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首页> 外文期刊>Electrochimica Acta >Electrochemical reduction of carbon dioxide to ethylene at a copper electrode in methanol using potassium hydroxide and rubidium hydroxide supporting electrolytes
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Electrochemical reduction of carbon dioxide to ethylene at a copper electrode in methanol using potassium hydroxide and rubidium hydroxide supporting electrolytes

机译:使用氢氧化钾和氢氧化rub辅助电解质在甲醇中的铜电极上将二氧化碳电化学还原为乙烯

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摘要

The electrochemical reduction of CO{sub}2 with a Cu electrode was investigated in methanol using potassium hydroxide and rubidium hydroxide supporting salts. The main products from CO{sub}2 were methane, ethylene, carbon monoxide and formic acid. The maximum current efficiency for ethylene was of 37.5%, at -4.0 V versus Ag/AgCl, saturated KCl in KOH/methanol. The typical ratios of current efficiency for ethylene/methane, r{sub}f(C{sub}2H{sub}4)/r{sub}f(CH{sub}4), were 2.3 and 6.7, in KOH/methanol and RbOH/methanol-based electrolytes, respectively. In KOH/methanol, the efficiency of hydrogen formation, a competing reaction of CO{sub}2 reduction, was depressed to below 3.3%. On the basis of this work, the high efficiency electrochemical CO{sub}2-to-ethylene conversion method appears to be achieved. Future work to advance this technology may include the use of solar energy as the electric energy source. This research can contribute to the large-scale manufacturing of fuel gases from readily available and inexpensive raw materials, CO{sub}2-saturated methanol from industrial absorbers (the Rectisol process).
机译:使用氢氧化钾和氢氧化rub支持盐,在甲醇中研究了用Cu电极电化学还原CO {sub} 2的方法。 CO {sub} 2的主要产物是甲烷,乙烯,一氧化碳和甲酸。相对于Ag / AgCl,KOH /甲醇中的饱和KCl,在-4.0 V时,乙烯的最大电流效率为37.5%。在KOH /甲醇中,乙烯/甲烷电流效率的典型比率r {sub} f(C {sub} 2H {sub} 4)/ r {sub} f(CH {sub} 4)为2.3和6.7和RbOH /甲醇基电解质。在KOH /甲醇中,氢形成的效率(CO {sub} 2还原的竞争反应)降低到3.3%以下。在这项工作的基础上,似乎实现了高效电化学CO {sub} 2-乙烯转化方法。推动这项技术发展的未来工作可能包括使用太阳能作为电能来源。这项研究可有助于从容易获得且廉价的原材料(工业吸收器中的CO {sub} 2饱和甲醇)大规模生产燃料气体(Rectisol工艺)。

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