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首页> 外文期刊>Electrochimica Acta >Kinetics Analysis of the Electrocatalytic Oxidation of Methanol inside a DMFC working as a PEM Electrolysis Cell (PEMEC) to generate Clean Hydrogen
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Kinetics Analysis of the Electrocatalytic Oxidation of Methanol inside a DMFC working as a PEM Electrolysis Cell (PEMEC) to generate Clean Hydrogen

机译:DMFC用作PEM电解池(PEMEC)产生清洁氢的过程中甲醇电催化氧化的动力学分析

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The electrochemical decomposition of methanol for hydrogen production has been carried out at several temperatures (25 to 85 degrees C) and different methanol concentrations (0.1 to 10 M in 0.5 M H2SO4) using a DMFC hardware working as a Proton Exchange Membrane Electrolysis Cell (PEMEC). Conversely to most of recent studies which investigated the effect of working parameters (cell voltage, methanol concentration, flow rate of reactants, temperature, etc.) on the hydrogen evolution rate, this work is focussed on the analysis of the kinetics of methanol oxidation at the anode using the hydrogen cathode as a reference electrode. In this way it was possible to plot the cell voltage (corrected from the ohmic drop) as a function of the logarithm of the imposed current density. A Tafel analysis of these plots allowed us to estimate the kinetics parameters of methanol oxidation, i.e. the charge transfer coefficient alpha of the rate determining step and the heat of activation Delta H* of the overall process. The values obtained for these parameters (alpha approximate to 0.5 to 0.6, Delta H* approximate to 50-60 kJ mol(-1)) are similar to those published in the literature as deduced from the analysis of methanol oxidation both on smooth Pt-Ru electrodes and on Pt-Ru nanoparticles supported on carbon powders. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用DMFC硬件作为质子交换膜电解池(PEMEC)在数个温度(25至85摄氏度)和不同的甲醇浓度(0.5 M H2SO4中为0.1至10 M)进行了用于产氢的甲醇的电化学分解)。与最近研究工作参数(电池电压,甲醇浓度,反应物流速,温度等)对氢气释放速率的影响的大多数研究相反,这项工作着重于分析甲醇在60℃下的氧化动力学。使用氢阴极作为参比电极的阳极。通过这种方式,可以根据施加的电流密度的对数绘制电池电压(从欧姆压降校正)。这些图的Tafel分析使我们能够估计甲醇氧化的动力学参数,即速率确定步骤的电荷转移系数α和整个过程的活化热Delta H *。这些参数获得的值(α大约为0.5至0.6,ΔH *大约为50-60 kJ mol(-1))与文献中公布的值相似,这是根据在光滑的Pt- Ru电极和负载在碳粉上的Pt-Ru纳米颗粒上。 (C)2015 Elsevier Ltd.保留所有权利。

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