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UV photolysis of perfluorooctanoic acid (PFOA) in dilute aqueous solution

机译:稀释水溶液中全氟辛酸(PFOA)的UV光解

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Perfluorooctanoic acid (PFOA) is very persistent in the environment and widely detected in the water environment. Only some advanced methods with extreme reaction conditions are shown to be capable of degrading the compound efficiently, and almost all the earlier investigations used very high PFOA concentrations. The compound is detected normally at very low concentrations in the water environment, while mild reaction conditions for its degradation are preferable. This article aimed to elucidate photodegradation of PFOA in dilute aqueous solutions by combined UV wavelengths (185 nm+254 nm) and 254 nm using a newly designed UV jacket. PFOA degradation was greatly enhanced with the combined wavelengths with almost one hundred percent PFOA removals in four-hour reaction. The removals were well described by the first-order reaction kinetic. The removal efficiencies and rate values significantly decreased with smaller initial PFOA concentrations. But defluorination was greatly enhanced with smaller PFOA concentrations possibly due to accelerated decomposition of fluorinated intermediates of PFOA. Formic acid and acetic acid were two tentatively identified intermediates of PFOA photolysis while the former was a major intermediate predominantly controlling solution pH during the oxidation. The results demonstrated that PFOA photolysis by the combined wavelengths with mild reaction conditions can be greatly enhanced by proper design of UV jacket and reactor system.
机译:全氟辛酸(PFOA)在环境中非常持久,在水环境中被广泛检测到。结果表明,只有某些具有极端反应条件的先进方法能够有效降解该化合物,并且几乎所有较早的研究都使用了很高的PFOA浓度。通常在水环境中以非常低的浓度检测到该化合物,而优选温和的反应条件对其进行降解。本文旨在阐明使用新设计的UV护套通过组合的UV波长(185 nm + 254 nm)和254 nm进行的稀水溶液中PFOA的光降解。在四小时的反应中,通过合并波长,PFOA的降解大大提高,几乎去除了100%PFOA。通过一级反应动力学很好地描述了去除。初始PFOA浓度较小时,去除效率和去除率值会明显降低。但是,由于PFOA的氟化中间体的加速分解,用较小的PFOA浓度可大大增强脱氟作用。甲酸和乙酸是PFOA光解的两个初步确定的中间体,而前者是主要的氧化过程中主要控制溶液pH值的中间体。结果表明,适当设计UV夹套和反应器系统可以大大增强PFOA组合波长与温和反应条件下的光解。

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