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通过施加脉冲电流对 RVC 泡沫电极进行绿色电化学修饰和改进 HO 的电生成以去除污染物。

Green electrochemical modification of RVC foam electrode and improved HO electrogeneration by applying pulsed current for pollutant removal.

机构信息

School of Energy Science and Engineering, Harbin Institute of Technology, Harbin, 150001, Heilongjiang, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2018 Feb;25(6):6015-6025. doi: 10.1007/s11356-017-0810-8. Epub 2017 Dec 14.

Abstract

The performance of cathode on HO electrogeneration is a critical factor that limits the practical application of electro-Fenton (EF) process. Herein, we report a simple but effective electrochemical modification of reticulated vitreous carbon foam (RVC foam) electrode for enhanced HO electrogeneration. Cyclic voltammetry, chronoamperometry, and X-ray photoelectron spectrum were used to characterize the modified electrode. Oxygen-containing groups (72.5-184.0 μmol/g) were introduced to RVC foam surface, thus resulting in a 59.8-258.2% higher HO yield. The modified electrodes showed much higher electrocatalytic activity toward O reduction and good stability. Moreover, aimed at weakening the extent of electroreduction of HO in porous RVC foam, the strategy of pulsed current was proposed. HO concentration was 582.3 and 114.0% higher than the unmodified and modified electrodes, respectively. To test the feasibility of modification, as well as pulsed current, EF process was operated for removal of Reactive Blue 19 (RB19). The fluorescence intensity of hydroxybenzoic acid in EF with modified electrode is 3.2 times higher than EF with unmodified electrode, illustrating more hydroxyl radicals were generated. The removal efficiency of RB 19 in EF with unmodified electrode, modified electrode, and unmodified electrode assisted by pulsed current was 53.9, 68.9, and 81.1%, respectively, demonstrating that the green modification approach, as well as pulsed current, is applicable in EF system for pollutant removal. Graphical abstract ᅟ.

摘要

在 HO 的电生成中,阴极的性能是限制电芬顿(EF)过程实际应用的关键因素。在此,我们报告了一种简单但有效的电化学改性泡沫玻璃碳(RVC 泡沫)电极方法,以增强 HO 的电生成。通过循环伏安法、计时电流法和 X 射线光电子能谱对修饰电极进行了表征。在 RVC 泡沫表面引入含氧基团(72.5-184.0 μmol/g),从而使 HO 的产率提高了 59.8-258.2%。修饰后的电极对 O 还原具有更高的电催化活性和良好的稳定性。此外,为了减弱多孔 RVC 泡沫中 HO 的电化学还原程度,提出了脉冲电流策略。与未修饰和修饰电极相比,HO 浓度分别提高了 582.3%和 114.0%。为了测试修饰和脉冲电流的可行性,采用 EF 工艺去除活性蓝 19(RB19)。修饰电极 EF 中的羟基苯甲酸荧光强度比未修饰电极 EF 中的高 3.2 倍,说明生成了更多的羟基自由基。未修饰电极 EF、修饰电极 EF 和未修饰电极辅助脉冲电流 EF 中 RB19 的去除效率分别为 53.9%、68.9%和 81.1%,表明绿色修饰方法和脉冲电流在 EF 体系中适用于污染物去除。

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