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Original Articles

Influence of Biogenic Fe(II) on Bacterial Crystalline Fe(III) Oxide Reduction

Pages 209-251 | Published online: 10 Nov 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (15)

Katja Laufer, Alexander B. Michaud, Hans Røy & Bo B. Jørgensen. (2020) Reactivity of Iron Minerals in the Seabed Toward Microbial Reduction – A Comparison of Different Extraction Techniques. Geomicrobiology Journal 37:2, pages 170-189.
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Weihuang Zhu, Dan Yu, Mengran Shi, Yongtao Zhang & Tinglin Huang. (2017) Quinone-Mediated Microbial Goethite Reduction and Transformation of Redox Mediator, Anthraquinone-2,6-Disulfonate (AQDS). Geomicrobiology Journal 34:1, pages 27-36.
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Tao Wu, Ravi K. Kukkadapu, Aron M. Griffin, Christopher A. Gorski, Hiromi Konishi, Huifang Xu & Eric E. Roden. (2016) Interactions Between Fe(III)-Oxides and Fe(III)-Phyllosilicates During Microbial Reduction 1: Synthetic Sediments. Geomicrobiology Journal 33:9, pages 793-806.
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Deng Liu, Hailiang Dong, Linduo Zhao & Hongmei Wang. (2014) Smectite Reduction by Shewanella Species as Facilitated by Cystine and Cysteine. Geomicrobiology Journal 31:1, pages 53-63.
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Weihuang Zhu, Yangang Nan, Tinglin Huang & Fengchang Wu. (2013) The Mechanism, Thermodynamic and Kinetic Characteristics of the Microbial Reduction of Goethite Mediated by Anthraquinone-2-Sulfonate. Geomicrobiology Journal 30:10, pages 928-940.
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F.P. A. Jorand, A.-S. Sergent, P.-Ph. Remy, I. Bihannic, J. Ghanbaja, B. Lartiges, K. Hanna & A. Zegeye. (2013) Contribution of Anionic vs. Neutral Polymers to the Formation of Green Rust 1 from γ-FeOOH Bioreduction. Geomicrobiology Journal 30:7, pages 600-615.
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Susan Glasauer, Al Mattes & Andreas Gehring. (2013) Constraints on the Preservation of Ferriferous Microfossils. Geomicrobiology Journal 30:6, pages 479-489.
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KennethH. Williams, PhilipE. Long, JamesA. Davis, MichaelJ. Wilkins, A. Lucie N'Guessan, CarlI. Steefel, Li Yang, Darrell Newcomer, FrankA. Spane, LeeJ. Kerkhof, Lora McGuinness, Richard Dayvault & DerekR. Lovley. (2011) Acetate Availability and its Influence on Sustainable Bioremediation of Uranium-Contaminated Groundwater. Geomicrobiology Journal 28:5-6, pages 519-539.
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ChristopherJ. Daughney, Mohamad Fakih & Xavier Châtellier. (2011) Progressive Sorption and Oxidation/Hydrolysis of Fe(II) Affects Cadmium Immobilization by Bacteria-Iron Oxide Composites. Geomicrobiology Journal 28:1, pages 11-22.
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Julian Bosch, Andreas Fritzsche, KaiU. Totsche & RainerU. Meckenstock. (2010) Nanosized Ferrihydrite Colloids Facilitate Microbial Iron Reduction under Flow Conditions. Geomicrobiology Journal 27:2, pages 123-129.
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Everett Cossio Salas, WilliamM. Berelson, DouglasE. Hammond, AnthonyR. Kampf & KennethH. Nealson. (2009) The Influence of Carbon Source on the Products of Dissimilatory Iron Reduction. Geomicrobiology Journal 26:7, pages 451-462.
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Sean Langley, Andrew Gault, Alexandre Ibrahim, Rob Renaud, Danielle Fortin, IanD. Clark & F. Grant Ferris. (2009) A Comparison of the Rates of Fe(III) Reduction in Synthetic and Bacteriogenic Iron Oxides by Shewanella putrefaciens CN32. Geomicrobiology Journal 26:2, pages 57-70.
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Christelle Hyacinthe, Steeve Bonneville & Philippe Van Cappellen. (2008) Effect of Sorbed Fe(II) on the Initial Reduction Kinetics of 6-Line Ferrihydrite and Amorphous Ferric Phosphate by Shewanella putrefaciens . Geomicrobiology Journal 25:3-4, pages 181-192.
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T. Behrends & P. Van Cappellen. (2007) Transformation of Hematite into Magnetite During Dissimilatory Iron Reduction—Conditions and Mechanisms. Geomicrobiology Journal 24:5, pages 403-416.
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Peter Dominik & Martin Kaupenjohann. (2004) Reduction of Fe(III) (Hydr)oxides with Known Thermodynamic Stability by Geobacter metallireducens . Geomicrobiology Journal 21:4, pages 287-295.
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