Long-term speciation and lability of silver (Ag-), silver chloride (AgCl-), and silver sulfide nanoparticles (Ag2S-NPs) in soil were studied by X-ray absorption spectroscopy (XAS), and newly developed “nano” Diffusive Gradients in Thin Films (DGT) devices. These nano-DGT devices were designed specifically to avoid confounding effects when measuring element lability in the presence of nanoparticles. The aging profile and stabilities of the three nanoparticles and AgNO3 (ionic Ag) in soil were examined at three different soil pH values over a period of up to 7 months. Transformation of ionic Ag, Ag-NP and AgCl-NPs were dependent on pH. AgCl formation and persistence was observed under acidic conditions, whereas sulfur-bound forms of Ag domina...
International audienceSilver phytoavailability in exposure scenarios close to predicted environmenta...
International audienceThe objective of this work was to investigate the fate of silver nanoparticles...
AbstractNanoparticles enter soils through various pathways. In the soil, they undergo various intera...
Long-term speciation and lability of silver (Ag-), silver chloride (AgCl-), and silver sulfide nanop...
Long-term speciation and lability of silver (Ag-), silver chloride (AgCl-), and silver sulfide nanop...
Long-term speciation and lability of silver (Ag-), silver chloride (AgCl-), and silver sulfide nanop...
Silver (Ag) and silver nanoparticles (AgNPs) are increasingly being used in solar energy production,...
The widespread use of silver nanoparticles (Ag-NPs) results in their movement into wastewater treatm...
Increasing commercial use of nanosilver has focussed attention on the fate of silver (Ag) in the was...
The increasingly widespread usage of silver (Ag) nanoparticles has raised concerns regarding their e...
The increasingly widespread usage of silver (Ag) nanoparticles has raised concerns regarding their e...
International audienceSilver phytoavailability in exposure scenarios close to predicted environmenta...
International audienceThe objective of this work was to investigate the fate of silver nanoparticles...
AbstractNanoparticles enter soils through various pathways. In the soil, they undergo various intera...
Long-term speciation and lability of silver (Ag-), silver chloride (AgCl-), and silver sulfide nanop...
Long-term speciation and lability of silver (Ag-), silver chloride (AgCl-), and silver sulfide nanop...
Long-term speciation and lability of silver (Ag-), silver chloride (AgCl-), and silver sulfide nanop...
Silver (Ag) and silver nanoparticles (AgNPs) are increasingly being used in solar energy production,...
The widespread use of silver nanoparticles (Ag-NPs) results in their movement into wastewater treatm...
Increasing commercial use of nanosilver has focussed attention on the fate of silver (Ag) in the was...
The increasingly widespread usage of silver (Ag) nanoparticles has raised concerns regarding their e...
The increasingly widespread usage of silver (Ag) nanoparticles has raised concerns regarding their e...
International audienceSilver phytoavailability in exposure scenarios close to predicted environmenta...
International audienceThe objective of this work was to investigate the fate of silver nanoparticles...
AbstractNanoparticles enter soils through various pathways. In the soil, they undergo various intera...