首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Degradation of perfluorooctanoic acid adsorbed on Fe-zeolites with molecular oxygen as oxidant under UV-A irradiation
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Degradation of perfluorooctanoic acid adsorbed on Fe-zeolites with molecular oxygen as oxidant under UV-A irradiation

机译:用分子氧在氧化物氧气下吸附在Fe-沸石上的全氟辛酸的降解

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摘要

Perfluorooctanoic acid (PFOA) is of emerging concern owing to its global distribution and environmental persistence. Efficient degradation approaches are so far limited. Herein, we demonstrate for the first time the photochemical degradation of PFOA under UV-A irradiation after adsorption on Fe-doped zeolites with molecular oxygen as the terminal oxidant. In a system containing 1 g L-1 PFOA-loaded Fe-zeolites, outstanding PFOA decomposition (> 99 %) was achieved within 24 h under slightly acidic conditions (pH <= 5.5). Short-chain perfluorinated carboxylic acids (PFCAs) are the main intermediates, beside fluoride and CO2. No PFOA degradation occurs with Fe-free zeolites or dissolved ferric ions. Furthermore, we investigated the effects of pH, inorganic ions and gas atmospheres on PFOA degradation. A photochemical degradation mechanism with zeolite-bound iron species as catalytic sites for carboxylate-to-metal charge transfer is proposed. The presented study offers a novel approach for the removal of the highly recalcitrant PFOA from contaminated waters.
机译:由于其全球分布和环境持久性,全氟辛酸(PFOA)是出现的令人担忧。有效的降解方法是如此受限。在此,我们证明了第一次PFOA在紫外线辐射下PFOA的光学劣化,其在具有分子氧的Fe掺杂沸石作为末端氧化剂的辐射之后。在含有1g L-1 PFOA的Fe-沸石的系统中,在略微酸性条件下在24小时内实现优异的PFOA分解(> 99%)(pH <= 5.5)。短链全氟化羧酸(PFCAs)是氟化物和CO 2旁边的主要中间体。无氟沸石或溶解的铁离子不发生PFOA降解。此外,我们研究了pH,无机离子和气体环境对PFOA降解的影响。提出了具有沸石结合铁物质作为羧酸盐 - 金属电荷转移的催化位的光化学降解机理。本研究提供了一种从污染水域去除高顽醋栗PFOA的新方法。

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