Herein we report effects of partial substitution of Fe3+ by Y3+ in magnetite (Fe3O4) on morphology and inorganic arsenic species adsorption efficiency of the Fe3-xYxO4 nanoparticles formed. The series of Fe3-xYxO4 (x = 0.00, 0.042 and 0.084, labeled as Y00, Y05 and Y10, respectively) was synthesized using co-precipitation followed by microwave-hydrothermal treatment (MW) at 200 degrees C. With increase of yttrium content (x value), both the morphological inhomogeneity of the samples and the fraction of spinel nanorods as compared to spinel pseudospherical particles increased. By both transmission electron microscopy and x-ray powder diffraction analyses, it was determined that the direction of growth of the spinel nanorods is along the [110...
Toxic arsenic occurs in drinking water from natural and/or anthropogenic sources. It causes health p...
International audienceArsenic sorption onto maghemite potentially contributes to arsenic retention i...
The interaction of arsenate species in aqueous media with the surface of nanomagnetic particles with...
Herein we report effects of partial substitution of Fe3+ by Y3+ in magnetite (Fe3O4) on morphology a...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
International audienceArsenic sorption onto iron oxide spinels such as magnetite may contribute to a...
Arsenic sorption onto iron oxide spinels such as magnetite may contribute to arsenic immobilization ...
International audienceThe aim of this study was to develop synthetic magnetite nanoparticles (nFe3O4...
Arsenic, is one of the most harmful elements to human health that continuously causes a threat to th...
The discharge of heavy metal ions such as arsenic (As) into drinking water sources either through na...
The interaction of arsenite (As(III)) and arsenate (As(V)) with magnetite nanoparticles has been stu...
Nanomaterials (typically 1~100nm in diameter) have been of considerable environmental attention due ...
The removal of arsenic contamination from the aqueous environment is of great importance in the cons...
The present study focuses on the application of iron oxide nanomaterial for the abetment of arsenic...
In this study, arsenic as an environmental top ranked hazardous substance was efficiently removed by...
Toxic arsenic occurs in drinking water from natural and/or anthropogenic sources. It causes health p...
International audienceArsenic sorption onto maghemite potentially contributes to arsenic retention i...
The interaction of arsenate species in aqueous media with the surface of nanomagnetic particles with...
Herein we report effects of partial substitution of Fe3+ by Y3+ in magnetite (Fe3O4) on morphology a...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
International audienceArsenic sorption onto iron oxide spinels such as magnetite may contribute to a...
Arsenic sorption onto iron oxide spinels such as magnetite may contribute to arsenic immobilization ...
International audienceThe aim of this study was to develop synthetic magnetite nanoparticles (nFe3O4...
Arsenic, is one of the most harmful elements to human health that continuously causes a threat to th...
The discharge of heavy metal ions such as arsenic (As) into drinking water sources either through na...
The interaction of arsenite (As(III)) and arsenate (As(V)) with magnetite nanoparticles has been stu...
Nanomaterials (typically 1~100nm in diameter) have been of considerable environmental attention due ...
The removal of arsenic contamination from the aqueous environment is of great importance in the cons...
The present study focuses on the application of iron oxide nanomaterial for the abetment of arsenic...
In this study, arsenic as an environmental top ranked hazardous substance was efficiently removed by...
Toxic arsenic occurs in drinking water from natural and/or anthropogenic sources. It causes health p...
International audienceArsenic sorption onto maghemite potentially contributes to arsenic retention i...
The interaction of arsenate species in aqueous media with the surface of nanomagnetic particles with...