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Original Articles

Microbial sulfate reduction measured by an automated electrical impedance technique

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Pages 355-372 | Published online: 28 Jan 2009

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JuliaS. Reynolds, StevenD. Machemer, DavidM. Updegraff & ThomasR. Wildeman. (1997) Potentiometric titration method for determining rates of sulfate reduction in a constructed wetland. Geomicrobiology Journal 14:1, pages 65-79.
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G. W. Skyring. (1987) Sulfate reduction in coastal ecosystems. Geomicrobiology Journal 5:3-4, pages 295-374.
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Articles from other publishers (24)

Amelia Y. M. Woo, Miguel A. Aguilar Ramos, Rohan Narayan, Khyle C. Richards-Corke, Michelle L. Wang, Walter J. Sandoval-Espinola & Emily P. Balskus. (2023) Targeting the human gut microbiome with small-molecule inhibitors. Nature Reviews Chemistry 7:5, pages 319-339.
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Ronald S Oremland. (2021) Got acetylene: a personal research retrospective. FEMS Microbes 2.
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Ronald S Oremland. (2019) Why I never worked on anaerobic oxidation of methane (AOM) beyond the unsuccessful attempts of my NRC postdoc at NASA Ames Research Center (Sept. 1976–Sept. 1977). FEMS Microbiology Letters 366:15.
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Larry L. Barton & Claire M. Carpenter. (2013) Suitability of fluorescence measurements to quantify sulfate-reducing bacteria. Journal of Microbiological Methods 93:3, pages 192-197.
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Satoshi Nakagawa & Ken Takai. 2006. 55 91 .
Larry L. Barton & Richard M. Plunkett. 2003. Encyclopedia of Environmental Microbiology. Encyclopedia of Environmental Microbiology.
Darwin Lyew & John Sheppard. (2001) Use of conductivity to monitor the treatment of acid mine drainage by sulphate-reducing bacteria. Water Research 35:8, pages 2081-2086.
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L Kung, J.P Bracht & J.Y Tavares. (2000) Effects of various compounds on in vitro ruminal fermentation and production of sulfide. Animal Feed Science and Technology 84:1-2, pages 69-81.
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G.R. Gibson, R.J. Parkes & R.A. Herbert. (1989) Biological availability and turnover rate of acetate in marine and estuarine sediments in relation to dissimilatory sulphate reduction. FEMS Microbiology Letters 62:5, pages 303-306.
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Ronald S. Oremland & Douglas G. Capone. 1988. Advances in Microbial Ecology. Advances in Microbial Ecology 285 383 .
Jonathan P. Zehr & Ronald S. Oremland. (1987) Reduction of Selenate to Selenide by Sulfate-Respiring Bacteria: Experiments with Cell Suspensions and Estuarine Sediments. Applied and Environmental Microbiology 53:6, pages 1365-1369.
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Richard L. Smith & Michael J. Klug. (1987) Flowthrough Reactor Flasks for Study of Microbial Metabolism in Sediments. Applied and Environmental Microbiology 53:2, pages 371-374.
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GC Moran & P LabineOH Tuovinen & G Cragnolino. 1986. Corrosion Monitoring in Industrial Plants Using Nondestructive Testing and Electrochemical Methods. Corrosion Monitoring in Industrial Plants Using Nondestructive Testing and Electrochemical Methods 413 432 .
Howard J. Dicker & David W. Smith. (1985) Metabolism of low molecular weight organic compounds by sulfate-reducing bacteria in a Delaware salt marsh. Microbial Ecology 11:4, pages 317-335.
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Howard J. Dicker & David W. Smith. (1985) Effects of organic amendments on sulfate reduction activity, H2 consumption, and H2 production in salt marsh sediments. Microbial Ecology 11:4, pages 299-315.
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Yousif K. Kharaka, Stephen W. Robinson, Leroy M. Law & William W. Carothers. (1984) Hydrogeochemistry of Big Soda Lake, Nevada: An alkaline meromictic desert lake. Geochimica et Cosmochimica Acta 48:4, pages 823-835.
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Michael R. Winfrey & David M. Ward. (1983) Substrates for Sulfate Reduction and Methane Production in Intertidal Sediments. Applied and Environmental Microbiology 45:1, pages 193-199.
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Ronald S. Oremland & Sandra Polcin. (1982) Methanogenesis and Sulfate Reduction: Competitive and Noncompetitive Substrates in Estuarine Sediments. Applied and Environmental Microbiology 44:6, pages 1270-1276.
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Timothy M. Vogel, Ronald S. Oremland & Keith A. Kvenvolden. (1982) Low-temperature formation of hydrocarbon gases in San Francisco Bay sediment (California, U.S.A.). Chemical Geology 37:3-4, pages 289-298.
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Derek R. Lovley, Daryl F. Dwyer & Michael J. Klug. (1982) Kinetic Analysis of Competition Between Sulfate Reducers and Methanogens for Hydrogen in Sediments. Applied and Environmental Microbiology 43:6, pages 1373-1379.
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Ronald S. Oremland, Lorraine M. Marsh & Sandra Polcin. (1982) Methane production and simultaneous sulphate reduction in anoxic, salt marsh sediments. Nature 296:5853, pages 143-145.
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Ibrahim M. Banat, E. Börje Lindström, David B. Nedwell & M. Talaat Balba. (1981) Evidence for Coexistence of Two Distinct Functional Groups of Sulfate-Reducing Bacteria in Salt Marsh Sediment. Applied and Environmental Microbiology 42:6, pages 985-992.
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Richard L. Smith & Michael J. Klug. (1981) Electron Donors Utilized by Sulfate-Reducing Bacteria in Eutrophic Lake Sediments. Applied and Environmental Microbiology 42:1, pages 116-121.
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Charles W. Culbertson, Alexander J. B. Zehnder & Ronald S. Oremland. (1981) Anaerobic Oxidation of Acetylene by Estuarine Sediments and Enrichment Cultures. Applied and Environmental Microbiology 41:2, pages 396-403.
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