Acidimicrobium sp. Strain A6 (A6) can degrade perfluoroalkyl acids (PFAAs) by oxidizing NH(4)(+) while reducing Fe(â ¢). However, supplying and distributing Fe(III) phases in sediments is challenging since surface charges of Fe(III)-phases are typically positive while those of sediments are negative. Therefore, ferrihydrite particles were coated with polyacrylic acid (PAA) with four different molecular weights, resulting in a negative zeta potential on their surface. Zeta potential was determined as a function of pH and PAA loading, with the lowest value observed when the PAA/ferrihydrite ratio was >Â 1/5 (w/w) at a pH of 5.5. Several 50-day incubations with an A6-enrichment culture were conducted to determine the effect of PAA-coated ferrihydrite as the electron acceptor of A6 on the Feammox activity and PFOA degradation. NH(4)(+) oxidation, PFOA degradation, production of shorter-chain PFAS, and F(-) were observed in all PAA-coated samples. The 6Â K and 450Â K treatments exhibited significant reductions in PFOA concentration and substantial F(-) production compared to incubations with bare ferrihydrite. Electrochemical impedance spectroscopy showed lowered charge transfer resistance in the presence of PAA-coated ferrihydrite, indicating that PAAs facilitated electron transfer to ferrihydrite. This study highlights the potential of PAA-coated ferrihydrite in accelerating PFAS defluorination, providing novel insights for A6-based bioremediation strategies.
Enhanced Feammox activity and perfluorooctanoic acid (PFOA) degradation by Acidimicrobium sp. Strain A6 using PAA-coated ferrihydrite as an electron acceptor.
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作者:Park Jinhee, Huang Shan, Koel Bruce E, Jaffé Peter R
| 期刊: | Journal of Hazardous materials | 影响因子: | 11.300 |
| 时间: | 2023 | 起止号: | 2023 Oct 5; 459:132039 |
| doi: | 10.1016/j.jhazmat.2023.132039 | ||
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