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Science (American Association for the Advancement of Science), ISSN 1095-9203, 2009, Volume 325, Issue 5937, pp. 184 - 187
.... The anaerobic oxidation of methane (AOM) is often thought of as a sulfate-dependent process, despite the fact that other electron acceptors are more energetically favorable... 
Methane | Birnessite | Ferrihydrite | Bacteria | Reports | Oxidation | Sulfates | Sulfur | Sediments | Manganese | Electrons | ARCHAEA | MICROBIAL COMMUNITIES | ANAEROBIC OXIDATION | REDUCTION | SEDIMENTS | MULTIDISCIPLINARY SCIENCES | SOIL | DIVERSITY | SULFATE-REDUCING BACTERIA | COLD SEEPS | BLACK-SEA | Anaerobiosis | Crenarchaeota - classification | Proteobacteria - metabolism | Molecular Sequence Data | Proteobacteria - classification | Phylogeny | Archaea - classification | Methanosarcinaceae - isolation & purification | Proteobacteria - genetics | Euryarchaeota - genetics | Geologic Sediments - microbiology | Thermodynamics | Bacteria - classification | Crenarchaeota - metabolism | Bacteroides - classification | Oxides - metabolism | Euryarchaeota - classification | Methanosarcinaceae - genetics | Bacteria - metabolism | Carbon Dioxide - metabolism | Crenarchaeota - isolation & purification | Ferric Compounds - metabolism | Methane - metabolism | Oxidation-Reduction | Methanosarcinaceae - classification | Archaea - isolation & purification | California | Bacteria - genetics | Methanosarcinaceae - metabolism | Euryarchaeota - isolation & purification | Bacteroides - genetics | Bacteroides - metabolism | Archaea - metabolism | Bacteria - isolation & purification | Manganese - metabolism | Euryarchaeota - metabolism | Proteobacteria - isolation & purification | Archaea - genetics | Crenarchaeota - genetics | Bacteroides - isolation & purification | Oxidation-reduction reaction | Chemical properties | Research | Methanogenesis | Marine biology | Microbiology
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2016, Volume 113, Issue 45, pp. 12792 - 12796
Journal Article
Nature reviews. Microbiology, ISSN 1740-1534, 2006, Volume 4, Issue 10, pp. 752 - 764
...)) or trivalent ferric (Fe(III)) oxidation states. The solubility of Fe(III) increases with decreasing pH values. Decreasing pH values also enhance the stability of Fe(II... 
OUTER-MEMBRANE CYTOCHROMES | FERROUS-IRON | FE(III)-REDUCING MICROORGANISM | GEOBACTER-SULFURREDUCENS | NITRATE-DEPENDENT OXIDATION | MICROBIOLOGY | SHEWANELLA-ONEIDENSIS MR-1 | DISSIMILATORY FE(III) | SP NOV | FE(III) OXIDE REDUCTION | ORGANIC-CARBON OXIDATION | Bacteria, Anaerobic - metabolism | Oxidation-Reduction | Iron - metabolism | Ecosystem
Journal Article
Journal Article