论文标题
微流体燃料电池中的成像浓度场作为传料平台
Imaging concentration fields in microfluidic fuel cells as a mass transfer characterization platform
论文作者
论文摘要
微流体燃料电池(MFC)是微流体电化学转换设备,用于为小型电气设备供电。它们的性能依赖于在电极界面上改善反应物的传质。 {在这项工作中,开发了一种MFC来实施一种新型的成像技术,该技术允许测量反应物浓度场,以甲酸为燃料和石棉钾作为氧化剂。基于可传输的可见光谱对浓度场进行成像,该光谱将穿过MFC的光强度与其局部反应物浓度联系起来。 {开发了一个分析模型来估计质量扩散率和动力学反应速率系数。在操作过程中,同时测量了大规模运输和转移系数。这些使用该技术估算的参数可以在数值模型中实现,以预测MFC性能和浓度分布。这项工作为在许多电化学设备中的微流体和塔菲尔动力学表征中进行操作的高级成像工具铺平了道路。
Microfluidic fuel cells (MFCs) are microfluidic electrochemical conversion devices that are used to power small pieces of electrical equipment. Their performance relies on the improvement of the mass transfer of the reactants at the electrode interface. {In this work, a MFC is developed to implement a novel imaging technique that allows the measurement of reactant concentration fields, featuring formic acid as the fuel and potassium permanganate as the oxidant. The concentration fields were imaged } based on transmitted visible spectroscopy, which links the light intensity passing through the MFC to its local reactant concentration. {An analytical model was developed to estimate the mass diffusivity and kinetic reaction rate coefficient. For the first time, mass transport and transfer coefficient were simultaneously measured during operation. These parameters estimated using the proposed technique can be implemented in a numerical model to predict the MFC performance and concentration distribution. This work paves the way toward advanced imaging tools for operando mass transfer characterizations in microfluidics and Tafel kinetic characterization in many electrochemical devices.