Iron oxide and iron oxyhydroxide particles, particularly, the goethite α-FeOOH phase, are environmentally friendly materials and are used in various technological applications as adsorbents, precursors of Fe powders for magnetic recording media, and pigments. In this work, the formation process of α-FeOOH by air oxidation of Fe(OH)2 suspensions has been studied. The effects of the air flow rate, as well as of the reactant concentration ratio, R (=[(OH)-]/[Fe(II)]), on the reaction product were analyzed. It has been found that the morphology and the size of the α-FeOOH particles can be modified by means of the air flow rate. Furthermore, by performing a detailed microscopic analysis of the morphology of the initial, intermediate, and final r...
To better understand the oxidative reactivity of iron oxides in the fate of contaminants in acidic e...
Graduation date: 2011The kinetics of physical and chemical processes controlling the precipitation o...
Abstract--In the absence of oxygen, Fe(II) chloride, sulfate, and carbonate solutions react at pH 6....
Iron oxide and iron oxyhydroxide particles, particularly, the goethite α-FeOOH phase, are environmen...
<正> The kinetics of α-FeO(OH) formation in weakacidic medium was studied.The effects of the in...
The kinetics of a-FeO(OH) formation in weak acidic medium was studied, The effects of initial concen...
Factors that influence the precipitation of iron oxides from Fe(II) containing solutions were in-ves...
International audienceThe present study describes a simple and novel synthesis route for submicromet...
The removal of iron and various heavy-metal ions by their incorporation into stable ferrite-type pre...
Abstract--The hydrolytic behavior of Fe solutions at room temperature under acidic conditions was in...
In the present study, iron oxide nanoparticles (primary particle size of 80-90 nm) with controlled o...
Small angle X-ray scattering (SAXS) measurements coupled to a stopped-flow device has permitted the ...
Iron oxide phase orientation were highly influenced by solution pH, crystalline structure, purity, s...
Green rusts (GRs) are found as intermediate products between FeII hydroxides and FeIII oxyhydroxides...
Iron (Fe) oxides and hydroxides are common and abundant materials. They exhibit diverse crystal stru...
To better understand the oxidative reactivity of iron oxides in the fate of contaminants in acidic e...
Graduation date: 2011The kinetics of physical and chemical processes controlling the precipitation o...
Abstract--In the absence of oxygen, Fe(II) chloride, sulfate, and carbonate solutions react at pH 6....
Iron oxide and iron oxyhydroxide particles, particularly, the goethite α-FeOOH phase, are environmen...
<正> The kinetics of α-FeO(OH) formation in weakacidic medium was studied.The effects of the in...
The kinetics of a-FeO(OH) formation in weak acidic medium was studied, The effects of initial concen...
Factors that influence the precipitation of iron oxides from Fe(II) containing solutions were in-ves...
International audienceThe present study describes a simple and novel synthesis route for submicromet...
The removal of iron and various heavy-metal ions by their incorporation into stable ferrite-type pre...
Abstract--The hydrolytic behavior of Fe solutions at room temperature under acidic conditions was in...
In the present study, iron oxide nanoparticles (primary particle size of 80-90 nm) with controlled o...
Small angle X-ray scattering (SAXS) measurements coupled to a stopped-flow device has permitted the ...
Iron oxide phase orientation were highly influenced by solution pH, crystalline structure, purity, s...
Green rusts (GRs) are found as intermediate products between FeII hydroxides and FeIII oxyhydroxides...
Iron (Fe) oxides and hydroxides are common and abundant materials. They exhibit diverse crystal stru...
To better understand the oxidative reactivity of iron oxides in the fate of contaminants in acidic e...
Graduation date: 2011The kinetics of physical and chemical processes controlling the precipitation o...
Abstract--In the absence of oxygen, Fe(II) chloride, sulfate, and carbonate solutions react at pH 6....