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One or more keywords matched the following items that are connected to Krumholz, Lee
Item TypeName
Concept Oxidation-Reduction
Academic Article Desulfovibrio sp. genes involved in the respiration of sulfate during metabolism of hydrogen and lactate.
Academic Article Impact of clay minerals on sulfate-reducing activity in aquifers.
Academic Article Succession of sulfur bacteria during decomposition of cyanobacterial bloom biomass in the shallow Lake Nanhu: An ex situ mesocosm study.
Academic Article In-situ evidence for uranium immobilization and remobilization.
Academic Article A procedure for quantitation of total oxidized uranium for bioremediation studies.
Academic Article Periplasmic cytochrome c3 of Desulfovibrio vulgaris is directly involved in H2-mediated metal but not sulfate reduction.
Academic Article Uranium reduction.
Academic Article Influence of nitrate on microbial reduction of pertechnetate.
Academic Article Thioredoxin is involved in U(VI) and Cr(VI) reduction in Desulfovibrio desulfuricans G20.
Academic Article Biological versus mineralogical chromium reduction: potential for reoxidation by manganese oxide.
Academic Article A freshwater anaerobe coupling acetate oxidation to tetrachloroethylene dehalogenation.
Academic Article Bacterial diversity and sulfur cycling in a mesophilic sulfide-rich spring.
Academic Article Role for Fe(III) minerals in nitrate-dependent microbial U(IV) oxidation.
Academic Article Effect of oxidation rate and Fe(II) state on microbial nitrate-dependent Fe(III) mineral formation.
Academic Article Regulation of arsenate resistance in Desulfovibrio desulfuricans G20 by an arsRBCC operon and an arsC gene.
Academic Article Metabolism of gallate and phloroglucinol in Eubacterium oxidoreducens via 3-hydroxy-5-oxohexanoate.
Academic Article Haloferax sulfurifontis sp. nov., a halophilic archaeon isolated from a sulfide- and sulfur-rich spring.
Academic Article A molybdopterin oxidoreductase is involved in H2 oxidation in Desulfovibrio desulfuricans G20.
Academic Article The relative contributions of abiotic and microbial processes to the transformation of tetrachloroethylene and trichloroethylene in anaerobic microcosms.
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  • Oxidation Reduction