International audienceDissolved silicate ions in wet and dry soils can determine the fate of organic contaminants via competitive binding. While fundamental surface science studies have advanced knowledge of binding in competitive systems, little is still known about the ranges of solution conditions, the time dependence, and the molecular processes controlling competitive silicate-organic binding on minerals. Here we address these issues by describing the competitive adsorption of dissolved silicate and of phthalic acid (PA), a model carboxylate-bearing organic contaminant, onto goethite, a representative natural iron oxyhydroxide nanomineral. Using surface complexation thermodynamic modeling of batch adsorption data and chemometric analys...
International audienceAmong transport studies of solutes in porous media, few works have combined mi...
<p>A detailed study is presented in which the CD-MUSIC modeling approach is used in a new mode...
International audienceAtmospheric water vapor binding to soils is a key process driving water availa...
International audienceDissolved silicate ions in wet and dry soils can determine the fate of organic...
Numerous studies have investigated the ligand-promoted dissolution of Fe (oxyhydr)oxides. In natural...
Phosphorus is an essential element for all known forms of life. In the form of phosphate, this nutri...
The adsorption of dissolved organic matter (DOM) to metal (oxy)hydroxide mineral surfaces is a crit...
Silicate sorption on ferrihydrite surfaces, as monomers, oligomers, and polymers, strongly affects f...
Under natural conditions, the adsorption of ions at the solid-water interface may be strongly influe...
The effect of adsorbed soil fulvic (JGFA) and humic acid (JGHA) on Pb binding to goethite was studie...
The adsorption of Si on goethite (¿-FeOOH) has been studied in batch experiments that cover the natu...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α-FeO(...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α−FeO(...
Fulvic and humic acids have a large variability in binding to metal (hydr) oxide surfaces and intera...
<p>Silicic acid is omnipresent in nature and interacts with ferrihydrite (Fh) changing the environme...
International audienceAmong transport studies of solutes in porous media, few works have combined mi...
<p>A detailed study is presented in which the CD-MUSIC modeling approach is used in a new mode...
International audienceAtmospheric water vapor binding to soils is a key process driving water availa...
International audienceDissolved silicate ions in wet and dry soils can determine the fate of organic...
Numerous studies have investigated the ligand-promoted dissolution of Fe (oxyhydr)oxides. In natural...
Phosphorus is an essential element for all known forms of life. In the form of phosphate, this nutri...
The adsorption of dissolved organic matter (DOM) to metal (oxy)hydroxide mineral surfaces is a crit...
Silicate sorption on ferrihydrite surfaces, as monomers, oligomers, and polymers, strongly affects f...
Under natural conditions, the adsorption of ions at the solid-water interface may be strongly influe...
The effect of adsorbed soil fulvic (JGFA) and humic acid (JGHA) on Pb binding to goethite was studie...
The adsorption of Si on goethite (¿-FeOOH) has been studied in batch experiments that cover the natu...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α-FeO(...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α−FeO(...
Fulvic and humic acids have a large variability in binding to metal (hydr) oxide surfaces and intera...
<p>Silicic acid is omnipresent in nature and interacts with ferrihydrite (Fh) changing the environme...
International audienceAmong transport studies of solutes in porous media, few works have combined mi...
<p>A detailed study is presented in which the CD-MUSIC modeling approach is used in a new mode...
International audienceAtmospheric water vapor binding to soils is a key process driving water availa...