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Ligand Effects on Biotic and Abiotic Fe(II) Oxidation by the Microaerophile Sideroxydans lithotrophicus
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Reduction of Polychlorinated Ethanes and Carbon Tetrachloride by Structural Fe(II) in Smectites
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The Quantitative Assay of Minerals for Fe 2+ and Fe 3+ Using 1,10‐Phenanthroline: II. A Photochemical Method
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Comparative genomics of freshwater Fe-oxidizing bacteria: implications for physiology, ecology, and systematics
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Ferrous saponite from the Deccan Trap, India, and its application in adsorption and reduction of hexavalent chromium
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Microbial Lithotrophic Oxidation of Structural Fe(II) in Biotite
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Evidence for Horizontal and Vertical Transmission of Mtr-Mediated Extracellular Electron Transfer among the Bacteria
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February 2022 |
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Potential Role of Nitrite for Abiotic Fe(II) Oxidation and Cell Encrustation during Nitrate Reduction by Denitrifying Bacteria
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Hydrothermal alteration of a 1 km section through the upper oceanic crust, Deep Sea Drilling Project Hole 504B: Mineralogy, chemistry and evolution of seawater-basalt interactions
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Control of Fe(III) site occupancy on the rate and extent of microbial reduction of Fe(III) in nontronite
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Validating the Cyc2 Neutrophilic Iron Oxidation Pathway Using Meta-omics of Zetaproteobacteria Iron Mats at Marine Hydrothermal Vents
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Oxidation of green rust by anoxygenic phototrophic Fe(II)-oxidising bacteria
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January 2020 |
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Effect of Coexisting Fe(III) (oxyhydr)oxides on Cr(VI) Reduction by Fe(II)-Bearing Clay Minerals
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Iron Isotope Fractionations Reveal a Finite Bioavailable Fe Pool for Structural Fe(III) Reduction in Nontronite
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July 2016 |
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The degradation of diethyl phthalate by reduced smectite clays and dissolved oxygen
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January 2019 |
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Unraveling Fe(II)-Oxidizing Mechanisms in a Facultative Fe(II) Oxidizer, Sideroxydans lithotrophicus Strain ES-1, via Culturing, Transcriptomics, and Reverse Transcription-Quantitative PCR
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January 2022 |
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Biological Redox Cycling of Iron in Nontronite and Its Potential Application in Nitrate Removal
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A review of microbial redox interactions with structural Fe in clay minerals
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Comparative Genomic Analysis of Neutrophilic Iron(II) Oxidizer Genomes for Candidate Genes in Extracellular Electron Transfer
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August 2017 |
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Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM 3 (Al 3+ ,Si 4+ ) 4 O 10 (OH) 2 , where M = Ni 2+ , Mg 2+ , Co 2+ , Fe 2+ , or Al 3+
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October 2002 |
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Metatranscriptomic evidence of pervasive and diverse chemolithoautotrophy relevant to C, S, N and Fe cycling in a shallow alluvial aquifer
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Community structure of microaerophilic iron-oxidizing bacteria in Japanese paddy field soils
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September 2019 |
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A Novel Lineage of Proteobacteria Involved in Formation of Marine Fe-Oxidizing Microbial Mat Communities
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The effect of parent material and soil development on nutrient cycling in temperate ecosystems
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Electron transfer between sorbed Fe(II) and structural Fe(III) in smectites and its effect on nitrate-dependent iron oxidation by Pseudogulbenkiania sp. strain 2002
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Saponite and Vermiculite in Amygdales of the Granby Basaltic Tuff, Connecticut Valley
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Spectroscopic Evidence for Fe(II)–Fe(III) Electron Transfer at Clay Mineral Edge and Basal Sites
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Biological oxidation of Fe(II) in reduced nontronite coupled with nitrate reduction by Pseudogulbenkiania sp. Strain 2002
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Fe(II) Oxidation Is an Innate Capability of Nitrate-Reducing Bacteria That Involves Abiotic and Biotic Reactions
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May 2013 |
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Isolation and Characterization of a Genetically Tractable Photoautotrophic Fe(II)-Oxidizing Bacterium, Rhodopseudomonas palustris Strain TIE-1
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Hydrothermal alteration of upper oceanic crust formed at a fast-spreading ridge: mineral, chemical, and isotopic evidence from ODP Site 801
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Surface-bound radical control rapid organic contaminant degradation through peroxymonosulfate activation by reduced Fe-bearing smectite clays
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May 2020 |
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Assessing the Redox Reactivity of Structural Iron in Smectites Using Nitroaromatic Compounds As Kinetic Probes
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November 2008 |
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Microorganisms pumping iron: anaerobic microbial iron oxidation and reduction
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Microbial reduction of iron(III)-rich nontronite and uranium(VI)
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June 2009 |
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Fe(II)–Fe(III) Electron Transfer in a Clay Mineral with Low Fe Content
