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The cathode and cathode chamber were inhabited with domesticated biofilm.
It prevented their collection in the cathode chamber.
The catholyte in the cathode chamber included 0.1 M phosphate buffer.
In the MES experiment, the cathode chamber was also filled with growth medium.
These protons flow through the proton exchange membrane (PEM) into the cathode chamber.
The cathode chamber was filled with granular graphite and glass beads.
The carbon dioxide was fed through the pipeline into the cathode chamber of MES by opening the cylinder valve.
Increased DO in the cathode chamber, Ni and Pb removal rate was initially increased and then decreased.
The increase in pH in the cathode chamber, often to ∼13, results in >0.3 V of Nernstian concentration overpotential.
Previous designs have required aerating the cathode chamber water, offsetting the benefits of power generation by power consumption for aeration.
This system generated stable electricity that was enhanced when the electro-Fenton reactions occurred in the cathode chamber.
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