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Original Articles

Reduction of Iron Oxides Enhanced by a Sulfate-Reducing Bacterium and Biogenic H2S

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Pages 103-117 | Received 12 Jul 2005, Accepted 31 Oct 2005, Published online: 23 Feb 2007

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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
Matthew Coggon, Caryl Ann Becerra, Klaus Nüsslein, Karen Miller, Richard Yuretich & Sarina J. Ergas. (2012) Bioavailability of jarosite for stimulating acid mine drainage attenuation. Geochimica et Cosmochimica Acta 78, pages 65-76.
Crossref
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Crossref
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Crossref
Yi Zhengji. (2010) Microbial removal of uranyl by sulfate reducing bacteria in the presence of Fe (III) (hydr)oxides. Journal of Environmental Radioactivity 101:9, pages 700-705.
Crossref
Yiliang Li. (2010) Microbial respiratory quinones as indicator of ecophysiological redox conditions. Frontiers of Earth Science in China 4:2, pages 195-204.
Crossref
Rajesh K. Sani, Gurdeep Rastogi, James G. Moberly, Alice Dohnalkova, Timothy R. Ginn, Nicolas Spycher, Rajesh V. Shende & Brent M. Peyton. (2010) The toxicity of lead to Desulfovibrio desulfuricans G20 in the presence of goethite and quartz . Journal of Basic Microbiology 50:2, pages 160-170.
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Camino García-Balboa, Dina Cautivo, M. L. Blázquez, F. González, J. A. Muñoz & A. Ballester. (2009) Successive Ferric and Sulphate Reduction using Dissimilatory Bacterial Cultures. Water, Air, and Soil Pollution 207:1-4, pages 213-226.
Crossref
LinXi Yuan, LiGuang Sun, Danielle Fortin, YuHong Wang, ZiJun Wu & XueBin Yin. (2009) Characterization of Fe-S minerals influenced by buried ancient woods in the intertidal zone, East China Sea. Science Bulletin 54:11, pages 1931-1940.
Crossref
C. García-Balboa, Dina Cautivo, M. Luisa Blázquez, F. González, J.A. Muñoz & Antonio Ballester. (2009) The Influence of Disimilatory Fe(III) Reducers on Iron Ore Dissolution. Advanced Materials Research 71-73, pages 501-504.
Crossref
Y.‐L. LI, S. M. PFIFFNER, M. D. DYAR, H. VALI, K. KONHAUSER, D.R. COLE, A. J. RONDINONE & T. J. PHELPS. (2009) Degeneration of biogenic superparamagnetic magnetite. Geobiology 7:1, pages 25-34.
Crossref
Henry Lutz Ehrlich & Dianne Newman. 2008. Geomicrobiology, Fifth Edition. Geomicrobiology, Fifth Edition 279 345 .
T. Praharaj & D. Fortin. (2008) Seasonal variations of microbial sulfate and iron reduction in alkaline Pb–Zn mine tailings (Ontario, Canada). Applied Geochemistry 23:12, pages 3728-3740.
Crossref
Kathleen M. Bailey Boomer & Barbara L. Bedford. (2008) Groundwater-induced redox-gradients control soil properties and phosphorus availability across four headwater wetlands, New York, USA. Biogeochemistry 90:3, pages 259-274.
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Kathleen M. Bailey Boomer & Barbara L. Bedford. (2008) Influence of nested groundwater systems on reduction–oxidation and alkalinity gradients with implications for plant nutrient availability in four New York fens. Journal of Hydrology 351:1-2, pages 107-125.
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