The ability of S. putrefaciens to reduce Fe(III) complexed by a variety of ligands has been investigated. All of the ligands tested caused the cation to be more susceptible to reduction by harvested whole cells than when uncomplexed, although some complexes were more readily reduced than others. Monitoring rates of reduction by a ferrozine assay for Fe(II) formation proved inadequate using Fe(III) ligands giving Fe(II) complexes of low kinetic lability (e.g. EDTA). A more suitable assay for Fe(III) reduction in the presence of such ligands proved to be the observation of associated cytochrome oxidation and re-reduction. Where possible, an assay for Fe(III) reduction based upon the disappearance of Fe(III) complex was also employed. Reductio...
The photosynthetic proteobacterium Rhodobacter capsulatus was shown to be capable of dissimilatory F...
The kinetics and mechanism of reductive dissolution of Fe(III) oxides were examined in pure, batch c...
The kinetics and mechanism of reductive dissolution of Fe(III) oxides were examined in pure, batch c...
The susceptibility to dissimilatory reduction of polynuclear oxo- and hydroxo-bridged Fe(m) complexe...
Under anaerobic conditions, Shewanella putrefaciens is capable of respiratory-chain-linked, high-rat...
The photosynthetic proteobacterium Rhodobacter capsulatus was shown to be capable of dissimilatory F...
The photosynthetic proteobacterium Rhodobacter capsulatus was shown to be capable of dissimilatory F...
A kinetic model for the microbial reduction of Fe(III) oxyhydroxide colloids in the presence of exce...
Studies with the dissimilatory Fe(III)-reducing microorganismGeobacter metallireducens demonstrated ...
Studies with the dissimilatory Fe(III)-reducing microorganism Geobacter metallireducens demonstrated...
Mechanisms for Fe(III) oxide reduction were investigated in Geothrix fermentans, a dissimilatory Fe(...
Studies with the dissimilatory Fe(III)-reducing microorganism Geobacter metallireducens demonstrated...
Mechanisms for Fe(III) oxide reduction were investigated in Geothrix fermentans, a dissimilatory Fe(...
The kinetics and mechanism of Fe(III) reduction to Fe(II) were studied in pure batch cultures of Pse...
The kinetics and mechanism of Fe(III) reduction to Fe(II) were studied in pure batch cultures of Pse...
The photosynthetic proteobacterium Rhodobacter capsulatus was shown to be capable of dissimilatory F...
The kinetics and mechanism of reductive dissolution of Fe(III) oxides were examined in pure, batch c...
The kinetics and mechanism of reductive dissolution of Fe(III) oxides were examined in pure, batch c...
The susceptibility to dissimilatory reduction of polynuclear oxo- and hydroxo-bridged Fe(m) complexe...
Under anaerobic conditions, Shewanella putrefaciens is capable of respiratory-chain-linked, high-rat...
The photosynthetic proteobacterium Rhodobacter capsulatus was shown to be capable of dissimilatory F...
The photosynthetic proteobacterium Rhodobacter capsulatus was shown to be capable of dissimilatory F...
A kinetic model for the microbial reduction of Fe(III) oxyhydroxide colloids in the presence of exce...
Studies with the dissimilatory Fe(III)-reducing microorganismGeobacter metallireducens demonstrated ...
Studies with the dissimilatory Fe(III)-reducing microorganism Geobacter metallireducens demonstrated...
Mechanisms for Fe(III) oxide reduction were investigated in Geothrix fermentans, a dissimilatory Fe(...
Studies with the dissimilatory Fe(III)-reducing microorganism Geobacter metallireducens demonstrated...
Mechanisms for Fe(III) oxide reduction were investigated in Geothrix fermentans, a dissimilatory Fe(...
The kinetics and mechanism of Fe(III) reduction to Fe(II) were studied in pure batch cultures of Pse...
The kinetics and mechanism of Fe(III) reduction to Fe(II) were studied in pure batch cultures of Pse...
The photosynthetic proteobacterium Rhodobacter capsulatus was shown to be capable of dissimilatory F...
The kinetics and mechanism of reductive dissolution of Fe(III) oxides were examined in pure, batch c...
The kinetics and mechanism of reductive dissolution of Fe(III) oxides were examined in pure, batch c...