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Electrochemical flow systems enable renewable energy industrial chain of CO2 reduction

机译:电化学流量系统使二氧化碳的可再生能源产业链减少

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摘要

The development of a comprehensive renewable energy industrial chain becomes urgent since renewable energy will soon dominate the power generation. Among the industries, carbon dioxide reduction reaction (CO2RR), which uses energy to convert carbon dioxide into high-value products and reduce CO2 in the atmosphere, is regarded as a promising and potential industrial application. The conventional H- type reactor shows limited catalytic activity toward CO2RR, leading to the incompatible combination with the massive renewable energy. The flow systems - flow-cell reactor and the membrane electrode assemblies - show the promising selectivity and activities of CO2RR products, meeting the criteria for industrial mass production. In this Perspective, I start by comparing the market price and annual global production of major CO2RR products with the necessary costs using technoeconomic analysis for industrial utilization. Subsequently, I systematically summarize the catalytic performances of the same copper catalyst in these reactors for CV RR and discuss the possibility of industrialization. Owing to the distinctive catalytic behaviors in flow systems, I finally present prospects to investigate the catalytic mechanisms by developing various in-situ techniques in these flow systems to speed up the renewable energy industry.
机译:由于可再生能源将很快主导发电行业,发展综合性可再生能源产业链成为当务之急。在众多工业中,二氧化碳还原反应(CO2还原反应)被认为是一种很有前途和潜在的工业应用,它利用能量将二氧化碳转化为高价值的产品,并减少大气中的二氧化碳。传统的H型反应器对CO2RR的催化活性有限,导致与大量可再生能源的不相容结合。流动系统——流动池反应器和膜电极组件——显示出CO2RR产品具有良好的选择性和活性,符合工业大规模生产的标准。从这个角度出发,我首先利用工业利用的技术经济分析,将主要CO2RR产品的市场价格和全球年产量与必要的成本进行比较。随后,系统总结了同一种铜催化剂在这些反应器中对CV-RR的催化性能,并讨论了工业化的可能性。由于流动系统中独特的催化行为,我最后展望了通过在这些流动系统中开发各种原位技术来加速可再生能源产业的催化机制。

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