Fe(III) complexed by organic ligands (Fe(III)L) is the primary form of dissolved Fe in marine and coastal environments. Superoxide, typically produced in biological and photochemical processes, is one of the reducing agents that contributes to transformation of Fe(III)L to bioavailable, free dissolved Fe(II) (Fe(II)`). In this work, the kinetics of superoxide-mediated Fe(Il)` formation from Fe(III)L in a simulated coastal water system were investigated and a comprehensive kinetic model was developed using citrate and fulvic acid as exemplar Fe-binding ligands. To simulate a coastal environment in laboratory experiments, Fe(III)L samples with various ligand/Fe ratios were incubated for 5 min to 1 week in seawater medium. At each ratio and in...
We have investigated the chemical forms, reactivities and transformation kinetics of Fe(III) species...
Superoxide (and potentially its conjugate acid hydroperoxyl) is unique among the reactive oxygen spe...
Whereas the oxidation of inorganic Fe(II) by H2O2 in seawater has been well studied, the oxidation o...
A detailed kinetic model has been developed to describe the oxidation of Fe(II) in seawater in both ...
We have investigated the kinetics of superoxide-mediated dissolution of amorphous ferric oxyhydroxid...
We have investigated the kinetics of superoxide-mediated dissolution of amorphous ferric oxyhydroxid...
In this thesis, the implementation and results of studies into the effect of pH on the kinetics of v...
We have investigated the kinetics of Fe(III) complexation by several organic ligands including fulvi...
Complexes with terrestrially derived humic substances represent one of the most reactive pools of di...
The mechanism and kinetics of superoxide-mediated reduction of a variety of organic iron(III) comple...
The mechanism and kinetics of superoxide-mediated reduction of a variety of organic iron(III) comple...
In coastal waters, where conditions are variable and can change rapidly, the kinetics of iron comple...
We have conducted a series of laboratory studies to investigate the generation of ferrous iron and r...
We have conducted a series of laboratory studies to investigate the generation of ferrous iron and r...
Superoxide (and potentially its conjugate acid hydroperoxyl) is unique among the reactive oxygen spe...
We have investigated the chemical forms, reactivities and transformation kinetics of Fe(III) species...
Superoxide (and potentially its conjugate acid hydroperoxyl) is unique among the reactive oxygen spe...
Whereas the oxidation of inorganic Fe(II) by H2O2 in seawater has been well studied, the oxidation o...
A detailed kinetic model has been developed to describe the oxidation of Fe(II) in seawater in both ...
We have investigated the kinetics of superoxide-mediated dissolution of amorphous ferric oxyhydroxid...
We have investigated the kinetics of superoxide-mediated dissolution of amorphous ferric oxyhydroxid...
In this thesis, the implementation and results of studies into the effect of pH on the kinetics of v...
We have investigated the kinetics of Fe(III) complexation by several organic ligands including fulvi...
Complexes with terrestrially derived humic substances represent one of the most reactive pools of di...
The mechanism and kinetics of superoxide-mediated reduction of a variety of organic iron(III) comple...
The mechanism and kinetics of superoxide-mediated reduction of a variety of organic iron(III) comple...
In coastal waters, where conditions are variable and can change rapidly, the kinetics of iron comple...
We have conducted a series of laboratory studies to investigate the generation of ferrous iron and r...
We have conducted a series of laboratory studies to investigate the generation of ferrous iron and r...
Superoxide (and potentially its conjugate acid hydroperoxyl) is unique among the reactive oxygen spe...
We have investigated the chemical forms, reactivities and transformation kinetics of Fe(III) species...
Superoxide (and potentially its conjugate acid hydroperoxyl) is unique among the reactive oxygen spe...
Whereas the oxidation of inorganic Fe(II) by H2O2 in seawater has been well studied, the oxidation o...