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Partial modification of flow-through porous electrodes in microfluidic fuel cell

机译:微流控燃料电池中流通式多孔电极的部分改性

摘要

The use of flow-through porous electrodes is identified as a promising approach to enhance the performance of microfluidic fuel cell (MFC). In this study, a dimensionless computational model is developed to analyze the distribution characteristics of the electrochemical reactions in flow-through porous electrodes of MFC. One important finding is that the electrochemical reactions mainly occur in the vicinity of the anode and cathode outlets. Based on this observation, the new design of partial modification at reactive sites is proposed to reduce the MFC cost. It is found that MFC with partial modification can achieve comparable performance with that of conventional full electrode modification, demonstrating the feasibility of partial modification method. The partial modification also offers a promising alternative to avoid unwanted secondary reaction, such as hydrogen evolution.
机译:流通型多孔电极的使用被认为是增强微流体燃料电池(MFC)性能的一种有前途的方法。在这项研究中,建立了一个无量纲的计算模型来分析MFC流过多孔电极中电化学反应的分布特征。一个重要发现是电化学反应主要发生在阳极和阴极出口附近。基于此观察结果,提出了在反应位点进行部分修饰的新设计,以降低MFC的成本。发现具有部分修饰的MFC可以实现与常规全电极修饰相当的性能,证明了部分修饰方法的可行性。部分修饰还提供了一种有希望的替代方案,可避免不必要的二次反应,例如放出氢气。

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