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Enhanced selectivity of carbonaceous products from electrochemical reduction of CO2 in aqueous media

机译:增强碳质产品从水性介质中的CO2电化学减少的选择性

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摘要

This study highlights the importance of CO2 supply method and impact of electrolyte alkalinity in aqueous electrochemical CO2 reduction using CuxO catalyst. Two different CO2 supply methods using a two-chamber (2C) cell with CO2 purging into catholyte and a CO2 gas diffusion electrode (GDE) cell were compared. Faradaic efficiency (FE) of carbonaceous products in GDE cell was more than 3-folds higher than the 2C cell due to improved CO2 mass transfer. From the investigation of alkaline catholyte in GDE cell, the higher catholyte alkalinity led to higher current density and higher FE of carbonaceous products with a better selectivity of C-2 (ethanol and ethylene). The reason lies in the OH groups around catalyst surface which improve the reaction kinetics and moreover stabilize the catalyst surface oxygen during the reduction process. With the potential of -1.17 V (RHE) in 2.0 M KOH, C-2 FE of 40% and current density of -234 mA cm(-2) were achieved. The production rate of ethylene and ethanol was respectively 0.105 mg min(-1) and 0.035 mg min(-1) on 2 cm(2) electrode with CO2 flow rate 15 ml min(-1), which are promising for further development and scale-up.
机译:本研究突出了COXO催化剂的CO2供给方法和电解质碱度在水性电化学CO2水溶液中的影响的重要性。比较了使用具有CO2吹扫到阴极电解液的二腔(2C)电池的两种不同的CO 2供应方法,并进行CO 2气体扩散电极(GDE)细胞。由于改善的CO 2传质,GDE细胞中的碳质产品中的碳质效率(Fe)高于2C电池的3倍。从GDE细胞中碱性阴极电解液的研究,较高的阴极电解液碱度导致含碳产品的更高电流密度和更高的Fe,具有更好的C-2(乙醇和乙烯)的选择性。原因在于催化剂表面周围的OH基团,其改善反应动力学,而且还在还原过程中稳定催化剂表面氧气。在2.0M KOH中的-1.17 V(rHE)的电位,实现了40%的C-2 Fe,电流密度为-234mAcm(-2)。乙烯和乙醇的生产速率分别为0.105mg min(-1)和0.035mg min(-1),在2cm(2)电极上,具有CO 2流速15mL min(-1),这是进一步发展的放大。

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