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Mass transport and active area of porous Pt/Ti electrodes for the Zn-Ce redox flow battery determined from limiting current measurements

机译:用于Zn-Ce氧化还原液流电池的多孔pt / Ti电极的质量传递和活性区域由极限电流测量确定

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摘要

The conversion of soluble cerium redox species in the zinc-cerium redox flow battery and other electrochemical processes can be carried out at planar and porous platinised titanium electrodes. The active area, current density, mass transfer coefficient and linear electrolyte flow velocity through these structures have a direct influence on the reaction yield and the relationship between cell potential and operational current density during charge and discharge of a flow battery. A quantitative and practical characterization of the reaction environment at these electrodes is required. The volumetric mass transfer coefficient, kmAekmAe has been calculated for diverse electrode structures from limiting current measurements for Ce(IV) ion reduction in a laboratory, rectangular channel flow cell. This factor can be used to predict fractional conversion and required electrode dimensions. Platinised titanium felt shows superior kmAekmAe values compared to other materials and is a practical, high performance electrode for the Ce(III)/Ce(IV) ion redox reaction.
机译:锌-铈氧化还原液流电池和其他电化学过程中可溶性铈氧化还原物质的转化可以在平面和多孔镀铂钛电极上进行。通过这些结构的有效面积,电流密度,传质系数和线性电解质流速对液流电池充放电期间的反应产率以及电池电势与工作电流密度之间的关系有直接影响。需要在这些电极上对反应环境进行定量和实用的表征。体积传质系数kmAekmAe已通过在实验室矩形通道流通池中对Ce(IV)离子还原的极限电流测量而计算出,用于各种电极结构。该因子可用于预测分数转换和所需的电极尺寸。与其他材料相比,镀铂钛毡具有更高的kmAekmAe值,是一种实用的高性能Ce(III)/ Ce(IV)离子氧化还原反应电极。

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