加氢脱氧
愈创木酚
甘油
电合成
化学
泥浆
化学工程
催化作用
间歇式反应器
有机化学
材料科学
电化学
选择性
物理化学
复合材料
工程类
电极
作者
Felix Arie Setiawan,Isana Supiah Yosephine Louise,Kevin J. Smith,Chang-Soo Kim,Előd Gyenge
标识
DOI:10.1021/acssuschemeng.5c00913
摘要
Paired electrosynthesis of valuable products at both electrodes improves the economic feasibility and environmental sustainability of electrochemical processes. Here, for the first time, the paired electrocatalytic hydrodeoxygenation of guaiacol (a lignin model compound) at the cathode and the electrooxidation of glycerol (a by-product of biodiesel production) at the anode is reported. Using a stirred slurry electrocatalytic reactor with a Pt/C catalyst and 1 M methanesulfonic acid electrolyte in both chambers, Faradaic efficiencies of 97.4% and 37.4% at the cathode and anode, respectively, were achieved at 66 mA cm–2 superficial current density and 60 °C. Under the same conditions, the energy consumption of the paired electrosynthesis was 13.9 Wh mol–1. The guaiacol conversion in the paired cell reached 79%, while the highest glycerol conversion was 40.9%. The selectivity for glyceraldehyde, the most valuable product of glycerol oxidation with a price of approximately $20,000/kg, reached 36.8% at 30 oC and decreased with increasing temperature. At the cathode, the highest cyclohexane selectivity in guaiacol hydrodeoxygenation was 6.9%. These results show that further optimization of the reaction conditions and the electrochemical reactor design could potentially lead to the development of a paired electrosynthesis process for the simultaneous conversion of lignin derivatives and glycerol.
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