Understanding the microbial community structure and genetic potential of anode biofilms is key to improve extracellular electron transfers in microbial fuel cells. We investigated effect of substrate and temporal dynamics of anodic biofilm communities using phylogenetic and metagenomic approaches in parallel with electrochemical characterizations. The startup non-steady state anodic bacterial structures were compared for a simple substrate, acetate, and for a complex substrate, landfill leachate, using a single-chamber air-cathode microbial fuel cell. Principal coordinate analysis showed that distinct community structures were formed with each substrate type. The bacterial diversity measured as Shannon index decreased with time in acetate c...
Microbial Electrochemical Technologies are based on the use of electrochemically active microorganis...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...
This study evaluated the bacterial diversity associated with biofilms formed on the anode of microbi...
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...
The relationship between the bacterial communities in anolyte and anode biofilms and the electrochem...
This study examines changes in diversity and abundance of bacteria recovered from the anodes of micr...
The combined processes of microbial biodegradation accompanied by extracellular electron transfer ma...
This study investigated the effect of external resistance (Rext) on the dynamic evolution of microbi...
International audienceIn order to optimize energy production in MFCs, a better understanding of anod...
The performance and dynamics of the bacterial communities in the biofilm and suspended culture in th...
Abstract Background The flame-oxidized stainless steel anode (FO-SSA) is a newly developed electrode...
Metabolic interactions within microbial communities are essential for the efficient degradation of c...
Microbial fuel cells (MFCs) have applications other than electricity production, including the capac...
Aims: To characterize bacterial populations and their activities within a microbial fuel cell (MFC)...
Microbial Electrochemical Technologies are based on the use of electrochemically active microorganis...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...
This study evaluated the bacterial diversity associated with biofilms formed on the anode of microbi...
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...
The relationship between the bacterial communities in anolyte and anode biofilms and the electrochem...
This study examines changes in diversity and abundance of bacteria recovered from the anodes of micr...
The combined processes of microbial biodegradation accompanied by extracellular electron transfer ma...
This study investigated the effect of external resistance (Rext) on the dynamic evolution of microbi...
International audienceIn order to optimize energy production in MFCs, a better understanding of anod...
The performance and dynamics of the bacterial communities in the biofilm and suspended culture in th...
Abstract Background The flame-oxidized stainless steel anode (FO-SSA) is a newly developed electrode...
Metabolic interactions within microbial communities are essential for the efficient degradation of c...
Microbial fuel cells (MFCs) have applications other than electricity production, including the capac...
Aims: To characterize bacterial populations and their activities within a microbial fuel cell (MFC)...
Microbial Electrochemical Technologies are based on the use of electrochemically active microorganis...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...
This study evaluated the bacterial diversity associated with biofilms formed on the anode of microbi...