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首页> 外文期刊>Journal of Solid State Electrochemistry >Selective ethylene formation by pulse-mode electrochemical reduction of carbon dioxide using copper and copper-oxide electrodes
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Selective ethylene formation by pulse-mode electrochemical reduction of carbon dioxide using copper and copper-oxide electrodes

机译:使用铜和氧化铜电极通过脉冲模式电化学还原二氧化碳选择性形成乙烯

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摘要

Although the electrochemical reduction of carbon dioxide (CO2) with a copper electrode produces hydrocarbons, the activity toward the conversion of CO2 is lost for several 10 min by the deposition of poisoning species on the electrode. To solve the poisoning species problem, the electrochemical reduction of CO2 was carried out using a copper electrode with a pulse electrolysis mode with anodic as well as cathodic polarization. The anodic polarization intervals suppressed the deposition of poisoning species on the electrode, and the amount of two hydrocarbons, CH4 and C2H4, barely decreased even after an hour. By choosing appropriate anodic potential and time duration, the selectivity for the C2H4 formation was greatly enhanced. The enhancement was found to be due to the copper oxide formed on the copper electrode. The selectivity was further improved when the electrochemical reduction was made with the copper-oxide electrode. The highest efficiency of about 28% is obtained at ?3.15 V.
机译:尽管用铜电极电化学还原二氧化碳(CO2 )会产生碳氢化合物,但由于有毒物质在电极上的沉积,使CO2 转化的活性损失了10分钟。为了解决中毒物种的问题,使用具有阳极极化和阴极极化的脉冲电解模式的铜电极对CO2进行电化学还原。阳极极化间隔抑制了中毒物质在电极上的沉积,即使在一小时后,CH4 和C2 H4 的两种碳氢化合物的量也几乎没有减少。通过选择适当的阳极电位和持续时间,可以大大提高C2 H4 形成的选择性。发现增强是由于在铜电极上形成的氧化铜。当用氧化铜电极进行电化学还原时,选择性进一步提高。在约3.15 V时可获得约28%的最高效率。

著录项

  • 来源
    《Journal of Solid State Electrochemistry》 |2007年第4期|554-557|共4页
  • 作者单位

    Department of Engineering Science Niihama National College of Technology Yagumocho 7-1 Niihama Ehime 792-8580 Japan;

    Department of Industrial Chemistry Faculty of Engineering Kyushu Sangyo University Matsukadai 2-3-1 Higashi-Ku Fukuoka 813-8503 Japan;

    Department of Industrial Chemistry Faculty of Engineering Kyushu Sangyo University Matsukadai 2-3-1 Higashi-Ku Fukuoka 813-8503 Japan;

    Department of Industrial Chemistry Faculty of Engineering Kyushu Sangyo University Matsukadai 2-3-1 Higashi-Ku Fukuoka 813-8503 Japan;

    Department of Industrial Chemistry Faculty of Engineering Kyushu Sangyo University Matsukadai 2-3-1 Higashi-Ku Fukuoka 813-8503 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrochemical reduction; Carbon dioxide; Copper electrode; Copper-oxide electrode; Pulse electrolysis; Ethylene;

    机译:电化学还原;二氧化碳;铜电极;铜氧化物电极;脉冲电解;乙烯;

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