Biogeochemical cycling of elements largely occurs in dissolved state, but many elements may also be bound to natural nanoparticles (NNP, 1-100 nm) and fine colloids (100-450 nm). We examined the hypothesis that the size and composition of stream water NNP and colloids vary systematically across Europe. To test this hypothesis, 96 stream water samples were simultaneously collected in 26 forested headwater catchments along two transects across Europe. Three size fractions (~1-20 nm, >20-60 nm, and >60 nm) of NNP and fine colloids were identified with Field Flow Fractionation coupled to inductively coupled plasma mass spectrometry and an organic carbon detector. The results showed that NNP and fine colloids constituted between 2 ± 5% (Si) and ...
Phosphorus (P) in natural waters may be bound to iron (Fe) bearing colloids. However, the natural va...
<p>Colloidal phosphorus (P) may represent an important fraction of the P in natural waters, but thes...
International audienceThis study investigates the spatiotemporal variability of major and trace elem...
Biogeochemical cycling of elements largely occurs in dissolved state, but many elements may also be ...
Biogeochemical cycling of elements largely occurs in dissolved state, but many elements may also be ...
Elemental contents in catchment headwaters are indicative of the load of nutrients and minerals cycl...
Stream waters reflect the natural load of nutrients and minerals cycled within or released from ecos...
Natural fine colloids and nanoparticles have the potential to encapsulate and bind nutrients. Their ...
Natural fine colloids and nanoparticles have the potential to encapsulate and bind nutrients. Their ...
Natural fine colloids and nanoparticles have the potential to encapsulate and bind nutrients. Their ...
Background and aimsNanoparticles and colloids affect the mobilisation and availability of phosphorus...
A high precision fractionation of particle size classes between 1nm and 1000nm is best applicable wi...
Colloidal phosphorus (P) may represent an important fraction of the P in natural waters, but these c...
Natural soil colloids (1 nm - 1 µm) and specifically their subset nanoparticles (1 nm - 100 nm) are ...
Phosphorus (P) in natural waters may be bound to iron (Fe) bearing colloids. However, the natural va...
<p>Colloidal phosphorus (P) may represent an important fraction of the P in natural waters, but thes...
International audienceThis study investigates the spatiotemporal variability of major and trace elem...
Biogeochemical cycling of elements largely occurs in dissolved state, but many elements may also be ...
Biogeochemical cycling of elements largely occurs in dissolved state, but many elements may also be ...
Elemental contents in catchment headwaters are indicative of the load of nutrients and minerals cycl...
Stream waters reflect the natural load of nutrients and minerals cycled within or released from ecos...
Natural fine colloids and nanoparticles have the potential to encapsulate and bind nutrients. Their ...
Natural fine colloids and nanoparticles have the potential to encapsulate and bind nutrients. Their ...
Natural fine colloids and nanoparticles have the potential to encapsulate and bind nutrients. Their ...
Background and aimsNanoparticles and colloids affect the mobilisation and availability of phosphorus...
A high precision fractionation of particle size classes between 1nm and 1000nm is best applicable wi...
Colloidal phosphorus (P) may represent an important fraction of the P in natural waters, but these c...
Natural soil colloids (1 nm - 1 µm) and specifically their subset nanoparticles (1 nm - 100 nm) are ...
Phosphorus (P) in natural waters may be bound to iron (Fe) bearing colloids. However, the natural va...
<p>Colloidal phosphorus (P) may represent an important fraction of the P in natural waters, but thes...
International audienceThis study investigates the spatiotemporal variability of major and trace elem...