International audienceFossil-fuel overuse and global warming are calling for new techniques to provide sustainable fuels. Biomethane can be produced by anaerobic digestion of organic waste, yet microbial mechanisms involved are still debated. Traditionally, reduction of carbon dioxide (CO2) to methane (CH4) is commonly explained by interspecies electron transfer, i. e., direct interspecies electron transfer (DIET)-based CO2 reduction or mediated interspecies electron transfer (MIET)-based CO2 reduction. For DIET-based CO2 reduction, or DIET-CO2 reduction, where electrons are provided by electricigens and transferred to methanogenic archaea to complete CO 2 reduction for methane production. Methanogenesis is also executed and facilitated by ...
Propionate is one of the most important intermediates in anaerobic digestion, and its degradation re...
Direct interspecies electron transfer (DIET) between bacteria and methanogenic archaea appears to be...
Understanding the source of methane (CH4) is of great significance for improving the anaerobic ferme...
International audienceFossil-fuel overuse and global warming are calling for new techniques to provi...
Conductive materials (CM) have been extensively reported to enhance methane production in anaerobic ...
Methanation of complex organic substances needs cooperation between syntrophic microorganisms. Durin...
Amongst the most important sustainable waste management strategies, anaerobic biotechnology has had ...
Conductive materials/minerals can promote direct interspecies electron transfer (DIET) between syntr...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
Conductive materials (CM) have been extensively reported to enhance methane production in anaerobic ...
Anaerobic processes are environmentally friendly solutions for the decontamination of a wide range o...
Anaerobic digestion (AD) is an effective biological treatment for stabilizing organic compounds in w...
International audienceDirect interspecies electron transfer (DIET) between electricigens and methano...
Anaerobic conversion of organic wastes and biomass to methane is an important bioenergy strategy, wh...
Propionate is one of the most important intermediates in anaerobic digestion, and its degradation re...
Direct interspecies electron transfer (DIET) between bacteria and methanogenic archaea appears to be...
Understanding the source of methane (CH4) is of great significance for improving the anaerobic ferme...
International audienceFossil-fuel overuse and global warming are calling for new techniques to provi...
Conductive materials (CM) have been extensively reported to enhance methane production in anaerobic ...
Methanation of complex organic substances needs cooperation between syntrophic microorganisms. Durin...
Amongst the most important sustainable waste management strategies, anaerobic biotechnology has had ...
Conductive materials/minerals can promote direct interspecies electron transfer (DIET) between syntr...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
Conductive materials (CM) have been extensively reported to enhance methane production in anaerobic ...
Anaerobic processes are environmentally friendly solutions for the decontamination of a wide range o...
Anaerobic digestion (AD) is an effective biological treatment for stabilizing organic compounds in w...
International audienceDirect interspecies electron transfer (DIET) between electricigens and methano...
Anaerobic conversion of organic wastes and biomass to methane is an important bioenergy strategy, wh...
Propionate is one of the most important intermediates in anaerobic digestion, and its degradation re...
Direct interspecies electron transfer (DIET) between bacteria and methanogenic archaea appears to be...
Understanding the source of methane (CH4) is of great significance for improving the anaerobic ferme...