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The effects of manifold flow on mass transport in electrochemical filter-press reactors

机译:歧管流动对电化学压滤反应器中传质的影响

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摘要

The mass transport rates to planar electrodes, in a series of electrochemical laboratory filter-press reactors were measured to quantify the effects of the inlet and outlet design manifolds on the fluid flow. In small reactors, entrance/exit effects are especially important due to the localized generation of fluid recirculation zones, which affect the overall rate of mass transport. Limiting current data, the cathodic reduction of Cu(II) ions on a copper surface (under convective-diffusion control) were used to measure global mass transport coefficients. The data are compared with those from a well-characterized laboratory cell, the FM01-LC electrolyzer. The importance of manifold design in small-scale electrochemical reactors is discussed, and several dimensionless parameters are used to characterize the manifold geometry.
机译:在一系列电化学实验室压滤反应器中,测量了向平面电极的传质速率,以量化入口和出口设计歧管对流体流动的影响。在小型反应堆中,由于流体再循环区的局部生成,进/出口效应尤为重要,这会影响整体质量传输速率。限制当前数据,铜表面上的Cu(II)离子的阴极还原(在对流扩散控制下)用于测量整体传质系数。将数据与特征明确的实验室电池FM01-LC电解槽的数据进行比较。讨论了歧管设计在小规模电化学反应器中的重要性,并使用了几个无量纲参数来表征歧管的几何形状。

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