Small angle X-ray scattering (SAXS) measurements coupled to a stopped-flow device has permitted the observation of the kinetics of Fe(III) oxyhydroxide (FeOx) formation and transformation from around 1 s to 30 min after initiation under environmentally relevant conditions at pH 3. The Unified Model approach was used to determine the evolution of multiple key parameters (particle scattering mass, mean particle volume, particle concentration, particle dimensionality, and particle size) for two separate structural levels as a function of time, with the results obtained enabling clarification of the mechanisms underlying FeOx formation and transformation under these conditions. Colloidal primary particles (radius of gyration 2–10 nm) that were...
Nucleation is a fundamental step in crystal growth. Of environmental and materials relevance are rea...
Abstract--The hydrolytic behavior of Fe solutions at room temperature under acidic conditions was in...
Graduation date: 2011The kinetics of physical and chemical processes controlling the precipitation o...
Iron oxides and oxyhydroxides form via Fe3+ hydrolysis and polymerization in many aqueous environmen...
The phases and stability of ferric iron products formed early during neutralization of acid mine dra...
Iron oxide and iron oxyhydroxide particles, particularly, the goethite α-FeOOH phase, are environmen...
Nucleation of minerals in the presence of additives is critical for achieving control over the forma...
Iron oxide and iron oxyhydroxide particles, particularly, the goethite α-FeOOH phase, are environmen...
The development of a colloidal αFeOOH phase has been followed experimentally by measuring the depend...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
International audienceIron–organic matter (Fe–OM) nanoaggregates are highly abundant in wetlands. Ir...
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...
Nucleation is a fundamental step in crystal growth. Of environmental and materials relevance are rea...
Abstract--The hydrolytic behavior of Fe solutions at room temperature under acidic conditions was in...
Graduation date: 2011The kinetics of physical and chemical processes controlling the precipitation o...
Iron oxides and oxyhydroxides form via Fe3+ hydrolysis and polymerization in many aqueous environmen...
The phases and stability of ferric iron products formed early during neutralization of acid mine dra...
Iron oxide and iron oxyhydroxide particles, particularly, the goethite α-FeOOH phase, are environmen...
Nucleation of minerals in the presence of additives is critical for achieving control over the forma...
Iron oxide and iron oxyhydroxide particles, particularly, the goethite α-FeOOH phase, are environmen...
The development of a colloidal αFeOOH phase has been followed experimentally by measuring the depend...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
International audienceIron–organic matter (Fe–OM) nanoaggregates are highly abundant in wetlands. Ir...
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...
Nucleation is a fundamental step in crystal growth. Of environmental and materials relevance are rea...
Abstract--The hydrolytic behavior of Fe solutions at room temperature under acidic conditions was in...
Graduation date: 2011The kinetics of physical and chemical processes controlling the precipitation o...