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Electrocatalytic Reduction of CO2 to CO and CH4 by Co–N–C Catalyst and Ni co-catalyst with PEM Reactor

机译:Co–N–C催化剂和Ni助催化剂与PEM反应器将CO 2 电还原为CO和CH 4

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Utilization of renewable energy has been proposed for solution of the Global Warming. Electroreduction of CO_(2) into valuable chemicals using renewable electricity is a promising technology. Electroreduction of CO_(2) to CO and CH_(4) was studied using the polymer-electrolyte-membrane (PEM) gas cell. The electrocatalyst prepared by partial pyrolysis of Co-4,4’-dimethyl-2,2’-bipyridine supported on KEJENBLACK at 673 K (Co-dmbpy/KB(673K)) has been found for selective reduction of CO_(2) to CO. Screening of co-catalysts to promote formation of CH_(4) during the CO_(2) reduction by the Co-dmbpy/KB(673K) cathode was conducted in this work. An effective Ni/KB co-catalyst prepared by H_(2) reduction at 673 K was found. Suitable preparation conditions and methods of the cathode and effects of cathode potentials on the CO_(2) reduction to CO and CH_(4) were studied. The reaction path for the formation of CH_(4) in the CO_(2) reduction was studied and the successive reduction of CO_(2) to CO on the Co-dmbpy/KB(673K) catalyst and CO to CH_(4) on the Ni/KB(673K) co-catalyst was determined.
机译:已经提出了利用可再生能源来解决全球变暖的方案。使用可再生电力将CO_(2)电还原为有价值的化学物质是一种很有前途的技术。使用聚合物电解质膜(PEM)气室研究了CO_(2)到CO和CH_(4)的电还原。已发现通过在KEKENBLACK上以673 K(Co-dmbpy / KB(673K))部分热解Co-4,4'-二甲基-2,2'-联吡啶制得的电催化剂可将CO_(2)选择性还原为在这项工作中进行了助催化剂的筛选,以促进在通过Co-dmbpy / KB(673K)阴极还原CO_(2)期间形成CH_(4)。发现通过在673 K下H_(2)还原制备的有效Ni / KB助催化剂。研究了合适的阴极制备条件和方法,以及阴极电势对CO_(2)还原为CO和CH_(4)的影响。研究了在CO_(2)还原反应中形成CH_(4)的反应路径,并在Co-dmbpy / KB(673K)催化剂上将CO_(2)连续还原为CO,在CO-(2)还原反应中将CO还原为CH_(4)。测定了Ni / KB(673K)助催化剂。

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