全氟辛烷
磺酸盐
降级(电信)
环境化学
分解
污染
水处理
纳米颗粒
人类健康
化学
环境科学
材料科学
纳米技术
环境卫生
环境工程
计算机科学
有机化学
医学
电信
生态学
生物
钠
作者
Andrea Veciana,Sarah Steiner,Qiao Tang,Vitaly Pustovalov,Joaquin Llacer‐Wintle,Jiang Wu,Xiang‐Zhong Chen,Trust Manyiwa,Venecio U. Ultra,Beltzane Garcia‐Cirera,Josep Puigmartí‐Luis,Carlos Franco,David J. Janssen,Laura Nyström,Samy Boulos,Salvador Pané
标识
DOI:10.1002/smsc.202400337
摘要
Per‐ and polyfluoroalkyl substances (PFAS) pose significant environmental and health risks due to their ubiquitous presence and persistence in water systems. Herein, the efficacy of piezocatalysis using barium titanate nanoparticles under ultrasound irradiation for the degradation and defluorination of perfluorooctane sulfonate (PFOS) in water is investigated. The research demonstrates a substantial 90.5% degradation and 29% defluorination of PFOS after 6 h of treatment, highlighting the potential of piezocatalysis as a promising approach for PFAS degradation. Additionally, the quantification of degradation products elucidates the transformation pathways of PFOS, suggesting a stepwise chain‐shortening mechanism. The findings underscore the importance of continued research in optimizing piezocatalytic processes and exploring synergistic approaches with other advanced oxidation methods to effectively address PFAS contamination challenges. These efforts are essential for advancing sustainable water treatment strategies and mitigating the environmental and health hazards associated with PFAS contamination.
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