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An electrochemical cell with Gortex-based electrodes capable of extracting pure hydrogen from highly dilute hydrogen-methane mixtures

机译:具有基于Gortex的电极的电化学电池,能够从高度稀释的氢甲烷混合物中提取纯氢

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摘要

In this work we report a novel liquid-acid electrochemical cell containing Gortex-based gas diffusion electrodes, layered with suitable catalysts and current collectors, that is capable of sustainably extracting pure hydrogen from methane mixtures containing as little as 5% hydrogen. The origin of its efficiency appears to derive from the solid-liquid interface between the solid Gortex electrodes and the liquid electrolyte, as well as the high proton conductivity of the electrolyte. This interface and electrolyte exhibit an efficiency for reaction that greatly exceeds that achieved by the comparable solid-solid interface and proton conductor in Proton Exchange Membrane Fuel Cell (PEMFC) technology. We report hydrogen yields and recovery by the cell from a range of methane-hydrogen mixtures. Electrochemical impedance spectroscopy has been used to characterise the cell and to illuminate the system limitations.
机译:在这项工作中,我们报告了一种新型的液体酸电化学电池,其中包含基于Gortex的气体扩散电极,该电极上铺有合适的催化剂和集电器,能够可持续地从低至5%氢气的甲烷混合物中提取纯氢气。其效率的起源似乎源自固体Gortex电极与液体电解质之间的固液界面,以及电解质的高质子传导性。这种界面和电解质的反应效率大大超过质子交换膜燃料电池(PEMFC)技术中类似的固-固界面和质子导体所达到的效率。我们报告了氢的产量和从电池中回收的一系列甲烷-氢混合物的回收率。电化学阻抗谱已用于表征电池并阐明系统限制。

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