Polarization curves are of paramount importance for the detection of toxic components in microbial fuel cell (MFC) based biosensors. In this study, polarization curves were made under non-toxic conditions and under toxic conditions after the addition of various concentrations of nickel, bentazon, sodiumdodecyl sulfate and potassium ferricyanide. The experimental polarization curves show that toxic components have an effect on the electrochemically active bacteria in the cell. (Extended) Butler Volmer Monod (BVM) models were used to describe the polarization curves of the MFC under nontoxic and toxic conditions. It was possible to properly fit the (extended) BVM models using linear regression techniques to the polarization curves and to dist...
With the unprecedented deterioration of environmental quality, rapid recognition of toxic compounds ...
<span id="_ctl1_WeverContentPlaceholder1"><span class="content">In a microbial fuel cell bacteria pr...
Nowadays, the development of real-time water quality monitoring sensors is critical. However, tradit...
Polarization curves are of paramount importance for the detection of toxic components in microbial f...
Polarization curves are of paramount importance for the detection of toxic components in microbial f...
Currently available models describing microbial fuel cell (MFC) polarization curves, do not describe...
Safe drinking water without toxic chemicals is crucial for people's health. A recently developed sen...
Microbial fuel cells (MFCs) are promising for simultaneous treatment of wastewater and energy produc...
This study introduces the utilization of self-powered microbial fuel cell (MFC)-based biosensors for...
Microbial fuel cells (MFCs) are promising for simultaneous treatment of wastewater and energy produc...
Biosensors can be used detect toxicity and monitor quality of drinking water. A microbial fuel cell ...
In the monitoring of pollutants in an aquatic environment, it is important to preserve water quality...
A method for assessing the performance of microbial fuel cells (MFCs) is the polarisation sweep wher...
A novel biomonitoring system using microbial fuel cells for detecting the inflow of toxic substances...
With the unprecedented deterioration of environmental quality, rapid recognition of toxic compounds ...
<span id="_ctl1_WeverContentPlaceholder1"><span class="content">In a microbial fuel cell bacteria pr...
Nowadays, the development of real-time water quality monitoring sensors is critical. However, tradit...
Polarization curves are of paramount importance for the detection of toxic components in microbial f...
Polarization curves are of paramount importance for the detection of toxic components in microbial f...
Currently available models describing microbial fuel cell (MFC) polarization curves, do not describe...
Safe drinking water without toxic chemicals is crucial for people's health. A recently developed sen...
Microbial fuel cells (MFCs) are promising for simultaneous treatment of wastewater and energy produc...
This study introduces the utilization of self-powered microbial fuel cell (MFC)-based biosensors for...
Microbial fuel cells (MFCs) are promising for simultaneous treatment of wastewater and energy produc...
Biosensors can be used detect toxicity and monitor quality of drinking water. A microbial fuel cell ...
In the monitoring of pollutants in an aquatic environment, it is important to preserve water quality...
A method for assessing the performance of microbial fuel cells (MFCs) is the polarisation sweep wher...
A novel biomonitoring system using microbial fuel cells for detecting the inflow of toxic substances...
With the unprecedented deterioration of environmental quality, rapid recognition of toxic compounds ...
<span id="_ctl1_WeverContentPlaceholder1"><span class="content">In a microbial fuel cell bacteria pr...
Nowadays, the development of real-time water quality monitoring sensors is critical. However, tradit...