International audienceWhen normalized per unit of surface area, the quantity of arsenic adsorbed at the maghemite surface remains constant for particles between 300 and 20 nm. However, nanoparticles smaller than 20 nm exhibit enhanced adsorption capacity. The origin of this observed size-dependence for adsorption or “nano effect” is unclear. Arsenic was chosen as a probe of the surface structure to explore adsorption mechanisms occurring at the surface of maghemite nanoparticles (6 nm). Two factors contributing to the enhanced reactivity of nanoscale maghemites were determined. The first is related to a size-dependent structural modification of the surface of particles and the decrease of the occupancy of the tetrahedral site that leaves va...
Maghemite (gamma-Fe2O3) nanoparticles are potential adsorbents for arsenate removal from drinking wa...
Surface chemistry is the study of the chemical and physical phenomena that transpire at interfaces s...
International audienceArsenic sorption onto iron oxide spinels such as magnetite could contribute to...
International audienceWhen normalized per unit of surface area, the quantity of arsenic adsorbed at ...
International audienceArsenic sorption onto maghemite potentially contributes to arsenic retention i...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
Numerous studies have examined arsenic adsorption on varying adsorbents including iron oxides, alumi...
In this study a novel adsorbent, maghemite nanoparticles (gamma-Fe2O3), is used for As(V) removal. M...
Removal of arsenic (As) from water supplies is needed to reduce As exposure through drinking water a...
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 ...
Arsenic sorption onto iron oxide spinels such as magnetite may contribute to arsenic immobilization ...
International audienceArsenic sorption onto iron oxide spinels such as magnetite may contribute to a...
Toxic arsenic occurs in drinking water from natural and/or anthropogenic sources. It causes health p...
Removal of As(V) using nanoscale iron particles was examined in batch reactors. Nanoscale iron parti...
Maghemite (gamma-Fe2O3) nanoparticles are potential adsorbents for arsenate removal from drinking wa...
Surface chemistry is the study of the chemical and physical phenomena that transpire at interfaces s...
International audienceArsenic sorption onto iron oxide spinels such as magnetite could contribute to...
International audienceWhen normalized per unit of surface area, the quantity of arsenic adsorbed at ...
International audienceArsenic sorption onto maghemite potentially contributes to arsenic retention i...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
Numerous studies have examined arsenic adsorption on varying adsorbents including iron oxides, alumi...
In this study a novel adsorbent, maghemite nanoparticles (gamma-Fe2O3), is used for As(V) removal. M...
Removal of arsenic (As) from water supplies is needed to reduce As exposure through drinking water a...
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 ...
Arsenic sorption onto iron oxide spinels such as magnetite may contribute to arsenic immobilization ...
International audienceArsenic sorption onto iron oxide spinels such as magnetite may contribute to a...
Toxic arsenic occurs in drinking water from natural and/or anthropogenic sources. It causes health p...
Removal of As(V) using nanoscale iron particles was examined in batch reactors. Nanoscale iron parti...
Maghemite (gamma-Fe2O3) nanoparticles are potential adsorbents for arsenate removal from drinking wa...
Surface chemistry is the study of the chemical and physical phenomena that transpire at interfaces s...
International audienceArsenic sorption onto iron oxide spinels such as magnetite could contribute to...