26 páginas, 6 figurasA mediatorless microbial fuel cell was developed using Escherichia coli bacteria and platinised titanium mesh as electrodes, producing a maximum power density of 627 mW.m−2. The performance characteristics of the fuel cell were evaluated using both electrochemical and optical techniques. Cyclic Voltammetry showed that an anaerobically grown cell suspension of E. coli was electrochemically active, and are consistent with a role for E. coli-secreted mediators in the functioning of the cell, after the formation of a biofilm on the surface of the electrode. Electrochemical impedance spectroscopy (EIS) data show a variation in the internal resistance during bacterial growth. EIS analysis based on an equivalent circuit revea...
AbstractA mediator-less double-chamber microbial fuel cell was constituted by sulfate-reducing bacte...
Microbial fuel cells (MFC) present bioelectrochemical systems that allow generation of electricity d...
Microbial fuel cells (MFC) present bioelectrochemical systems that allow generation of electricity d...
A mediatorless microbial fuel cell was developed using Escherichia coli bacteria and platinised tita...
Electrochemical impedance spectroscopy, cyclic voltammetry, and polarization tests were used to moni...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
The aim of the present work was to characterize the impedance response of an air-cathode MFC operati...
Microbial fuel cells (MFC) present bioelectrochemical systems that allow generation of electricity d...
AbstractA mediator-less double-chamber microbial fuel cell was constituted by sulfate-reducing bacte...
Microbial fuel cells (MFC) present bioelectrochemical systems that allow generation of electricity d...
Microbial fuel cells (MFC) present bioelectrochemical systems that allow generation of electricity d...
A mediatorless microbial fuel cell was developed using Escherichia coli bacteria and platinised tita...
Electrochemical impedance spectroscopy, cyclic voltammetry, and polarization tests were used to moni...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
Correlations among biofilm activity, chemistry and power production of membraneless, single chamber ...
The aim of the present work was to characterize the impedance response of an air-cathode MFC operati...
Microbial fuel cells (MFC) present bioelectrochemical systems that allow generation of electricity d...
AbstractA mediator-less double-chamber microbial fuel cell was constituted by sulfate-reducing bacte...
Microbial fuel cells (MFC) present bioelectrochemical systems that allow generation of electricity d...
Microbial fuel cells (MFC) present bioelectrochemical systems that allow generation of electricity d...