represent a minor fraction of the fluorinated chemicals in groundwater relative to legacy PFAS. The profiles of PFAS in groundwater differ from those found in fluorotelomer- and electrofluorination-based AFFF formulations, which potentially indicates environmental transformation of PFAS.

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Year:  2013        PMID: 23590254     DOI: 10.1021/es3034999

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


  28 in total

1.  Evaluation of a national data set for insights into sources, composition, and concentrations of per- and polyfluoroalkyl substances (PFASs) in U.S. drinking water.

Authors:  Jennifer L Guelfo; David T Adamson
Journal:  Environ Pollut       Date:  2018-05       Impact factor: 8.071

2.  Adsorption of PFOA at the Air-Water Interface during Transport in Unsaturated Porous Media.

Authors:  Ying Lyu; Mark L Brusseau; Wei Chen; Ni Yan; Xiaori Fu; Xueyu Lin
Journal:  Environ Sci Technol       Date:  2018-06-26       Impact factor: 9.028

3.  Assessing the potential contributions of additional retention processes to PFAS retardation in the subsurface.

Authors:  Mark L Brusseau
Journal:  Sci Total Environ       Date:  2017-09-12       Impact factor: 7.963

4.  Biotransformation of AFFF Component 6:2 Fluorotelomer Thioether Amido Sulfonate Generates 6:2 Fluorotelomer Thioether Carboxylate under Sulfate-Reducing Conditions.

Authors:  Shan Yi; Katie C Harding-Marjanovic; Erika F Houtz; Ying Gao; Jennifer E Lawrence; Rita V Nichiporuk; Anthony T Iavarone; Wei-Qin Zhuang; Martin Hansen; Jennifer A Field; David L Sedlak; Lisa Alvarez-Cohen
Journal:  Environ Sci Technol Lett       Date:  2018-04-04

5.  Waste type, incineration, and aeration are associated with per- and polyfluoroalkyl levels in landfill leachates.

Authors:  Helena M Solo-Gabriele; Athena S Jones; Andrew B Lindstrom; Johnsie R Lang
Journal:  Waste Manag       Date:  2020-04-15       Impact factor: 7.145

6.  Are (fluorinated) ionic liquids relevant environmental contaminants? High-resolution mass spectrometric screening for per- and polyfluoroalkyl substances in environmental water samples led to the detection of a fluorinated ionic liquid.

Authors:  Isabelle J Neuwald; Daniel Zahn; Thomas P Knepper
Journal:  Anal Bioanal Chem       Date:  2020-03-31       Impact factor: 4.142

7.  Reconstructing the Composition of Per- and Polyfluoroalkyl Substances in Contemporary Aqueous Film-Forming Foams.

Authors:  Bridger J Ruyle; Colin P Thackray; James P McCord; Mark J Strynar; Kevin A Mauge-Lewis; Suzanne E Fenton; Elsie M Sunderland
Journal:  Environ Sci Technol Lett       Date:  2021-01-12

8.  Contribution of Nonaqueous-Phase Liquids to the Retention and Transport of Per and Polyfluoroalkyl Substances (PFAS) in Porous Media.

Authors:  Sarah Van Glubt; Mark L Brusseau
Journal:  Environ Sci Technol       Date:  2021-03-05       Impact factor: 9.028

9.  Identifying Per- and Polyfluorinated Chemical Species with a Combined Targeted and Non-Targeted-Screening High-Resolution Mass Spectrometry Workflow.

Authors:  James McCord; Mark Strynar
Journal:  J Vis Exp       Date:  2019-04-18       Impact factor: 1.355

10.  A Roadmap to the Structure-Related Metabolism Pathways of Per- and Polyfluoroalkyl Substances in the Early Life Stages of Zebrafish (Danio rerio).

Authors:  Jiajun Han; Wen Gu; Holly Barrett; Diwen Yang; Song Tang; Jianxian Sun; Jiabao Liu; Henry M Krause; Keith A Houck; Hui Peng
Journal:  Environ Health Perspect       Date:  2021-07-21       Impact factor: 9.031

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