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HFPO-DA(GenX)是否适合替代 PFOA?通过电氧化对 PFOA 和 GenX 的全面降解比较。

Is HFPO-DA (GenX) a suitable substitute for PFOA? A comprehensive degradation comparison of PFOA and GenX via electrooxidation.

机构信息

Research Center for Eco-environmental Engineering, Dongguan University of Technology, Dongguan, 523808, PR China.

School of Environmental Science and Engineering, Tianjin University, Tianjin, 300072, PR China.

出版信息

Environ Res. 2022 Mar;204(Pt A):111995. doi: 10.1016/j.envres.2021.111995. Epub 2021 Sep 4.

Abstract

Due to the potential hazard of perfluorooctanoic acid (PFOA), hexafluoropropylene oxide dimer acid (HFPO-DA, GenX) has become a typical alternative since 2009. However, GenX has recently been reported to have equal or even greater toxicity and bioaccumulation than PFOA. Considering the suitability of alternatives, it is quite essential to study and compare the degradation degree between PFOA and GenX in water. Therefore, in the present study, a comprehensive degradation comparison between them via electrooxidation with a titanium suboxide membrane anode was conducted. The degradation rate decreased throughout for PFOA, while it first increased and then decreased for GenX when the permeate flux increased from 17.3 L to 100.3 L m·h. The different responses of PFOA and GenX to flux might be attributed to their different solubilities. In addition, the higher k of PFOA demonstrated that it had a better degradability than GenX by 2.4-fold in a mixed solution. The fluorinated byproduct perfluoropropanoic acid (PFPrA) was detected as a GenX intermediate, suggesting that ether bridge splitting was needed for GenX electrooxidation. This study provides a reference for assessing the degradability of GenX and PFOA and indicates that it is worth reconsidering whether GenX is a suitable alternative for PFOA from the point of view of environmental protection.

摘要

由于全氟辛酸 (PFOA) 存在潜在危害,六氟环氧丙烷二聚酸 (HFPO-DA,GenX) 自 2009 年以来已成为一种典型替代品。然而,最近有报道称 GenX 的毒性和生物累积性与 PFOA 相当,甚至更高。考虑到替代品的适用性,研究和比较水中 PFOA 和 GenX 的降解程度非常重要。因此,本研究采用钛氧化物膜阳极电氧化法对它们进行了全面的降解比较。当渗透通量从 17.3 L 增加到 100.3 L·m·h 时,PFOA 的降解速率持续下降,而 GenX 的降解速率先增加后下降。PFOA 和 GenX 对通量的不同响应可能归因于它们不同的溶解度。此外,PFOA 的更高的 k 值表明,在混合溶液中,它的降解性比 GenX 好 2.4 倍。检测到全氟丙基丙酸 (PFPrA) 作为 GenX 的中间产物,表明 GenX 的电氧化需要醚键断裂。本研究为评估 GenX 和 PFOA 的降解性提供了参考,并表明从环境保护的角度来看,有必要重新考虑 GenX 是否是 PFOA 的合适替代品。

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