The reductive biotransformation of a Ni2+-substituted (5 mol %) hydrous ferric oxide (NiHFO) by Shewanella putrefaciens, strain CN32, was investigated under anoxic conditions at circumneutral pH. Our objectives were to define the influence of Ni2+ substitution on the bioreducibility of the HFO and the biomineralization products formed and to identify biogeochemical factors controlling the phase distribution of Ni2+ during bioreduction. Incubations with CN32 and NiHFO were sampled after 14 and 32 d, and both aqueous chemistry and solid phases were characterized. By comparison of these results with a previous study (Fredrickson, J. K.; Zachara, J. M.; Kennedy, D. W.; Dong, H.; Onstott, T. C.; Hinman, N. W.; Li, S. W. Geochim. Cosmochim. Acta ...
The influence of Fe(II) on the dissimilatory bacterial reduction of an Fe(III) aqueous complex (Fe(I...
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...
The reductive biotransformation of a Ni2+-substituted (5 mol %) hydrous ferric oxide (NiHFO) by Shew...
Trace metals associate with Fe(III) oxides as adsorbed or coprecipitated species, and consequently, ...
Trace metals associate with Fe(III) oxides as adsorbed or coprecipitated species, and consequently, ...
This objective of this research is to evaluate the formation and reactivity of biogenic iron mineral...
Dissimilatory metal-reducing bacteria (DMRB) facilitate the reduction of Fe and Mn oxides in anoxic ...
Radionuclide and heavy metal contaminants at DOE sites pose immediate and long-term environmental pr...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Microbiologic reduction of synthetic and geologic Fe3+ oxides associated with four Pleistocene- age,...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Dissimilatory metal-reducing bacteria (DMRB) facilitate the reduction of Fe and Mn oxides in anoxic ...
Microbiologic reduction of synthetic and geologic Fe3+ oxides associated with four Pleistocene- age,...
Dissimilatory metal reducing bacteria (DMRB) catalyze the reduction of Fe(III) to Fe(II) in anoxic s...
The influence of Fe(II) on the dissimilatory bacterial reduction of an Fe(III) aqueous complex (Fe(I...
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...
The reductive biotransformation of a Ni2+-substituted (5 mol %) hydrous ferric oxide (NiHFO) by Shew...
Trace metals associate with Fe(III) oxides as adsorbed or coprecipitated species, and consequently, ...
Trace metals associate with Fe(III) oxides as adsorbed or coprecipitated species, and consequently, ...
This objective of this research is to evaluate the formation and reactivity of biogenic iron mineral...
Dissimilatory metal-reducing bacteria (DMRB) facilitate the reduction of Fe and Mn oxides in anoxic ...
Radionuclide and heavy metal contaminants at DOE sites pose immediate and long-term environmental pr...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Microbiologic reduction of synthetic and geologic Fe3+ oxides associated with four Pleistocene- age,...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Dissimilatory metal-reducing bacteria (DMRB) facilitate the reduction of Fe and Mn oxides in anoxic ...
Microbiologic reduction of synthetic and geologic Fe3+ oxides associated with four Pleistocene- age,...
Dissimilatory metal reducing bacteria (DMRB) catalyze the reduction of Fe(III) to Fe(II) in anoxic s...
The influence of Fe(II) on the dissimilatory bacterial reduction of an Fe(III) aqueous complex (Fe(I...
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...