The spatiotemporal development of a bacterial community in an exoelectrogenic biofilm was investigated in sucrose-fed longitudinal tubular microbial fuel cell reactors, consisting of two serially connected modules. The proportional changes in the microbial community composition were assessed by polymerase chain reaction-denaturing gradient gel electrophoresis (DGGE) and DNA sequencing in order to relate them to the performance and stability of the bioelectrochemical system. The reproducibility of duplicated reactors, evaluated by cluster analysis and Jaccard's coefficient, shows 80-90% similarity in species composition. Biofilm development through fed-batch start-up and subsequent stable continuous operation results in a population shift fr...
This study investigated the effect of external resistance (Rext) on the dynamic evolution of microbi...
The Microbial fuel cell (MFC) technology harnesses the potential of some naturally occurring bacteri...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...
The spatiotemporal development of a bacterial community in an exoelectrogenic biofilm was investigat...
The performance and dynamics of the bacterial communities in the biofilm and suspended culture in th...
Aims: To characterize bacterial populations and their activities within a microbial fuel cell (MFC)...
This study examines changes in diversity and abundance of bacteria recovered from the anodes of micr...
It was observed that Proteobacteria sequences were present at higher numbers within clone libraries ...
Microbial Electrochemical Technologies are based on the use of electrochemically active microorganis...
International audienceIn order to optimize energy production in MFCs, a better understanding of anod...
Understanding the microbial community structure and genetic potential of anode biofilms is key to im...
The relationship between the bacterial communities in anolyte and anode biofilms and the electrochem...
Understanding the microbial community structure and genetic potential of anode biofilms is key to im...
Understanding the microbial community structure and genetic potential of anode biofilms is key to im...
Microbial fuel cells (MFCs) are an evolving technology built around the idea of treating waste water...
This study investigated the effect of external resistance (Rext) on the dynamic evolution of microbi...
The Microbial fuel cell (MFC) technology harnesses the potential of some naturally occurring bacteri...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...
The spatiotemporal development of a bacterial community in an exoelectrogenic biofilm was investigat...
The performance and dynamics of the bacterial communities in the biofilm and suspended culture in th...
Aims: To characterize bacterial populations and their activities within a microbial fuel cell (MFC)...
This study examines changes in diversity and abundance of bacteria recovered from the anodes of micr...
It was observed that Proteobacteria sequences were present at higher numbers within clone libraries ...
Microbial Electrochemical Technologies are based on the use of electrochemically active microorganis...
International audienceIn order to optimize energy production in MFCs, a better understanding of anod...
Understanding the microbial community structure and genetic potential of anode biofilms is key to im...
The relationship between the bacterial communities in anolyte and anode biofilms and the electrochem...
Understanding the microbial community structure and genetic potential of anode biofilms is key to im...
Understanding the microbial community structure and genetic potential of anode biofilms is key to im...
Microbial fuel cells (MFCs) are an evolving technology built around the idea of treating waste water...
This study investigated the effect of external resistance (Rext) on the dynamic evolution of microbi...
The Microbial fuel cell (MFC) technology harnesses the potential of some naturally occurring bacteri...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...