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Direct Water Injection in Catholyte-Free Zero-Gap Carbon Dioxide Electrolyzers

机译:直接注水在无极电解液零间隙二氧化碳电解器中

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A zero-gap flow electrolyzer with a tin-coated gas diffusion electrode as the cathode was used to convert humidified gaseous CO(2)to formate. The influence of humidification, flow pattern and the type of membrane on the faradaic efficiency (FE), product concentration, and salt precipitation were investigated. We demonstrated that water management in the gas diffusion electrode was crucial to avoid flooding and (bi)carbonate precipitation, to uphold a high FE and formate concentration. Direct water injection was validated as a novel approach for water management. At 100 mA/cm(2), direct water injection in combination with an interdigitated flow channel resulted in a FE of 80 % and a formate concentration of 65.4+/-0.3 g/l without salt precipitation for a prolonged CO(2)electrolysis of 1 h. The use of bipolar membranes in the zero-gap configuration mainly produced hydrogen. These results are important for the design of commercial scale CO(2)electrolyzers.
机译:用锡涂覆的气体扩散电极作为阴极的零间隙流动电解器用于转化潮湿的气态CO(2)以形成。 研究了加湿,流动模式和膜类型对野生效率(Fe),产品浓度和盐沉淀的影响。 我们证明了气体扩散电极中的水管理对于避免洪水和(Bi)碳酸盐沉淀至关重要,以秉承高Fe和甲酸浓度。 直接注水被验证为水管理的新方法。 在100mA / cm(2)时,直接注水与间隙流动通道组合导致Fe 80%,甲酸浓度为65.4 +/- 0.3g / L,没有盐沉淀的延长的CO(2)电解 1小时。 在零间隙配置中使用双极膜主要产生氢。 这些结果对于商业规模CO(2)电解器的设计很重要。

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