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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Integrating Nickel-Nitrogen Doped Carbon Catalyzed CO2 Electroreduction with Chlor-Alkali Process for CO, Cl-2 and KHCO3 Production with Enhanced Techno-Economics
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Integrating Nickel-Nitrogen Doped Carbon Catalyzed CO2 Electroreduction with Chlor-Alkali Process for CO, Cl-2 and KHCO3 Production with Enhanced Techno-Economics

机译:将镍氮掺杂碳催化的CO2电催化CO2电荷与CO,Cl-2和KHCO3生产与增强技术经济学相结合

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Typically, CO2 electroreduction is coupled with oxygen evolution reaction (OER), which is highly energy consuming, and also costs alkalis formed at the cathode. Here, we use chlorine evolution reaction (CER), instead of OER, to integrate with CO2 electroreduction mediated by an efficient metal-nitrogen doped carbon catalyst derived from the mixture of nickel porphyrin and commercial carbon black. The combined system was evaluated in two electrolyzer configurations that have been adopted in the chlor-alkali process to produces CO, Cl-2, and KHCO3 simultaneously. To allow continuous operation, we designed a continuously operating system to collect produced KHCO3 in a precipitate tank with improved techno-economics and efficient CO2 utilization. Also, it could serve as an environmental-friendly alternative to the Solvay process for soda production. This work may provide a new strategy for the design of CO2 electrolysis systems with better economic viability.
机译:通常,CO 2电荷与氧气进化反应(Oer)偶联,这是高能量的,并且还具有在阴极处形成的碱。 这里,我们使用氯进化反应(CER)代替OER,与通过衍生自镍卟啉和商业炭黑的混合物的有效金属 - 氮掺杂碳催化剂介导的CO 2电荷。 在氯碱方法中采用的两种电解槽配置评价组合系统,以同时生产CO,Cl-2和KHCO3。 为了允许连续操作,我们设计了一种连续的操作系统,以在沉淀罐中收集生产的KHCO 3,具有改进的技术经济和高效的二氧化碳利用。 此外,它可以作为苏打生产的溶剂过程的环保替代品。 这项工作可以为具有更好的经济可行性设计的CO2电解系统的设计提供新的策略。

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