Carbonate (CO3) interacts with Fe-(hydr)oxide nanoparticles, affecting the availability and geochemical cycle of other important oxyanions in nature. Here, we studied the carbonate–phosphate interaction in closed systems with freshly prepared ferrihydrite (Fh), using batch experiments that cover a wide range of pH values, ionic strength, and CO3 and PO4 concentrations. The surface speciation of CO3 has been assessed by interpreting the ion competition with the Charge Distribution (CD) model, using CD coefficients derived from MO/DTF optimized geometries. Adsorption of CO3 occurs predominately via formation of bidentate inner-sphere complexes, either (≡FeO)2CO or (≡FeO)2CO··Na+. The latter complex is electrostatically promoted at high pH and...
An improved quantitative and qualitative understanding of the interaction of per- and polyfluoroalky...
An improved quantitative and qualitative understanding of the interaction of per- and polyfluoroalky...
Calcium (Ca) and magnesium (Mg) are the most abundant alkaline-earth metal ions in nature, and their...
Carbonate (CO3) interacts with Fe-(hydr)oxide nanoparticles, affecting the availability and geochemi...
Carbonate (CO3) interacts with Fe-(hydr)oxide nanoparticles, affecting the availability and geochemi...
Carbonate (CO3) interacts with Fe-(hydr)oxide nanoparticles, affecting the availability and geochem...
Ferrihydrite (Fh) is the most important iron (hydr)oxide nanoparticle in nature. Due to its large su...
Assessment of the surface reactivity of natural metal-(hydr)oxide nanoparticles is necessary for pre...
Competitive interaction of carbonate and phosphate on goethite has been studied quantitatively. Both...
Competitive interaction of carbonate and phosphate on goethite has been studied quantitatively. Both...
Assessment of the surface reactivity of natural metal-(hydr)oxide nanoparticles is necessary for pre...
Calcium (Ca) and magnesium (Mg) are the most abundant alkaline-earth metal ions in nature, and their...
The adsorption and desorption of boric acid onto reactive materials such as metal (hydr)oxides and n...
An improved quantitative and qualitative understanding of the interaction of per- and polyfluoroalky...
Adsorption of dissolved phosphate onto synthetic hydrous ferric oxide (HFO) was measured in the labo...
An improved quantitative and qualitative understanding of the interaction of per- and polyfluoroalky...
An improved quantitative and qualitative understanding of the interaction of per- and polyfluoroalky...
Calcium (Ca) and magnesium (Mg) are the most abundant alkaline-earth metal ions in nature, and their...
Carbonate (CO3) interacts with Fe-(hydr)oxide nanoparticles, affecting the availability and geochemi...
Carbonate (CO3) interacts with Fe-(hydr)oxide nanoparticles, affecting the availability and geochemi...
Carbonate (CO3) interacts with Fe-(hydr)oxide nanoparticles, affecting the availability and geochem...
Ferrihydrite (Fh) is the most important iron (hydr)oxide nanoparticle in nature. Due to its large su...
Assessment of the surface reactivity of natural metal-(hydr)oxide nanoparticles is necessary for pre...
Competitive interaction of carbonate and phosphate on goethite has been studied quantitatively. Both...
Competitive interaction of carbonate and phosphate on goethite has been studied quantitatively. Both...
Assessment of the surface reactivity of natural metal-(hydr)oxide nanoparticles is necessary for pre...
Calcium (Ca) and magnesium (Mg) are the most abundant alkaline-earth metal ions in nature, and their...
The adsorption and desorption of boric acid onto reactive materials such as metal (hydr)oxides and n...
An improved quantitative and qualitative understanding of the interaction of per- and polyfluoroalky...
Adsorption of dissolved phosphate onto synthetic hydrous ferric oxide (HFO) was measured in the labo...
An improved quantitative and qualitative understanding of the interaction of per- and polyfluoroalky...
An improved quantitative and qualitative understanding of the interaction of per- and polyfluoroalky...
Calcium (Ca) and magnesium (Mg) are the most abundant alkaline-earth metal ions in nature, and their...