Structural dependence of PFAS oxidation in a boron doped diamond-electrochemical system

被引:11
|
作者
Zeidabadi, Fatemeh Asadi [1 ]
Esfahani, Ehsan Banayan [1 ]
Moreira, Raphaell [1 ]
Mcbeath, Sean T. [2 ]
Foster, Johan [1 ]
Mohseni, Madjid [1 ]
机构
[1] Univ British Columbia, Dept Chem & Biol Engn, 2360 East Mall, Vancouver, BC, Canada
[2] Univ Massachusetts Amherst, Dept Civil & Environm Engn, Amherst, MA 01002 USA
基金
加拿大自然科学与工程研究理事会;
关键词
Alternative PFAS; Reactive radicals; Fluorine recovery; F-19; recovery; Decomposition pathway; Telomer PFAS; PERFLUOROALKYL SUBSTANCES; PERFLUOROOCTANOIC ACID; HYDRATED ELECTRONS; CARBOXYLIC-ACIDS; DEGRADATION; WATER; MINERALIZATION; MECHANISM; SULFONATE; PATHWAYS;
D O I
10.1016/j.envres.2024.118103
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Driven by long-term persistence and adverse health impacts of legacy perfluorooctanoic acid (PFOA), production has shifted towards shorter chain analogs (C4, perfluorobutanoic acid (PFBA)) or fluorinated alternatives such as hexafluoropropylene oxide dimer acid (HFPO-DA, known as GenX) and 6:2 fluorotelomer carboxylic acid (6:2 FTCA). Yet, a thorough understanding of treatment processes for these alternatives is limited. Herein, we conducted a comprehensive study using an electrochemical approach with a boron doped diamond anode in Na2SO4 electrolyte for the remediation of PFOA common alternatives, i.e., PFBA, GenX, and 6:2 FTCA. The degradability, fluorine recovery, transformation pathway, and contributions from electro-synthesized radicals were investigated. The results indicated the significance of chain length and structure, with shorter chains being harder to break down (PFBA (65.6 +/- 5.0%) < GenX (84.9 +/- 3.3%) < PFOA (97.9 +/- 0.1%) < 6:2 FTCA (99.4 +/- 0.0%) within 120 min of electrolysis). The same by-products were observed during the oxidation of both low and high concentrations of parent PFAS (2 and 20 mg L-1), indicating that the fundamental mechanism of PFAS degradation remained consistent. Nevertheless, the ratio of these by-products to the parent PFAS concentration varied which primarily arises from the more rapid PFAS decomposition at lower dosages. For all experiments, the main mechanism of PFAS oxidation was initiated by direct electron transfer at the anode surface. Sulfate radical (SO4(sic)-) also contributed to the oxidation of all PFAS, while hydroxyl radical ((OH)-O-(sic)) only played a role in the decomposition of 6:2 FTCA. Total fluorine recovery of PFBA, GenX, and 6:2 FTCA were 96.5%, 94.0%, and 76.4% within 240 min. The more complex transformation pathway of 6:2 FTCA could explain its lower fluorine recovery. Detailed decomposition pathways for each PFAS were also proposed through identifying the generated intermediates and fluorine recovery. The proposed pathways were also assessed using 19F Nuclear Magnetic Resonance (NMR) spectroscopy.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Effective degradation of the antineoplastic doxorubicin by electrochemical oxidation on boron doped diamond
    Garcia, Luane Ferreira
    Goncalves Moreno, Emily Kussmaul
    Brito, Lara Barroso
    Rodrigues de Oliveira, Gisele Augusto
    Linares, Jose J.
    Gil, Eric de Souza
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2020, 870 (870)
  • [22] Electrochemical oxidation of organic compounds on boron-doped diamond electrodes
    Lochynski, Pawel
    Dittmar, Thomas
    Worch, Eckhard
    Kuczewski, Krzysztof
    PRZEMYSL CHEMICZNY, 2015, 94 (12): : 2275 - 2278
  • [23] A kinetic study of the electrochemical oxidation of maleic acid on boron doped diamond
    Elsa Weiss
    Karine Groenen-Serrano
    André Savall
    Christos Comninellis
    Journal of Applied Electrochemistry, 2007, 37 : 41 - 47
  • [24] Boron-Doped Diamond Electrodes for the Electrochemical Oxidation and Cleavage of Peptides
    Roeser, Julien
    Alting, Niels F. A.
    Permentier, Hjalmar P.
    Bruins, Andries P.
    Bischoff, Rainer
    ANALYTICAL CHEMISTRY, 2013, 85 (14) : 6626 - 6632
  • [25] Electrochemical Oxidation of Sulfonamides with Boron-Doped Diamond and Pt Anodes
    Li, Hongna
    Jiang, Huan
    Liu, Chong
    Zhu, Changxiong
    Zhu, Xiuping P.
    CHEMISTRYOPEN, 2019, 8 (12): : 1421 - 1428
  • [26] Electrochemical oxidation of ionic liquids at highly boron doped diamond electrodes
    Fabianska, Aleksandra
    Ossowski, Tadeusz
    Bogdanowicz, Robert
    Czupryniak, Justyna
    Gnyba, Marcin
    Odzga, Tomasz
    Janssens, Stoffel D.
    Haenen, Ken
    Siedlecka, Ewa M.
    PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2012, 209 (09): : 1797 - 1803
  • [27] Electrochemical oxidation of NADH at highly boron-doped diamond electrodes
    Rao, TN
    Yagi, I
    Miwa, T
    Tryk, DA
    Fujishima, A
    ANALYTICAL CHEMISTRY, 1999, 71 (13) : 2506 - 2511
  • [28] Electrochemical oxidation of sulfide ion at a boron-doped diamond anode
    Waterston, Katie
    Bejan, Dorin
    Bunce, Nigel J.
    Journal of Applied Electrochemistry, 2007, 37 (03): : 367 - 373
  • [29] Electrochemical oxidation of sulfide ion at a boron-doped diamond anode
    Waterston, Katie
    Bejan, Dorin
    Bunce, Nigel J.
    JOURNAL OF APPLIED ELECTROCHEMISTRY, 2007, 37 (03) : 367 - 373
  • [30] Electrochemical oxidation of sulfa drugs at boron-doped diamond electrodes
    Rao, TN
    Sarada, BV
    Tryk, DA
    Fujishima, A
    DIAMOND MATERIALS VI, 2000, 99 (32): : 507 - 511