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Environmental Microbiology|December 18, 2022
Environmental predictors of electroactive bacterioplankton in small boreal lakesCharles N Olmsted, Roger Ort, Patricia Q Tran, et al.Environmental Science & Technology|June 14, 2016
Iron Isotope Fractionations Reveal a Finite Bioavailable Fe Pool for Structural Fe(III) Reduction in NontroniteBingjie Shi, Kai Liu, Lingling Wu, et al.The Science of the Total Environment|August 9, 2005
Effect of watershed parameters on mercury distribution in different environmental compartments in the Mobile Alabama River Basin, USAKimberly A Warner, Jean-Claude J Bonzongo, Eric E Roden, et al.Applied and Environmental Microbiology|December 30, 2015
Aerobic and Anaerobic Thiosulfate Oxidation by a Cold-Adapted, Subglacial ChemoautotrophZoë R Harrold, Mark L Skidmore, Trinity L Hamilton, et al.Environmental Science and Pollution Research International|May 15, 2017
Biogeochemical controls on mercury methylation in the Allequash Creek wetlandJoel E Creswell, Martin M Shafer, Christopher L Babiarz, et al.Astrobiology|June 26, 2020
Geochemical and Stable Fe Isotopic Analysis of Dissimilatory Microbial Iron Reduction in Chocolate Pots Hot Spring, Yellowstone National ParkNathaniel W Fortney, Brian L Beard, Jack A Hutchings, et al.Water Research|May 26, 2004
Modeling the sorption kinetics of divalent metal ions to hematiteB-H Byong-Hun Jeon, B A Brian A Dempsey, W D William D Burgos, et al.Frontiers in Microbiology|July 12, 2012
The Microbial Ferrous Wheel in a Neutral pH Groundwater SeepEric E Roden, Joyce M McBeth, Marco Blöthe, et al.Journal of Contaminant Hydrology|August 18, 2009
A thermodynamically-based model for predicting microbial growth and community composition coupled to system geochemistry: Application to uranium bioreductionJ D Istok, M Park, M Michalsen, et al.Geobiology|April 29, 2017
Microbial acceleration of aerobic pyrite oxidation at circumneutral pHE Percak-Dennett, S He, B Converse, et al.Pageof 9