The proton adsorption behavior of eight humic acids (HA) and a fulvic acid (FA) was studied as a function of pH and KNO3 concentration. The emphasis is on the comparison of the different humics with respect to their ion binding properties and on the comparison of two different models to describe the electrostatic interactions: the Donnan model and the impermeable sphere (IS) model. Viscosimetric data were used to estimate the hydrodynamic volumes and radii of the HA molecules. These data were incorporated in the electrostatic models and calculations could be carried out without any adjustable parameter. The Donnan model in combination with hydrodynamic volumes obtained by viscometry cannot adequately describe the electrostatic effects relat...
The general principles of cation binding to humic matter and the various aspects of modeling used in...
Humic acids are natural organic materials that play an important role in the migration of heavy meta...
The mathematical modelling of metal cation–natural organic matter interactions is a fundamental tool...
The proton adsorption behavior of eight humic acids (HA) and a fulvic acid (FA) was studied as a fun...
Preferably, the description of ion binding to humic substances (HSs) is done with thermodynamic cons...
Detailed potentiometric titration data were collected for a purified peat humic acid (PPHA) over a r...
Forty-nine datasets consisting of literature and experimental data for proton binding by fulvic and ...
Model V describes the binding of ions by humic substances in terms of complexation at discrete sites...
Proton binding to one soil fulvic acid (JGFA), two soil humic acids (JGHA, JLHA) and a lignite-based...
Humic substances (HS) are ubiquitous organic constituents in soil and water and can strongly adsorb ...
The general principles of cation binding to humic matter and the various aspects of modeling used in...
In this paper, the LCD (ligand charge distribution) model is applied to describe the adsorption of (...
Humic substances (HS) were extracted from the soil and water of an upland catchment and characterise...
Ion binding to humics can only be satisfactorily described if the chemical heterogeneity is explicit...
The adsorption of humic acids (HA) to goethite (at pH 3-11) and the proton co-adsorption (at pH 4.0,...
The general principles of cation binding to humic matter and the various aspects of modeling used in...
Humic acids are natural organic materials that play an important role in the migration of heavy meta...
The mathematical modelling of metal cation–natural organic matter interactions is a fundamental tool...
The proton adsorption behavior of eight humic acids (HA) and a fulvic acid (FA) was studied as a fun...
Preferably, the description of ion binding to humic substances (HSs) is done with thermodynamic cons...
Detailed potentiometric titration data were collected for a purified peat humic acid (PPHA) over a r...
Forty-nine datasets consisting of literature and experimental data for proton binding by fulvic and ...
Model V describes the binding of ions by humic substances in terms of complexation at discrete sites...
Proton binding to one soil fulvic acid (JGFA), two soil humic acids (JGHA, JLHA) and a lignite-based...
Humic substances (HS) are ubiquitous organic constituents in soil and water and can strongly adsorb ...
The general principles of cation binding to humic matter and the various aspects of modeling used in...
In this paper, the LCD (ligand charge distribution) model is applied to describe the adsorption of (...
Humic substances (HS) were extracted from the soil and water of an upland catchment and characterise...
Ion binding to humics can only be satisfactorily described if the chemical heterogeneity is explicit...
The adsorption of humic acids (HA) to goethite (at pH 3-11) and the proton co-adsorption (at pH 4.0,...
The general principles of cation binding to humic matter and the various aspects of modeling used in...
Humic acids are natural organic materials that play an important role in the migration of heavy meta...
The mathematical modelling of metal cation–natural organic matter interactions is a fundamental tool...