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Photodegradation of perfluorooctanoic acid by 185 nm vacuum ultraviolet light

机译:185 nm真空紫外光对全氟辛酸的光降解

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The photodegradation of persistent and bioaccumulative perfluorooctanoic acid (PFOA) in water by 185 nm vacuum ultraviolet (VUV) light was examined to develop an effective technology to deal with PFOA pollution. PFOA degraded very slowly under irradiation of 254 nm UV light. However, 61.7% of initial PFOA was degraded by 185 nm VUV light within 2 h, and defluorination ratio reached 17.1%. Pseudo first-order-kinetics well simulated its degradation and defluorination. Besides, fluoride ion formed in water, 4 shorter-chain perfluorinated carboxylic acids (PFCAs), that is, perfluoroheptanoic acid, perfluorohexanoic acid, perfluoropentanoic acid, and perfluorobutanoic acid. These were identified as intermediates by LC-MS measurement. These PFCAs consecutively formed and further degraded with irradiation time. According to the mass balance calculation, no other byproducts were formed. It was proposed that PFCAs initially are decarboxylated by 185 nm light, and the radical thus formed reacts with water to form shorter-chain PFCA with one less CF_2 unit.
机译:研究了185 nm真空紫外(VUV)光对水中持久性和生物累积性全氟辛酸(PFOA)的光降解,以开发一种有效的技术来处理PFOA污染。在254 nm紫外线照射下,PFOA降解非常缓慢。然而,在2 h内,185 nm的VUV光降解了初始PFOA的61.7%,脱氟率达到了17.1%。伪一级动力学很好地模拟了其降解和脱氟。此外,氟离子在水中形成了4种短链全氟羧酸(PFCA),即全氟庚酸,全氟己酸,全氟戊酸和全氟丁酸。通过LC-MS测量将它们鉴定为中间体。这些PFCAs连续形成并随着照射时间而进一步降解。根据质量平衡计算,没有形成其他副产物。有人提出,PFCA最初会被185 nm的光脱羧,因此形成的自由基与水反应形成CF_2单元少一个的短链PFCA。

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