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Assessment of the Effects of Flow Rate and Ionic Strength on the Performance of an Air-Cathode Microbial Fuel Cell Using Electrochemical Impedance Spectroscopy
by
Borole, Abhijeet P.
, Aaron, Doug
, Tsouris, Costas
, Hamilton, Choo Y.
in
anode impedance
/ biofuel cell
/ capacitance
/ Carbon
/ Electricity
/ electrogenic
/ Fuel cells
/ internal resistances
/ Spectrum analysis
2010
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Assessment of the Effects of Flow Rate and Ionic Strength on the Performance of an Air-Cathode Microbial Fuel Cell Using Electrochemical Impedance Spectroscopy
by
Borole, Abhijeet P.
, Aaron, Doug
, Tsouris, Costas
, Hamilton, Choo Y.
in
anode impedance
/ biofuel cell
/ capacitance
/ Carbon
/ Electricity
/ electrogenic
/ Fuel cells
/ internal resistances
/ Spectrum analysis
2010
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Do you wish to request the book?
Assessment of the Effects of Flow Rate and Ionic Strength on the Performance of an Air-Cathode Microbial Fuel Cell Using Electrochemical Impedance Spectroscopy
by
Borole, Abhijeet P.
, Aaron, Doug
, Tsouris, Costas
, Hamilton, Choo Y.
in
anode impedance
/ biofuel cell
/ capacitance
/ Carbon
/ Electricity
/ electrogenic
/ Fuel cells
/ internal resistances
/ Spectrum analysis
2010
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Assessment of the Effects of Flow Rate and Ionic Strength on the Performance of an Air-Cathode Microbial Fuel Cell Using Electrochemical Impedance Spectroscopy
Journal Article
Assessment of the Effects of Flow Rate and Ionic Strength on the Performance of an Air-Cathode Microbial Fuel Cell Using Electrochemical Impedance Spectroscopy
2010
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Overview
Impedance changes of the anode, cathode and solution were examined for an air-cathode microbial fuel cell (MFC) under varying conditions. An MFC inoculated with a pre-enriched microbial culture resulted in a startup time of less than ten days. Over this period, the anode impedance decreased below the cathode impedance, suggesting a cathode-limited power output. Increasing the anode flow rate did not impact the anode impedance significantly, but it decreased the cathode impedance by 65%. Increasing the anode-medium ionic strength also decreased the cathode impedance. These impedance results provide insight into electron and proton transport mechanisms and can be used to improve MFC performance.
Publisher
MDPI AG
Subject
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