<div><p>Production of hydrogen and organic compounds by an electrosynthetic microbiome using electrodes and carbon dioxide as sole electron donor and carbon source, respectively, was examined after exposure to acidic pH (∼5). Hydrogen production by biocathodes poised at −600 mV vs. SHE increased>100-fold and acetate production ceased at acidic pH, but ∼5–15 mM (catholyte volume)/day acetate and>1,000 mM/day hydrogen were attained at pH ∼6.5 following repeated exposure to acidic pH. Cyclic voltammetry revealed a 250 mV decrease in hydrogen overpotential and a maximum current density of 12.2 mA/cm<sup>2</sup> at −765 mV (0.065 mA/cm<sup>2</sup> sterile control at −800 mV) by the <i>Acetobacterium</i>-dominated community. Supplying −800 mV to ...
An enrichment methodology was developed for a homoacetogenic biocathode that is able to function at ...
Hydrogen was produced by an ethanol-acetate fermentation at pH of 5.0 +/- 0.2 and HRT of 3 days. The...
This paper, for the first time, describes the development of a microbial biocathode for hydrogen pro...
Production of hydrogen and organic compounds by an electrosynthetic microbiome using electrodes and ...
Production of hydrogen and organic compounds by an electrosynthetic microbiome using electrodes and ...
© The Author(s), 2014. This article is distributed under the terms of the Creative Commons Attributi...
<p>Production of hydrogen, acetate, and formate by the electrosynthetic microbiome as pH decreases i...
Hydrogen is a key versatile biomolecule in microbial electrosynthesis (MES). It can be directly prod...
Electron-transfer pathways occurring in biocathodes are still unknown. We demonstrate here that high...
Electron-transfer pathways occurring in biocathodes are still unknown. We demonstrate here that high...
Understanding the mechanism of electron transfer between the cathode and microorganisms in cathode b...
[EN] Microbial electromethanogenesis (EM) has positioned itself as a promising technology for electr...
The effect of pH on the conversion of glucose to hydrogen by a mixed culture of fermentative bacteri...
Hydrogen was produced by an ethanol-acetate fermentation at pH of 5.0 ± 0.2 and HRT of 3 days. The y...
Microbial electrosynthesis is the biocathode-driven production of chemicals from CO<sub>2</sub> and ...
An enrichment methodology was developed for a homoacetogenic biocathode that is able to function at ...
Hydrogen was produced by an ethanol-acetate fermentation at pH of 5.0 +/- 0.2 and HRT of 3 days. The...
This paper, for the first time, describes the development of a microbial biocathode for hydrogen pro...
Production of hydrogen and organic compounds by an electrosynthetic microbiome using electrodes and ...
Production of hydrogen and organic compounds by an electrosynthetic microbiome using electrodes and ...
© The Author(s), 2014. This article is distributed under the terms of the Creative Commons Attributi...
<p>Production of hydrogen, acetate, and formate by the electrosynthetic microbiome as pH decreases i...
Hydrogen is a key versatile biomolecule in microbial electrosynthesis (MES). It can be directly prod...
Electron-transfer pathways occurring in biocathodes are still unknown. We demonstrate here that high...
Electron-transfer pathways occurring in biocathodes are still unknown. We demonstrate here that high...
Understanding the mechanism of electron transfer between the cathode and microorganisms in cathode b...
[EN] Microbial electromethanogenesis (EM) has positioned itself as a promising technology for electr...
The effect of pH on the conversion of glucose to hydrogen by a mixed culture of fermentative bacteri...
Hydrogen was produced by an ethanol-acetate fermentation at pH of 5.0 ± 0.2 and HRT of 3 days. The y...
Microbial electrosynthesis is the biocathode-driven production of chemicals from CO<sub>2</sub> and ...
An enrichment methodology was developed for a homoacetogenic biocathode that is able to function at ...
Hydrogen was produced by an ethanol-acetate fermentation at pH of 5.0 +/- 0.2 and HRT of 3 days. The...
This paper, for the first time, describes the development of a microbial biocathode for hydrogen pro...