MnCo2O4 coated carbon felt anode for enhanced microbial fuel cell performance

Chemosphere. 2021 Feb:265:129098. doi: 10.1016/j.chemosphere.2020.129098. Epub 2020 Nov 24.

Abstract

A highly efficient anode is very crucial for an improved microbial fuel cell (MFC) performance. In this study, a binder-free manganese cobalt oxide (MnCo2O4@CF) anode was synthesized using a conventional carbon felt (CF) by a facile hydrothermal method. A large electrochemically active and rough electrode surface area of MnCo2O4@CF anode improved the substrate fluxes and microbial adhesion/growth. Furthermore, the electrochemical tests on the synthesized anode confirmed the superior bioelectrochemical activity, reduced ion transfer resistance, and excellent capacitance. This resulted in an improved power density (945 mW/m2), which was 3.8 times higher than that of CF anode. The variable valence state, high stability and biocompatibility of MnCo2O4@CF resulted in continuous current density performance for five MFC cycles. High-throughput biofilm analysis revealed the enrichment of electricity producing phylum of Proteobacteria and Bacteroidetes (∼90.0%), which signified that the modified MnCo2O4 anode accelerated the enrichment of electro-active microbes.

Keywords: Anode modification; Manganese cobalt oxide; Microbial fuel cell; Power density.

MeSH terms

  • Bioelectric Energy Sources*
  • Carbon
  • Carbon Fiber
  • Electricity
  • Electrodes

Substances

  • Carbon Fiber
  • Carbon