English

Low pH, high salinity: too much for Microbial Fuel Cells?

Other Quantitative Biology 2016-11-10 v1 Biological Physics Chemical Physics

Abstract

Twelve single chambered, air-cathode Tubular Microbial Fuel Cells (TMFCs) have been filled up with fruit and vegetable residues. The anodes were realized by means of a carbon fiber brush, while the cathodes were realized through a graphite-based porous ceramic disk with Nafion membranes (117 Dupont). The performances in terms of polarization curves and power production were assessed according to different operating conditions: percentage of solid substrate water dilution, adoption of freshwater and a 35mg/L NaCl water solution and, finally, the effect of an initial potentiostatic growth. All TMFCs operated at low pH (pH=3.0±0.5=3.0 \pm 0.5), as no pH amendment was carried out. Despite the harsh environmental conditions, our TMFCs showed a Power Density (PD) ranging from 20 to 55~mW/m2^2 \cdotkgwaste_{\text{waste}} and a maximum CD of 20~mA/m2^2 \cdotkgwaste_{\text{waste}}, referred to the cathodic surface. COD removal after a 2828-day period was about 45%45 \%. The remarkably low pH values as well as the fouling of Nafion membrane very likely limited TMFC performances. However, a scale-up estimation of our reactors provides interesting values in terms of power production, compared to actual anaerobic digestion plants. These results encourage further studies to characterize the graphite-based porous ceramic cathodes and to optimize the global TMFC performances, as they may provide a valid and sustainable alternative to anaerobic digestion technologies.

Keywords

Cite

@article{arxiv.1611.02735,
  title  = {Low pH, high salinity: too much for Microbial Fuel Cells?},
  author = {Nicole Jannelli and Rosa Anna Nastro and Viviana Cigolotti and Mariagiovanna Minutillo and Giacomo Falcucci},
  journal= {arXiv preprint arXiv:1611.02735},
  year   = {2016}
}

Comments

13 pages, 10 Figures

R2 v1 2026-06-22T16:46:27.604Z