Electrochemical removal of gaseous benzene using a flow-through reactor with efficient and ultra-stable titanium suboxide/titanium-foam anode at ambient temperature

阳极 二氧化钛 催化作用 材料科学 化学工程 电化学 铂金 电解质 阴极 无机化学 化学 电极 有机化学 复合材料 冶金 工程类 物理化学
作者
Fengjiao Quan,Bin Wu,Yuxiao Guo,Xu Zhang,Wenjuan Shen,Falong Jia,Xiao Liu,Zhihui Ai,Lizhi Zhang
出处
期刊:Journal of Colloid and Interface Science [Elsevier BV]
卷期号:645: 533-541 被引量:6
标识
DOI:10.1016/j.jcis.2023.04.160
摘要

Catalytic oxidation technology is currently considered as a feasible approach to degrade and mineralize volatile organic compounds (VOCs). However, it is still challenging to realize efficient removal of VOCs through catalytic oxidation at room temperature. In our study, a novel flow-through electrocatalytic reactor was designed, composed of porous solid-electrolyte, gas-permeable titanium sub-oxides/titanium-foam (TiSO/Ti-foam) as anode and platinum coated titanium foam (Pt/Ti-foam) as cathode. This device could oxidize nearly 100% of benzene (10 ppm) to carbon dioxide at a current density of 1.2 mA/cm2 under room temperature. More importantly, the device maintained excellent stability over 1000 h. Mechanism of benzene mineralization was discussed. Hydroxyl radicals generated on the TiSO/Ti-foam anode played a crucial role in the oxidation of benzene. This study provides a promising prototype of the electrochemical air purifier, and may find its application in domestic and industrial air pollution control.
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