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Bubble Formation in the Electrolyte Triggers Voltage Instability in CO2 Electrolyzers

机译:电解液中的气泡形成会触发CO2电解槽中的电压不稳定

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摘要

The electrochemical reduction of CO is promising for mitigating anthropogenic greenhouse gas emissions; however, voltage instabilities currently inhibit reaching high current densities that are prerequisite for commercialization. Here, for the first time, we elucidate that product gaseous bubble accumulation on the electrode/electrolyte interface is the direct cause of the voltage instability in CO electrolyzers. Although bubble formation in water electrolyzers has been extensively studied, we identified that voltage instability caused by bubble formation is unique to CO electrolyzers. The appearance of syngas bubbles within the electrolyte at the gas diffusion electrode (GDE)-electrolyte chamber interface (i.e. ∼10% bubble coverage of the GDE surface) was accompanied by voltage oscillations of 60 mV. The presence of syngas in the electrolyte chamber physically inhibited two-phase reaction interfaces, thereby resulting in unstable cell performance. The strategic incorporation of our insights on bubble growth behavior and voltage instability is vital for designing commercially relevant CO electrolyzers.
机译:CO的电化学还原有望减轻人为温室气体的排放。然而,电压不稳定性目前阻止达到高电流密度,这是商业化的先决条件。在这里,我们首次阐明了产物气泡在电极/电解质界面上的堆积是导致CO电解槽中电压不稳定的直接原因。尽管已经对水电解槽中的气泡形成进行了广泛研究,但我们发现由气泡形成引起的电压不稳定性是CO电解槽特有的。电解质在气体扩散电极(GDE)-电解质腔室界面处出现合成气气泡(即GDE表面的气泡覆盖率约为10%),并伴随60mV的电压振荡。电解液室中合成气的存在会物理抑制两相反应界面,从而导致电池性能不稳定。战略性地整合我们对气泡生长行为和电压不稳定性的见解,对于设计与商业相关的CO电解槽至关重要。

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