The interaction of arsenate species in aqueous media with the surface of nanomagnetic particles with equivalent structure, magnetite (Fe3O4) and nickel ferrite (NiFe2O4), was investigated with adsorption isotherms at pH 4, 7, 9 and 12, desorption kinetics, electrophoresis, XRD, TEM, FTIR, N2 adsorption and magnetism. Arsenic uptake in both solids was high at pH 4 and decreased as pH increased, becoming negligible at pH 12. The adsorption behavior was typical of anions that form inner-sphere surface complexes with surface metal ions. The reached understanding of the adsorption behavior enabled to achieve, depending on what it is necessary, high and fast adsorption, or complete and rapid desorption by a simple pH change. A flow system was dev...
For many developing countries, groundwater is the main source for water consumption in rural and urb...
Nowadays, there is awidevariety of arsenic decontamination processes being adsorption processes them...
International audienceThe aim of this study was to develop synthetic magnetite nanoparticles (nFe3O4...
The interaction of arsenite (As(III)) and arsenate (As(V)) with magnetite nanoparticles has been stu...
Numerous studies have examined arsenic adsorption on varying adsorbents including iron oxides, alumi...
Nanomaterials (typically 1~100nm in diameter) have been of considerable environmental attention due ...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
The discharge of heavy metal ions such as arsenic (As) into drinking water sources either through na...
Removal of arsenic (As) from water supplies is needed to reduce As exposure through drinking water a...
Arsenic in water is currently a global concern due to the long-term exposure that could affect human...
In the present work, superparamagnetic iron oxide nanoparticles (SPION) surface-coated with 3-mercap...
In the present work, superparamagnetic iron oxide nanoparticles (SPION) surface-coated with 3-mercap...
Toxic arsenic occurs in drinking water from natural and/or anthropogenic sources. It causes health p...
Two types of adsorbents, arginine (Arg) and lysine (Lys) modified Fe3O4 magnetic nanoparticles (ArgM...
Removal of As(V) using nanoscale iron particles was examined in batch reactors. Nanoscale iron parti...
For many developing countries, groundwater is the main source for water consumption in rural and urb...
Nowadays, there is awidevariety of arsenic decontamination processes being adsorption processes them...
International audienceThe aim of this study was to develop synthetic magnetite nanoparticles (nFe3O4...
The interaction of arsenite (As(III)) and arsenate (As(V)) with magnetite nanoparticles has been stu...
Numerous studies have examined arsenic adsorption on varying adsorbents including iron oxides, alumi...
Nanomaterials (typically 1~100nm in diameter) have been of considerable environmental attention due ...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
The discharge of heavy metal ions such as arsenic (As) into drinking water sources either through na...
Removal of arsenic (As) from water supplies is needed to reduce As exposure through drinking water a...
Arsenic in water is currently a global concern due to the long-term exposure that could affect human...
In the present work, superparamagnetic iron oxide nanoparticles (SPION) surface-coated with 3-mercap...
In the present work, superparamagnetic iron oxide nanoparticles (SPION) surface-coated with 3-mercap...
Toxic arsenic occurs in drinking water from natural and/or anthropogenic sources. It causes health p...
Two types of adsorbents, arginine (Arg) and lysine (Lys) modified Fe3O4 magnetic nanoparticles (ArgM...
Removal of As(V) using nanoscale iron particles was examined in batch reactors. Nanoscale iron parti...
For many developing countries, groundwater is the main source for water consumption in rural and urb...
Nowadays, there is awidevariety of arsenic decontamination processes being adsorption processes them...
International audienceThe aim of this study was to develop synthetic magnetite nanoparticles (nFe3O4...