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Long-term stability of carbon dioxide electrolysis in a large-scale flat-tube solid oxide electrolysis cell based on double-sided air electrodes

机译:基于双面空气电极的大型扁管固体氧化物电解槽中二氧化碳电解的长期稳定性

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摘要

Solid oxide electrolysis cell is a highly promising technology for CO2 electrolysis and has attracted wide attention. But the durability is insufficient by known designed structure of solid oxide electrolysis cell due to structure damage. In this work, a new flat-tube solid oxide electrolysis cell (SOEC) based on double-sided air electrodes with mechanically-strong redox properties and larger active area was proposed and applied to electrolysis of CO2, and its electrochemical performance and long-term durability were investigated. The results showed that the charging current density reaches -600 mA/cm(2) at 1.5 V and 750 degrees C under H-2/CO2 atmosphere. The CO2 conversion rate achieves 47.4% with energy conversation efficiency of 91.4% at the electrolysis voltage of 1.305 V under the charging current density of -400 mA/cm(2), corresponding to 210 mL/min of CO production rate. This new cell architecture for CO2 electrolysis was stable at the current density of -300 mA/cm(2) for 1910 h at 750 degrees C with a degradation rate of 4.89%/kh. The new flat-tube solid oxide electrolysis cell is capable to conduct CO2 electrolysis with high efficiency and long-term stability.
机译:固体氧化物电解池是用于CO2电解的非常有前途的技术,并已引起广泛关注。但是,由于结构损坏,通过固体氧化物电解槽的已知设计结构,耐久性不足。在这项工作中,提出了一种新的基于双面空气电极的扁管式固体氧化物电解槽(SOEC),该电解槽具有强机械强度的氧化还原特性和较大的活性面积,并将其应用于CO2的电解,并具有长期的电化学性能研究耐久性。结果表明,在H-2 / CO2气氛下,在1.5 V和750摄氏度下,充电电流密度达到-600 mA / cm(2)。在-400 mA / cm(2)的充电电流密度下,在1.305 V的电解电压下,CO2转化率达到47.4%,能量转换效率为91.4%,相当于CO产生速率为210 mL / min。这种新的用于CO2电解的电池体系结构在750°C的电流密度为-300 mA / cm(2)的情况下在1910 h下稳定,降解率为4.89%/ kh。新型扁管式固体氧化物电解槽能够高效,长期稳定地进行CO2电解。

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