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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Hydrothermally enhanced electrochemical oxidation of high concentration refractory perfluorooctanoic acid
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Hydrothermally enhanced electrochemical oxidation of high concentration refractory perfluorooctanoic acid

机译:高浓度难熔全氟辛酸的水热增强电化学氧化

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A green hydrothermally enhanced electrochemical oxidation (HTEO) technique is developed to treat the high concentration refractory perfluorooctanoic acid (PFOA) wastewater on boron-doped diamond (BDD) film electrode. Results show that HTEO can demonstrate higher degradation efficiency for PFOA than the normal electrochemical oxidation (EO) process, with the removal of PFOA, total organic carbon (TOC), and organic fluorine in the HTEO process increasing by 1.1, 1.8, and 2.1 times, respectively. The kinetics study indicates that the degradation of PFOA follows a first-order reaction in the HTEO process with the apparent reaction rate constant 3.1 times higher than that in the EO process. The higher degradation efficiency of PFOA is due to the hydrothermal enhancement in electrochemical properties of the electrode and solution. Compared with EO, during the HTEO process, the conductivity and ionic migration rate of the solution is improved by 540% and 60%, respectively. In addition, the Tafel slope is increased to 343 from 279 mV dec~(-1), indicating an inhibition effect of oxygen evolution reaction and a more effective oxidation of PFOA. In particular, the hydrothermal condition promotes a high formation rate of hydroxyl radical with the concentration almost 2 times of that in EO, which is considered the inner factor leading to the higher degradation efficiency. The density functional theory simulations demonstrate that the nonterminal C-C bonds in the main carbon chain can be easily destructed in the hydrothermal condition, as confirmed by the experimental detection of intermediates of C _5F_(11)COOH, C_4F_9COOH, C _3F_7COOH, C_2F_5COOH, CF _3COOH, and some dicarboxylic acids. As a result, a reaction pathway is tentatively proposed.
机译:开发了一种绿色水热增强电化学氧化(HTEO)技术,以处理掺硼金刚石(BDD)膜电极上的高浓度难处理全氟辛酸(PFOA)废水。结果表明,与普通的电化学氧化(EO)工艺相比,HTEO可以显示出更高的PFOA降解效率,其中HTEO工艺中PFOA,总有机碳(TOC)和有机氟的去除量增加了1.1倍,1.8倍和2.1倍, 分别。动力学研究表明,PFEO的降解遵循HTEO过程中的一级反应,其表观反应速率常数比EO过程高3.1倍。 PFOA的较高降解效率是由于水热增强了电极和溶液的电化学性能。与EO相比,在HTEO过程中,溶液的电导率和离子迁移率分别提高了540%和60%。此外,Tafel斜率从279 mV dec〜(-1)增加到343,表明氧释放反应的抑制作用和PFOA的更有效氧化。特别地,水热条件促进了羟基自由基的高形成速率,其浓度几乎是EO中浓度的2倍,这被认为是导致更高降解效率的内在因素。密度泛函理论模拟表明,在水热条件下,主碳链中的非末端CC键很容易被破坏,这是通过对C _5F_(11)COOH,C_4F_9COOH,C _3F_7COOH,C_2F_5COOH,CF _3COOH的中间体进行的实验检测证实的和一些二羧酸。结果,初步提出了反应途径。

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