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Characterization of the thermolysis products of Nafion membrane: A potential source of perfluorinated compounds in the environment

机译:Nafion膜的热解产物的表征:环境中全氟化化合物的潜在来源

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摘要

The thermal decomposition of Nafion N117 membrane, a typical perfluorosulfonic acid membrane that is widely used in various chemical technologies, was investigated in this study. Structural identification of thermolysis products in water and methanol was performed using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC/ESI-MS/MS). The fluoride release was studied using an ion-chromatography system, and the membrane thermal stability was characterized by thermogravimetric analysis. Notably, several types of perfluorinated compounds (PFCs) including perfluorocarboxylic acids were detected and identified. Based on these data, a thermolysis mechanism was proposed involving cleavage of both the polymer backbone and its side chains by attack of radical species. This is the first systematic report on the thermolysis products of Nafion by simulating its high-temperature operation and disposal process via incineration. The results of this study indicate that Nafion is a potential environmental source of PFCs, which have attracted growing interest and concern in recent years. Additionally, this study provides an analytical justification of the LC/ESI-MS/MS method for characterizing the degradation products of polymer electrolyte membranes. These identifications can substantially facilitate an understanding of their decomposition mechanisms and offer insight into the proper utilization and effective management on these membranes.
机译:本研究对Nafion N117膜(一种典型的全氟磺酸膜,在各种化学技术中广泛使用)的热分解进行了研究。使用液相色谱-电喷雾电离串联质谱(LC / ESI-MS / MS)对水和甲醇中的热分解产物进行结构鉴定。使用离子色谱系统研究氟的释放,并通过热重分析表征膜的热稳定性。值得注意的是,检测并鉴定了包括全氟羧酸在内的几种全氟化合物(PFC)。基于这些数据,提出了一种热解机理,涉及通过自由基物种的攻击而裂解聚合物主链及其侧链。这是通过模拟Nafion的高温运行和焚烧处置过程而获得的有关Nafion热解产物的第一份系统报告。这项研究的结果表明,Nafion是PFC的潜在环境来源,近年来引起了越来越多的关注和关注。此外,这项研究为表征聚合物电解质膜的降解产物提供了LC / ESI-MS / MS方法的分析依据。这些鉴定可以大大促进对它们分解机理的理解,并且可以洞悉这些膜的正确利用和有效管理。

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