The impact of hydroxyl excess as defined by the Fe(II)/hydroxide ratio during the synthesis of Fe3O4 nanoparticles by oxidative precipitation of FeSO4 was examined as a critical parameter determining the potential for Cr(VI) uptake from polluted water. Various samples were prepared by varying the OH− excess in the range of −0.10 up to +0.03 M and characterized according to their composition, morphology, and surface configuration. Their efficiency for Cr(VI) removal was evaluated by batch adsorption tests, carried out under similar conditions with drinking water purification in the concentration range below 10 mg/L. Results indicate that near the zero-excess point for hydroxyl balance, the uptake capacity for residual Cr(VI) concentration eq...
In this study, sodium dodecyl sulfate (SDS) coated magnetite modified with 2, 4-Dinitrophenylhydrazi...
Magnetite nanoparticles and magnetite-pine cone nanocomposite were prepared and applied in the adsor...
Silica-coated Fe3O4 nanoparticles were prepared and functionalized with trimellitic anhydride genera...
Magnetite nanoparticles were produced by the chemical co-precipitation of iron sulfates at alkaline ...
The potential of magnetite nanoparticles to be applied in drinking water treatment for the removal o...
Well-dispersed magnetite nanoparticles of different sizes between 15 and 43 nm were synthesized by a...
Background: Contamination of aquatic bodies with heavy metals is a serious environmental problem. Ch...
The physicochemical characteristics of biogenic minerals, such as high specific surface areas and hi...
Earlier studies have demonstrated the effectiveness of gamma-Fe2O3 nanoparticles on Cr(VI) removal f...
In this study, magnetite (Fe 3 O ) nanoparticles were synthesized by chemical co-precipitation metho...
The removal of hexavalent Chromium from aqueous solutions by adsorption method has been investigated...
A great deal of research over recent decades has been motivated by the requirement to lower the conc...
To optimize the production of biomagnetite for the bioremediation of metal oxyanion contaminated wat...
A great deal of research over recent decades has been motivated by the requirement to lower the conc...
Magnetite nanoparticles and magnetite-pine cone nanocomposite were prepared and applied in the adsor...
In this study, sodium dodecyl sulfate (SDS) coated magnetite modified with 2, 4-Dinitrophenylhydrazi...
Magnetite nanoparticles and magnetite-pine cone nanocomposite were prepared and applied in the adsor...
Silica-coated Fe3O4 nanoparticles were prepared and functionalized with trimellitic anhydride genera...
Magnetite nanoparticles were produced by the chemical co-precipitation of iron sulfates at alkaline ...
The potential of magnetite nanoparticles to be applied in drinking water treatment for the removal o...
Well-dispersed magnetite nanoparticles of different sizes between 15 and 43 nm were synthesized by a...
Background: Contamination of aquatic bodies with heavy metals is a serious environmental problem. Ch...
The physicochemical characteristics of biogenic minerals, such as high specific surface areas and hi...
Earlier studies have demonstrated the effectiveness of gamma-Fe2O3 nanoparticles on Cr(VI) removal f...
In this study, magnetite (Fe 3 O ) nanoparticles were synthesized by chemical co-precipitation metho...
The removal of hexavalent Chromium from aqueous solutions by adsorption method has been investigated...
A great deal of research over recent decades has been motivated by the requirement to lower the conc...
To optimize the production of biomagnetite for the bioremediation of metal oxyanion contaminated wat...
A great deal of research over recent decades has been motivated by the requirement to lower the conc...
Magnetite nanoparticles and magnetite-pine cone nanocomposite were prepared and applied in the adsor...
In this study, sodium dodecyl sulfate (SDS) coated magnetite modified with 2, 4-Dinitrophenylhydrazi...
Magnetite nanoparticles and magnetite-pine cone nanocomposite were prepared and applied in the adsor...
Silica-coated Fe3O4 nanoparticles were prepared and functionalized with trimellitic anhydride genera...