材料科学
电解
氧化还原
析氧
分解水
氢
制氢
电解质
无机化学
电解水
硫酸
催化作用
阳极
可逆氢电极
电极
化学工程
工作电极
化学
电化学
冶金
物理化学
有机化学
工程类
光催化
作者
Ze Wu,Yiqiong Zhang,Li Zhang,Bo Zhou,Zengxi Wei,Dongdong Wang,Wenbo Lu,Jianfeng Jia,Li Tao,Tehua Wang,Shuangyin Wang
标识
DOI:10.1002/adfm.202212479
摘要
Abstract Water electrolysis is recognized as a green hydrogen production technology, but the high voltage required for anodic oxygen evolution reaction restricts the practical application. In this work, a Fe(II)/Fe(III) redox mediated SO 2 conversion is proposed to couple the cathodic hydrogen evolution reaction to achieve sulfur dioxide conversion and hydrogen production at low voltage. The onset potential of Fe(II) electrooxidation to Fe(III) is as low as 0.75 V RHE (vs reversible hydrogen electrode). Ex situ ultraviolet spectroscopy (UV) spectrum and ion chromatography indicate that SO 2 in electrolyte can reduce Fe(III) to Fe(II), completing the Fe(II)/Fe(III) redox cycle as well as the conversion of SO 2 to sulfuric acid. The assembled flow cell electrolyzer requires a low operating voltage of 0.97 V at 10 mA cm −2 and shows good performance under both acidic and neutral conditions. This study proposes an innovative energy saving and environment friendly strategy for simultaneous hydrogen production and sulfur dioxide capture based on low‐cost catalyst materials.
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