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The role of CuSn alloy in the co-electrolysis of CO_2 and H_2O through an intermediate temperature solid oxide electrolyser

机译:CuSn合金通过中温固体氧化物电解槽在CO_2和H_2O的共电解中的作用

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摘要

A novel cermet based on CuSn-CGO is synthesized and used as a coating layer in the cathode of a conventional Solid Oxide Electrolyser for the co-electrolysis of H2O and CO2. Electrochemical experiments are carried out in the temperature range 525-600 degrees C by feeding reagents with a stoichiometry of 2:1 with respect to the operating current density (i.e. 150 mA cm(-2)). Outlet gas is analysed under OCV and operating conditions. The results are discussed in comparison with the theoretical values achievable under equilibrium. A stable electrochemical behaviour is observed in the studied temperature range. Although the performance of cell is affected by activation constraints in the temperature range 525-550 degrees C, minimal differences are observed with regard to the reduction kinetics of H2O and CO2. The analytical treatment of gas analysis data reveals that the coated layer promotes an increase of methane produced through the simultaneous reduction of H2O and CO2.
机译:合成了一种基于CuSn-CGO的新型金属陶瓷,并用作常规固体氧化物电解槽阴极中的涂层,用于H2O和CO2的共电解。通过以相对于工作电流密度(即150 mA cm(-2))化学计量比为2:1的试剂进料,在525-600摄氏度的温度范围内进行电化学实验。在OCV和操作条件下分析出口气体。将结果与平衡下可获得的理论值进行比较。在研究的温度范围内观察到稳定的电化学行为。尽管电池性能受到525-550摄氏度温度范围内的激活限制的影响,但在H2O和CO2还原动力学方面观察到的差异很小。气体分析数据的分析处理表明,涂层促进了同时还原H2O和CO2产生的甲烷。

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