Parallel paired electrolysis of green oxidizing agents by the combination of a gas diffusion cathode and boron-doped diamond anode

Christin M. Hamm, Selina Schneider, Stefanie Hild, R. Neuber, Thorsten Matthée, Jens Krümberg, M. Stöckl, Klaus-Michael Mangold, Jürgen Kintrup
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Abstract

The generation of “green” oxidizing agents by electrochemical synthesis opens the field for sustainable, on-demand, and on-site production, which is often based on non-critical starting materials. In this study, electrosyntheses were carried out on different cathode and anode materials. In half-cell experiments, the cathodic synthesis of peracetic acid (PAA) was investigated on gas diffusion electrodes (GDEs), reaching 22.6 mmol L−1 of PAA with a current efficiency (CE) of 7.4%. Moreover, peroxodicarbonate (PODIC®) was produced anodically on boron-doped diamond (BDD) electrodes with concentrations as high as 42.7 mmol L−1 PODIC® and a CE of 30.3%. Both cathodic and anodic processes were individually examined and improved. Finally, the half-cell reactions were combined as a proof of concept in a parallel paired electrolysis cell for the first time to achieve an increased overall CE.
利用气体扩散阴极和掺硼金刚石阳极的组合平行配对电解绿色氧化剂
通过电化学合成生成 "绿色 "氧化剂开辟了可持续、按需和现场生产的领域,这种生产通常基于非关键的起始材料。本研究在不同的阴极和阳极材料上进行了电合成。在半电池实验中,研究人员在气体扩散电极(GDEs)上进行了过乙酸(PAA)的阴极合成,PAA 的浓度达到 22.6 mmol L-1,电流效率(CE)为 7.4%。此外,还在掺硼金刚石 (BDD) 电极上阳极生成了过氧化二碳酸盐 (PODIC®),其浓度高达 42.7 mmol L-1 PODIC®,CE 为 30.3%。对阴极和阳极过程进行了单独检查和改进。最后,作为概念验证,首次在并联成对电解池中将半电池反应结合起来,从而提高了整体 CE 值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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