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Environmental Science & Technology|June 28, 2014
Response of soil-associated microbial communities to intrusion of coal mine-derived acid mine drainageJustin S Brantner, John M Senko
Proceedings of the National Academy of Sciences of the United States of America|April 15, 2024
Bioenergetics of iron snow fueling life on EuropaNita Sahai, Doug LaRowe, John M Senko
Applied and Environmental Microbiology|November 5, 2005
Effect of oxidation rate and Fe(II) state on microbial nitrate-dependent Fe(III) mineral formationJohn M Senko, Thomas A Dewers, Lee R Krumholz
Journal of Microbiological Methods|April 12, 2003
A procedure for quantitation of total oxidized uranium for bioremediation studiesDwayne A Elias, John M Senko, Lee R Krumholz
Frontiers in Microbiology|December 11, 2012
Microbial communities associated with wet flue gas desulfurization systemsBryan P Brown, Shannon R Brown, John M Senko
Applied and Environmental Microbiology|November 1, 2011
Iron transformations induced by an acid-tolerant Desulfosporosinus speciesDoug Bertel, John Peck, Thomas J Quick, et al.
Environmental Science & Technology|May 12, 2005
Role for Fe(III) minerals in nitrate-dependent microbial U(IV) oxidationJohn M Senko, Yasser Mohamed, Thomas A Dewers, et al.
Environmental Monitoring and Assessment|November 8, 2013
An assessment of microbial communities associated with surface mining-disturbed overburdenDominique M Poncelet, Nicole Cavender, Teresa J Cutright, et al.
Environmental Science & Technology|May 10, 2002
In-situ evidence for uranium immobilization and remobilizationJohn M Senko, Jonathan D Istok, Joseph M Suflita, et al.
Frontiers in Microbiology|July 15, 2021
Identification of Microbiological Activities in Wet Flue Gas Desulfurization SystemsGregory Martin, Shagun Sharma, William Ryan, et al.
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