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Continuous electrochemical reduction of carbon dioxide into formate using a tin cathode: Comparison with lead cathode

机译:使用锡阴极将二氧化碳连续电化学还原成甲酸:与铅阴极比较

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Electrochemical reduction has been pointed out as a promising method for CO2 valorisation into useful chemicals. This paper studies the influence of key variables on the performance of an experimental system for continuous electro-reduction of CO2 to formate, when a tin plate is used as working electrode. Particular emphasis is placed on comparing the performance of Sn and Pb as cathodes. As was previously found with Pb, the influence of current density ("j") using Sn was particularly noteworthy, and when j was raised up to a limit value of 8.5 mA cm~(-2) .important increases of the rate of formate production were observed at the expense of lowering the Faradaic efficiency. However, unlike what was found with Pb, the performance using Sn improved when the electrolyte flow rate/electrode area ratio was increased within the range studied (0.57-2.3 mL min~(-1) cm~(-2)). In this way, the use of Sn as cathode allowed achieving rates of formate production that were 25% higher than the maximum rates obtained with Pb, together with Faradaic efficiencies close to 70%, which were 15 points higher than those with Pb. These results reinforce the interest in Sn as electrode material in the electro-reduction of CO2 to formate.
机译:有人指出,电化学还原是将CO2气化为有用化学品的一种有前途的方法。当锡板用作工作电极时,本文研究了关键变量对连续电还原CO2生成甲酸的实验系统性能的影响。特别强调比较锡和铅作为阴极的性能。如以前在Pb中发现的那样,使用Sn的电流密度(“ j”)的影响尤其值得注意,当j升高到8.5 mA cm〜(-2)的极限值时,甲酸盐的速率会显着增加。观察到生产会降低法拉第效率。但是,与Pb不同,当电解液流速/电极面积比在研究范围内(0.57-2.3 mL min〜(-1)cm〜(-2))增加时,使用Sn的性能得到改善。这样,使用锡作为阴极可以使甲酸盐的产生速率比使用铅获得的最大产率高25%,而法拉第效率接近70%,比使用铅获得的法拉第效率高15个点。这些结果增强了对Sn作为电极材料进行CO2电解还原成甲酸的兴趣。

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