过电位
Nafion公司
电合成
电极
化学工程
材料科学
化学
无机化学
纳米技术
电化学
工程类
物理化学
作者
Shuwei Li,Min‐Soo Kim,Jungho Jae,Min Jang,Byong‐Hun Jeon,Jung Rae Kim
标识
DOI:10.1016/j.biortech.2022.127983
摘要
Renewable electricity-based microbial electrosynthesis can upgrade CO2 into value-added chemicals and simultaneously increase the number of biocatalysts by cell growth, helping to achieve sustainable carbon-negative processes. In most studies, the main strategy for improving the MES performance was to enhance H2-based electron uptake by decreasing the overpotential and electrical conductivity of the electrode. Less is known about the electrode-based direct electron uptake for CO2 conversion in MES. In this study, a solid neutral red/Nafion conductive layer was developed on the carbon electrode surface using a feasible dip and dry method. The modified electrode showed higher HER overpotential and lower capacitance but enhanced redox capability and hydrophobicity, which increased direct electron transport to the bacteria rather than hydrogen-based indirect electron delivery. The Neutral red/Nafion-implemented MES showed faster start-up, higher acetate production, and energy efficiency than the non-modified electrode.
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