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May 2017 |
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ATHENA and ARTEMIS Interactive Graphical Data Analysisusing IFEFFIT
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Ferrian Saponite in a Gabbro Saprolite at Mont Mégantic, Quebec
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Anaerobic Microscopic Analysis of Ferrous Saponite and Its Sensitivity to Oxidation by Earth’s Air: Lessons Learned for Analysis of Returned Samples from Mars and Carbonaceous Asteroids
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November 2021 |
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A dual nitrite isotopic investigation of chemodenitrification by mineral-associated Fe(II) and its production of nitrous oxide
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January 2017 |
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Role of molecular oxygen in the dissolution of siderite and rhodochrosite
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Extracellular electron transfer
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Anoxic storage regenerates reactive Fe(II) in reduced nontronite with short-term oxidation
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Synthesis and crystallogenesis of ferric smectite by evolution of Si-Fe coprecipitates in oxidizing conditions
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Comparisons of structural iron reduction in smectites by bacteria and dithionite: II. A variable-temperature Mössbauer spectroscopic study of Garfield nontronite
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Abiotic reduction of uranium by Fe(II) in soil
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Occurrence of a ferrous, trioctahedral smectite in Recent sediments of Atlantis II Deep, Red Sea
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Identification and Characterization of MtoA: A Decaheme c-Type Cytochrome of the Neutrophilic Fe(II)-Oxidizing Bacterium Sideroxydans lithotrophicus ES-1
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Attached and Suspended Denitrifier Communities in Pristine Limestone Aquifers Harbor High Fractions of Potential Autotrophs Oxidizing Reduced Iron and Sulfur Compounds
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February 2017 |
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Redox Properties of Structural Fe in Clay Minerals: 3. Relationships between Smectite Redox and Structural Properties
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November 2013 |
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The Microbial Ferrous Wheel in a Neutral pH Groundwater Seep
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Involvement of microaerophilic iron-oxidizing bacteria in the iron-oxidizing process at the surface layer of flooded paddy field soil
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July 2020 |
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Spectroscopic Evidence for Interfacial Fe(II)−Fe(III) Electron Transfer in a Clay Mineral
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Oxidative Alteration of Ferrous Smectites and Implications for the Redox Evolution of Early Mars
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Evaluation of redox-active iron sites in smectites using middle and near infrared spectroscopy
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Mechanisms of Bacterial Extracellular Electron Exchange
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Localized alteration of ferrihydrite natural organic matter coprecipitates following reaction with Fe(II)
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Mechanisms of electron transfer from structrual Fe(II) in reduced nontronite to oxygen for production of hydroxyl radicals
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February 2018 |
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Reduction of Hg(II) by Fe(II)-Bearing Smectite Clay Minerals
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Iron Oxidation by a Fused Cytochrome-Porin Common to Diverse Iron-Oxidizing Bacteria
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August 2021 |
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The Fe(II)-oxidizing Zetaproteobacteria : historical, ecological and genomic perspectives
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Redox Properties of Structural Fe in Clay Minerals. 2. Electrochemical and Spectroscopic Characterization of Electron Transfer Irreversibility in Ferruginous Smectite, SWa-1
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Microbial mineral colonization across a subsurface redox transition zone
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Synthesis and structural characterization of ferrous trioctahedral smectites: Implications for clay mineral genesis and detectability on Mars: Ferrous Trioctahedral Smectites
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Electron Exchange and Conduction in Nontronite from First-Principles
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Characterization of an electron conduit between bacteria and the extracellular environment
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Tc(VII) and Cr(VI) Interaction with Naturally Reduced Ferruginous Smectite from a Redox Transition Zone
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Reduction of structural Fe(III) in nontronite by humic substances in the absence and presence of Shewanella putrefaciens and accompanying secondary mineralization
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December 2021 |
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Microbiological and Geochemical Survey of CO2-Dominated Mofette and Mineral Waters of the Cheb Basin, Czech Republic
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Shewanella secretes flavins that mediate extracellular electron transfer
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Reduction and long-term immobilization of technetium by Fe(II) associated with clay mineral nontronite
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The effect of microbial Fe(III) reduction on smectite flocculation
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Voigt-based methods for arbitrary-shape static hyperfine parameter distributions in Mössbauer spectroscopy
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Atom Exchange between Aqueous Fe(II) and Structural Fe in Clay Minerals
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Fe-phyllosilicate redox cycling organisms from a redox transition zone in Hanford 300 Area sediments
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