The combined processes of microbial biodegradation accompanied by extracellular electron transfer make microbial fuel cells (MFCs) a promising new technology for cost-effective and sustainable wastewater treatment. Although a number of microbial species that build biofilms on the anode surfaces of operating MFCs have been identified, studies on the metagenomics of entire electrogenic communities are limited. Here we present the results of wholegenome metagenomic analysis of electrochemically active robust anodic microbial communities, and their anaerobic digester (AD) sludge inocula, from two pilot-scale MFC bioreactors fed with different distillery wastewaters operated under ambient conditions in distinct climatic zones. Taxonomic analysis...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...
Abstract Background Microbial fuel cells (MFCs) operating with complex microbial communities have be...
The relationship between the bacterial communities in anolyte and anode biofilms and the electrochem...
Bioelectrochemical systems such as microbial fuel cells (MFCs) are promising new technologies for ef...
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...
Understanding the microbial community structure and genetic potential of anode biofilms is key to im...
Methanol is widely used in industrial processes, and as such, is discharged in large quantities in w...
The Microbial fuel cell (MFC) technology harnesses the potential of some naturally occurring bacteri...
This study evaluated the bacterial diversity associated with biofilms formed on the anode of microbi...
Methanol is widely used in industrial processes, and as such, is discharged in large quantities in w...
MFCs represent a promising sustainable biotechnology that enables the direct conversion of organic m...
Metabolic interactions within microbial communities are essential for the efficient degradation of c...
This study investigated the microbial community structure on the anode surface of four dual chamber ...
Abstract Background The flame-oxidized stainless steel anode (FO-SSA) is a newly developed electrode...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...
Abstract Background Microbial fuel cells (MFCs) operating with complex microbial communities have be...
The relationship between the bacterial communities in anolyte and anode biofilms and the electrochem...
Bioelectrochemical systems such as microbial fuel cells (MFCs) are promising new technologies for ef...
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...
Understanding the microbial community structure and genetic potential of anode biofilms is key to im...
Methanol is widely used in industrial processes, and as such, is discharged in large quantities in w...
The Microbial fuel cell (MFC) technology harnesses the potential of some naturally occurring bacteri...
This study evaluated the bacterial diversity associated with biofilms formed on the anode of microbi...
Methanol is widely used in industrial processes, and as such, is discharged in large quantities in w...
MFCs represent a promising sustainable biotechnology that enables the direct conversion of organic m...
Metabolic interactions within microbial communities are essential for the efficient degradation of c...
This study investigated the microbial community structure on the anode surface of four dual chamber ...
Abstract Background The flame-oxidized stainless steel anode (FO-SSA) is a newly developed electrode...
International audienceMicrobial Fuel Cells (MFCs) are being developed as a novel biotechnology to ha...
Abstract Background Microbial fuel cells (MFCs) operating with complex microbial communities have be...
The relationship between the bacterial communities in anolyte and anode biofilms and the electrochem...