Electrochemical mineralization of perfluorooctane sulfonate by novel F and Sb co-doped Ti/SnO 2 electrode containing Sn-Sb interlayer

阳极 电化学 电极 电解 X射线光电子能谱 磺酸盐 全氟辛烷 矿化(土壤科学) 吸附 兴奋剂 化学 无机化学 材料科学 化学工程 氮气 电解质 有机化学 物理化学 工程类 光电子学
作者
Bo Yang,Jinbao Wang,Chaojin Jiang,Juying Li,Gang Yu,Shubo Deng,Shaoyou Lu,Jianwen Zhang,Caizhen Zhu,Qiongfang Zhuo
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:316: 296-304 被引量:79
标识
DOI:10.1016/j.cej.2017.01.105
摘要

The F and Sb co-doped Ti/SnO2 electrode containing Sn-Sb interlayer was innovatively synthesized for electro-oxidation (EO) removal of perfluorooctane sulfonate (PFOS) in water. Stronger oxidation capability and remarkably longer lifetime were performed for Ti/Sn-Sb/SnO2-F-Sb electrode than these similar electrodes in this study without Sn-Sb interlayer and F/Sb doping, which could removed more than 99% of PFOS (C0 = 100 mg L−1) after 120-min electrolysis. The attribute of Ti/Sn-Sb/SnO2-F-Sb anode and its EO mechanism were surveyed by XRD, XPS, SEM, and LSV. F and Sb co-doping could improve the stability and EO capability of the electrode, which resulted from that the smooth surface was formed conveniently to produce physically adsorbed hydroxyl radical and lead to relatively high OEP. The operating parameters of EO process were also investigated including current density, pH value, and stirring speed, which revealed the effect of these parameters on PFOS decomposition. Additionally, the mineralization parameters, TOC and F− concentration, as well as short-chain perfluorocarboxylic acids were analyzed in solution during the electrolysis. Consequently, the EO pathway of PFOS was proposed through the detection of intermediates. These results manifest that Ti/Sn-Sb/SnO2-F-Sb anode is prospective to effectively decompose PFOS in wastewater.

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