Production and emission of methane have been increasing concerns due to its significant effect on global climate change and the carbon cycle. Here we report facilitated methane production from acetate by a novel community of methanogens and acetate oxidizing bacteria in the presence of poorly crystalline akaganeite slurry. Comparative analyses showed that methanogenesis was significantly enhanced by added akaganeite and acetate was mostly stoichiometrically converted to methane. Electrons produced from anaerobic acetate oxidation are transferred to akaganeite nanorods that likely prompt the transformation into goethite nanofibers through a series of biogeochemical processes of soluble Fe(II) readsorption and Fe(III) reprecipitation. The m...
Anaerobic oxidation of methane (AOM) is crucial for controlling the emission of this potent greenhou...
Interspecies electron transfer mechanisms between Bacteria and Archaea play a pivotal role during me...
Magnetite nanoparticles (nanoFe3O4) have been reported to facilitate direct interspecies electron tr...
Electromethanogenesis, which is different from traditional hydrogenotrophic and acetoclastic methano...
Metal oxides are wildly studied to enhance anaerobic digestion and the methanogenic process, which i...
Metal oxides are wildly studied to enhance anaerobic digestion and the methanogenic process, which i...
According to prior laboratory research evidence, the formation of a conductive secondary mineral to ...
Quantifying the flux of methane from terrestrial environments remains challenging, owing to consider...
Methane is a major greenhouse gas responsible of global warming and renewable energy, but the precis...
Anaerobic oxidation of methane (AOM) is crucial for controlling the emission of this potent greenhou...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
Anaerobic oxidation of methane (AOM) is crucial for controlling the emission of this potent greenhou...
Interspecies electron transfer mechanisms between Bacteria and Archaea play a pivotal role during me...
Magnetite nanoparticles (nanoFe3O4) have been reported to facilitate direct interspecies electron tr...
Electromethanogenesis, which is different from traditional hydrogenotrophic and acetoclastic methano...
Metal oxides are wildly studied to enhance anaerobic digestion and the methanogenic process, which i...
Metal oxides are wildly studied to enhance anaerobic digestion and the methanogenic process, which i...
According to prior laboratory research evidence, the formation of a conductive secondary mineral to ...
Quantifying the flux of methane from terrestrial environments remains challenging, owing to consider...
Methane is a major greenhouse gas responsible of global warming and renewable energy, but the precis...
Anaerobic oxidation of methane (AOM) is crucial for controlling the emission of this potent greenhou...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
International audienceMethane is a major greenhouse gas responsible of global warming and renewable ...
Anaerobic oxidation of methane (AOM) is crucial for controlling the emission of this potent greenhou...
Interspecies electron transfer mechanisms between Bacteria and Archaea play a pivotal role during me...
Magnetite nanoparticles (nanoFe3O4) have been reported to facilitate direct interspecies electron tr...