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首页> 外文期刊>Journal of Chemical Engineering of Japan >Methanol Diffusion through a Porous Plate in Anode Backing of a Passive Direct Methanol Fuel Cell under Closed Circuit Conditions
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Methanol Diffusion through a Porous Plate in Anode Backing of a Passive Direct Methanol Fuel Cell under Closed Circuit Conditions

机译:闭环条件下被动直接甲醇燃料电池阳极背板中多孔板的甲醇扩散

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References(3) The performance of passive direct methanol fuel cells employing porous plates in the anode backing was investigated under closed circuit conditions to clarify the mechanism of methanol diffusion through the porous plate under closed circuit conditions. Three kinds of porous plates were tested to clarify the effect of porosity and water absorptivity on the steady current density using various methanol concentrations. Under the limiting current conditions, where the steady current density was proportional to the methanol concentration, a porous plate with lower porosity lowered the stable current density at a certain methanol concentration. However, the maximum steady current density was hardly changed as compared to that for the case without a porous plate. The effective diffusion coefficient of methanol through the porous plate showed direct proportion to the porosity of the porous plate, suggesting that the entire pores in the plate were filled with CO2 gas produced at the anode surface, through which the methanol diffused as a vapor from the reservoir to the anode.
机译:参考文献(3)在闭路条件下研究了在阳极背衬中采用多孔板的被动式直接甲醇燃料电池的性能,以阐明甲醇在闭路条件下通过多孔板扩散的机理。测试了三种多孔板,以阐明使用各种甲醇浓度时,孔隙率和吸水率对稳态电流密度的影响。在极限电流条件下,当稳定电流密度与甲醇浓度成正比时,孔隙率较低的多孔板会降低一定甲醇浓度下的稳定电流密度。但是,与没有多孔板的情况相比,最大稳定电流密度几乎不变。甲醇通过多孔板的有效扩散系数与多孔板的孔隙率成正比,表明板中的整个孔都充满了阳极表面产生的CO2气体,甲醇以蒸气的形式从中扩散出来。储存到阳极。

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