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Electrocatalytic conversion of CO2 to added-value chemicals in a high-temperature proton-exchange membrane reactor

机译:电催化转化CO2在高温质子交换膜反应器中加入价值化学品

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We have developed a novel gas-phase electrocatalytic system for the conversion of CO2 into added-value chemicals. The system is based on a high- temperature proton-exchange membrane reactor containing a Cu cathodic catalyst supported on carbon nanofibers (CNFs) and an H3PO4-doped polybenzimidazole polymer electrolyte membrane (PBI). The resulting Cu-CNFs/PBI/IrO2 membrane electrode assembly (MEA) allowed the utilization of higher temperatures (110 degrees C) than has been previously reported. The application of a low current density (- 0.8 mA/cm(2)) permitted the direct transformation of CO2 into various organic compounds in the C-1-C-3 range, acetaldehyde being the most common product (85% selectivity). The application of a higher current density (- 1.6 mA/cm(2)) increased the overall electrocatalytic activity of the system, producing lighter and more saturated compounds. The novel electrochemical cell proposed in this work allows the conversion of CO2 into valuable products under mild conditions (i.e., room pressure, 110 degrees C) with no requirement for H-2 and using electrical energy that could potentially be obtained from renewable energy sources.
机译:我们开发了一种新型气相电催化系统,用于将CO2转化为附加值化学品。该系统基于含有负载在碳纳米纤维(CNF)的Cu阴极催化剂的高温质子 - 交换膜反应器,以及H3PO4掺杂的聚苯并咪唑聚合物电解质膜(PBI)。得到的Cu-CNFS / PBI / IRO2膜电极组件(MEA)允许利用比先前报道的更高温度(110℃)。施加低电流密度( - 0.8mA / cm(2))允许CO 2的直接转化为C-1-C-3范围内的各种有机化合物,乙醛是最常见的产物(85%选择性)。施加更高电流密度( - 1.6mA / cm(2))增加了系统的整体电催化活性,产生更轻,更饱和的化合物。本作作品中提出的新型电化学电池允许将CO2转化为温和条件下的有价值的产品(即,室压,110℃),不需要H-2并使用可能从可再生能源获得的电能。

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