Low bioavailability of iron due to poor solubility of iron(hydr)oxides limits the growth of microorganisms and plants in soils and aquatic environments. Previous studies described accelerated dissolution of iron(hydr)oxides under continuous illumination, but did not distinguish between photoreductive dissolution and non-reductive processes in which photogenerated Fe(II) catalyzes ligand-controlled dissolution. Here we show that short illuminations (5–15 min) accelerate the dissolution of iron(hydr)oxides by ligands during subsequent dark periods under anoxic conditions. Suspensions of lepidocrocite (Lp) and goethite (Gt) (1.13 mM) with 50 μM EDTA or DFOB were illuminated with UV-A light of comparable intensity to sunlight (pH 7.0, bicarbona...
The availability of iron has been thought to be a main limiting factor for the productivity of phyto...
Dissolution of Fe(III) phases is a key process in making iron available to biota and in the mobiliza...
Abstract.: The effects of size and origin of natural dissolved organic matter compounds (DOM) on the...
Dissolution of iron(III)phases is a key process in soils, surface waters, and the ocean. Previous st...
Dissolution of iron(III)phases is a key process in soils, surface waters, and the ocean. Previous st...
Dissolution of iron(III)phases is a key process in soils, surface waters, and the ocean. Previous st...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) is...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) is...
Dissolution of iron(III)phases is a key process in soils, surface waters, and the ocean. Previous ...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) is...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) is...
Recent evidence suggested that organic ligands in atmosphere water play an important role in the mob...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) ...
The availability of iron has been thought to be a main limiting factor for the productivity of phyto...
The availability of iron has been thought to be a main limiting factor for the productivity of phyto...
The availability of iron has been thought to be a main limiting factor for the productivity of phyto...
Dissolution of Fe(III) phases is a key process in making iron available to biota and in the mobiliza...
Abstract.: The effects of size and origin of natural dissolved organic matter compounds (DOM) on the...
Dissolution of iron(III)phases is a key process in soils, surface waters, and the ocean. Previous st...
Dissolution of iron(III)phases is a key process in soils, surface waters, and the ocean. Previous st...
Dissolution of iron(III)phases is a key process in soils, surface waters, and the ocean. Previous st...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) is...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) is...
Dissolution of iron(III)phases is a key process in soils, surface waters, and the ocean. Previous ...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) is...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) is...
Recent evidence suggested that organic ligands in atmosphere water play an important role in the mob...
Dissolution of Fe(III) (hydr)oxide minerals by siderophores (i.e., Fe-specific, biogenic ligands) ...
The availability of iron has been thought to be a main limiting factor for the productivity of phyto...
The availability of iron has been thought to be a main limiting factor for the productivity of phyto...
The availability of iron has been thought to be a main limiting factor for the productivity of phyto...
Dissolution of Fe(III) phases is a key process in making iron available to biota and in the mobiliza...
Abstract.: The effects of size and origin of natural dissolved organic matter compounds (DOM) on the...