Reduction of ferric iron by heterotrophic bacteria in lake sediments
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Summary
The addition of Fe(III) to anoxic lake sediments decreased the quantity of volatile fatty acids which accumulated and might permit a slight diversion of metabolism to more energetically favourable end products.
- Type
- article
- Published
- 1984-01-01
- Cited by
- 87
- References
- 23
- OpenAlex
- https://openalex.org/W1964153290
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:56105917
Keywords
Anoxic waters, Chemistry, Fermentation, Heterotroph, Environmental chemistry
References
- Propionate-Degrading Bacterium, Syntrophobacter wolinii sp. nov. gen. nov., from Methanogenic Ecosystems
- Reduction of ferric iron by L-lactate and DL-glycerol-3-phosphate in membrane preparations from Staphylococcus aureus and interactions with the nitrate reductase system
- Reduction of Ferric Iron in Anaerobic, Marine Sediment and Interaction with Reduction of Nitrate and Sulfate
- NITRATE REDUCTION IN BACTEROIDES MULTIACIDUS: ITS EFFECT ON GLUCOSE METABOLISM AND SOME PROPERTIES OF THE REDUCTASE
- Isolation and identification of iron-reducing bacteria from gley soils
- The kinetics of the oxidation of ferrous iron in synthetic and natural waters
- The dynamics of iron and manganese in a seasonally anoxic lake; direct measurement of fluxes using sediment traps
- Supply of iron and manganese to an anoxic lake basin
- Selection, characterization and iron-reducing capacity of nitrate reductaseless (nit-) mutants of iron-reducing bacteria.
- THE EXCHANGE OF DISSOLVED SUBSTANCES BETWEEN MUD AND WATER IN LAKES, II
- Methanogenesis and methanogenic partnerships
- Energy conservation in chemotrophic anaerobic bacteria
- Factors Affecting Methanogenesis and Associated Anaerobic Processes in the Sediments of a Stratified Eutrophic Lake
- Syntrophomonas wolfei gen. nov. sp. nov., an Anaerobic, Syntrophic, Fatty Acid-Oxidizing Bacterium
- Differences in Microbial Decomposition Processes in Profundal and Littoral Lake Sediments, with Particular Reference to the Nitrogen Cycle
- A note on the isolation and enumeration of bacteria which deposit and reduce ferric iron
- Iron and manganese in Lake Vechten (The Netherlands) - dynamics and role in the cycle of reducing power
- Chapter IV A Roll Tube Method for Cultivation of Strict Anaerobes
Cited by
- Ferrous iron dependent nitric oxide production in nitrate reducing cultures of Escherichia coli
- Novel Mode of Microbial Energy Metabolism: Organic Carbon Oxidation Coupled to Dissimilatory Reduction of Iron or Manganese
- The Chemistry of Phosphate and Nitrogen Compounds in Sediments
- Bacterially catalyzed reductive dissolution of manganese for the liberation of silver from refractory ore
- Competitive Mechanisms for Inhibition of Sulfate Reduction and Methane Production in the Zone of Ferric Iron Reduction in Sediments
- Interaction of acetogens and methanogens in anaerobic freshwater sediments
- Microbial Iron Reduction by Enrichment Cultures Isolated from Estuarine Sediments
- Biogeochemical Conditions Favoring Magnetite Formation during Anaerobic Iron Reduction
- Regulation of Dissimilatory Fe(III) Reduction Activity in Shewanella putrefaciens
- Availability of Ferric Iron for Microbial Reduction in Bottom Sediments of the Freshwater Tidal Potomac River
- Organic Matter Mineralization with Reduction of Ferric Iron in Anaerobic Sediments
- Anaerobic Microbial Dissolution of Transition and Heavy Metal Oxides
- Hydrogen and Formate Oxidation Coupled to Dissimilatory Reduction of Iron or Manganese by Alteromonas putrefaciens
- Kinetics of microbial Fe(III) oxyhydroxide reduction : The role of mineral properties
- Bacterial cycling of minerals that affect plant growth in waterlogged soils: a review
- Microbial control of mineral–groundwater equilibria:Macroscale to microscale
- Nitrate reduction in marine sediment: Pathways and interactions with iron and sulfur cycling
- Reduction of Iron Oxides Enhanced by a Sulfate-Reducing Bacterium and Biogenic H2S
- RECENT DEVELOPMENTS IN PROCESSING OCEAN MANGANESE NODULES—A CRITICAL REVIEW
- Studies of iron bacteria from a mangrove ecosystem in goa and KonkanKey Words
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