Radionuclide and heavy metal contaminants at DOE sites pose immediate and long-term environmental problems. Under the NABIR program, bacteria are being considered for their role in the cycling of these contaminants because they influence many redox reactions in the subsurface. Dissimilatory metal reducing bacteria (DMRB) are particularly important to controlling the biogeochemistry of subsurface environments through enzymatic reduction of iron and manganese minerals. During reduction of FeIII, biogenic FeII phases form at the cell-mineral interface which may profoundly influence metal reduction
Dissimilatory iron-reducing bacteria (DIRB) play an important role in regulating the aqueous geochem...
Dissimilatory metal-reducing bacteria (DMRB) play an important role in the biogeochemical cycling of...
Dissimilatory iron reduction (DIR) is significant to the biogeochemical cycling of iron, carbon and ...
The overall purpose of the project is to explore and quantify the processes that control the formati...
This objective of this research is to evaluate the formation and reactivity of biogenic iron mineral...
The overall purpose of the project is to explore and quantify the processes that control the formati...
Dissimilatory metal reducing bacteria (DMRB) catalyze the reduction of Fe(III) to Fe(II) in anoxic s...
UnrestrictedThe aim of my work is to elucidate the interactions between microbes and minerals. The w...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
Dissimilatory metal-reducing bacteria (DMRB) facilitate the reduction of Fe and Mn oxides in anoxic ...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
This is the final report for Grant No. DEFGO2-98ER62691 submitted to the DOE NABR Program. This rese...
Dissimilatory iron-reducing bacteria (DIRB) play an important role in regulating the aqueous geochem...
Dissimilatory metal-reducing bacteria (DMRB) play an important role in the biogeochemical cycling of...
Dissimilatory iron reduction (DIR) is significant to the biogeochemical cycling of iron, carbon and ...
The overall purpose of the project is to explore and quantify the processes that control the formati...
This objective of this research is to evaluate the formation and reactivity of biogenic iron mineral...
The overall purpose of the project is to explore and quantify the processes that control the formati...
Dissimilatory metal reducing bacteria (DMRB) catalyze the reduction of Fe(III) to Fe(II) in anoxic s...
UnrestrictedThe aim of my work is to elucidate the interactions between microbes and minerals. The w...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
Dissimilatory metal-reducing bacteria (DMRB) facilitate the reduction of Fe and Mn oxides in anoxic ...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
This is the final report for Grant No. DEFGO2-98ER62691 submitted to the DOE NABR Program. This rese...
Dissimilatory iron-reducing bacteria (DIRB) play an important role in regulating the aqueous geochem...
Dissimilatory metal-reducing bacteria (DMRB) play an important role in the biogeochemical cycling of...
Dissimilatory iron reduction (DIR) is significant to the biogeochemical cycling of iron, carbon and ...