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Design of an In-Operando Cell for X-Ray and Neutron Imaging of Oxygen-Depolarized Cathodes in Chlor-Alkali Electrolysis

机译:氯碱电解中氧去极化阴极X射线和中子成像的X射线和中子成像的设计

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摘要

Oxygen-depolarized cathodes are a novel concept to be used in chlor-alkali electrolysis in order to generate significant energy savings. In these porous gas diffusion electrodes, hydrophilic and catalytically active microsized silver grains and a hydrophobic polytetrafluoroethylene cobweb structure are combined to obtain the optimum amount of three-phase boundaries between the highly alkaline electrolyte and the oxygen gas phase to achieve high current densities. However, the direct correlation between specific electrode structure and electrochemical performance is difficult. In this work, we report on the successful design and adaptation of an in-operando cell for X-ray (micro-computed tomography, synchrotron) and neutron imaging of an operating oxygen-depolarized cathode under realistic operation conditions, enabling the investigation of the electrolyte invasion into, and distribution inside, the porous electrode for the first time.
机译:氧气去极化阴极是用于氯碱电解的新概念,以便产生显着的节能。在这些多孔气体扩散电极中,组合亲水和催化活性的微晶银颗粒和疏水性聚四氟乙烯蜘蛛网结构,以获得高碱性电解质和氧气相之间的三相边界的最佳量,以实现高电流密度。然而,特定电极结构与电化学性能之间的直接相关性是困难的。在这项工作中,我们报告了在现实操作条件下操作氧气去极化阴极的X射线(微计算断层扫描,同步拍摄)和中子成像的成功设计和调整,使得能够调查电解质侵入,并在内部,多孔电极首次进入。

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