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Electrode kinetics of the NiO porous electrode for oxygen production in the molten carbonate electrolysis cell (MCEC)

机译:熔融碳酸盐电解槽(MCEC)中用于制氧的NiO多孔电极的电极动力学

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摘要

The performance of a molten carbonate electrolysis cell (MCEC) is to a great extent determined by the anode, i.e. the oxygen production reaction at the porous NiO electrode. In this study, stationary polarization curves for the NiO electrode were measured under varying gas compositions and temperatures. The exchange current densities were calculated numerically from the slopes at low overpotential. Positive dependency on the exchange current density was found for the partial pressure of oxygen. When the temperature was increased in the range 600-650 degrees C, the reaction order of oxygen decreased from 0.97 to 0.80. However, there are two different cases for the partial pressure dependency of carbon dioxide within this temperature range: positive values, 0.09-0.30, for the reaction order at lower CO2 concentration, and negative values, -0.26-0.01, with increasing CO2 content. A comparison of theoretically obtained data indicates that the oxygen-producing reaction in MCEC could be reasonably satisfied by the reverse of oxygen reduction by the oxygen mechanism I, an n = 4 electron reaction, assuming a low coverage of oxide ions at high CO2 content and an intermediate coverage for a low CO2 concentration.
机译:熔融碳酸盐电解池(MCEC)的性能在很大程度上取决于阳极,即多孔NiO电极上的产氧反应。在这项研究中,在不同的气体成分和温度下测量了NiO电极的固定极化曲线。从低过电势下的斜率数值计算交换电流密度。发现氧分压与交换电流密度呈正相关关系。当温度在600-650℃的范围内升高时,氧的反应顺序从0.97降低至0.80。但是,在此温度范围内,二氧化碳的分压依赖性有两种不同的情况:在较低的CO2浓度下,反应顺序为正值0.09-0.30;随着CO2含量增加,负值为-0.26-0.01。对理论上获得的数据进行的比较表明,假定高CO2含量和低CO2含量下的氧化离子覆盖率较低,则通过氧机理I进行的氧还原反应(n = 4电子反应)可以合理地满足MCEC中的产氧反应。低二氧化碳浓度的中等覆盖率。

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