Adsorption of fulvic acid on goethite
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Johannes C.L. Meeussen | J. Meeussen | T. Hiemstra | D. Lumsdon | W. H. Riemsdijk | Tjisse Hiemstra | Willem H. van Riemsdijk | David G. Lumsdon | J. Filius | Jeroen D. Filius
[1] David A. Dzombak,et al. Influence of Structural Features on Sorption of NOM-Analogue Organic Acids to Goethite , 1998 .
[2] T. Hiemstra,et al. A surface structural approach to ion adsorption : The charge distribution (CD) model , 1996 .
[3] A. Ledin,et al. Effects of fulvic acid on the adsorption of Cd(II) on alumina , 1989 .
[4] J. Wit,et al. Proton binding to humic substances. 2. Chemical heterogeneity and adsorption models , 1993 .
[5] C. Calmon,et al. Book reviewHumic substances in soil, sediment and water: by G.R. Aiken, D.M. McKnight, R.L. Wersham and P. McCarthy (Eds.), John Wiley and Sons, New York, 1985, xiii + 692 pages, $59.95 , 1986 .
[6] M. Anderson,et al. In situ CIR-FTIR characterization of salicylate complexes at the goethite/aqueous solution interface. , 1990 .
[7] A. Leijnse,et al. Modeling the Dynamic Adsorption/Desorption of a NOM Mixture: Effects of Physical and Chemical Heterogeneity , 1999 .
[8] J. Wit,et al. Multisite proton adsorption modeling at the solid/solution interface of (hydr)oxides: A new approach: II. Application to various important (hydr)oxides , 1989 .
[9] J. Wit,et al. Proton binding to humic substances. 1. Electrostatic effects , 1993 .
[10] D. Kinniburgh,et al. Design and construction of a personal-computer-based automatic titrator. , 1995 .
[11] J. Leenheer,et al. Mechanism of formation of humus coatings on mineral surfaces 1. Evidence for multidentate binding of organic acids from compost leachate on alumina , 1995 .
[12] J. Leenheer,et al. Mechanism of formation of humus coatings on mineral surfaces. 3. Composition of adsorbed organic acids from compost leachate on alumina by solid-state 13C NMR , 1996 .
[13] W. Fish,et al. Chromate and oxalate adsorption on goethite. 1. Calibration of surface complexation models , 1992 .
[14] George R. Aiken,et al. Comparison of XAD macroporous resins for the concentration of fulvic acid from aqueous solution , 1979 .
[15] P. Venema,et al. Intrinsic proton affinity of reactive surface groups of metal(hydr)oxides: application to iron(hydr)oxides. , 1998 .
[16] J. Lyklema,et al. Specific ion adsorption on oxides: Surface charge adjustment and proton stoichiometry , 1987 .
[17] L. Pauling. THE PRINCIPLES DETERMINING THE STRUCTURE OF COMPLEX IONIC CRYSTALS , 1929 .
[18] E. Tipping,et al. The adsorption of aquatic humic substances by iron oxides , 1981 .
[19] Thomas Højlund Christensen,et al. Proton binding by groundwater fulvic acids of different age, origins, and structure modeled with the Model V and NICA-Donnan Model , 1998 .
[20] S. Alegret,et al. A unified physicochemical description of the protonation and metal ion complexation equilibria of natural organic acids (humic and fulvic acids). 2. Influence of polyelectrolyte properties and functional group heterogeneity on the protonation equilibria of fulvic acid. , 1986, Environmental science & technology.
[21] J.C.L. Meeussen,et al. An efficient object oriented apporach for calculating chemical equilibria in combination with transport. , 1996 .
[22] C. Aakeröy. Hydrogen-Bonding in Solids , 1999 .
[23] R. S. Swift. Organic Matter Characterization , 2018, SSSA Book Series.
[24] D. Dzombak,et al. Competitive Sorption of Simple Organic Acids and Sulfate on Goethite , 1996 .
[25] D. Kinniburgh,et al. Analysis of metal-ion binding by a peat humic-acid using a simple electrostatic model. , 1995 .
[26] Hiemstra,et al. Adsorption of Small Weak Organic Acids on Goethite: Modeling of Mechanisms , 1997, Journal of colloid and interface science.
[27] F. Morel,et al. Comment on "A unified physicochemical description of the protonation and metal ion complexation equilibria of natural organic acids (humic and fulvic acids)" , 1989 .
[28] Baohua Gu,et al. Adsorption and desorption of different organic matter fractions on iron oxide , 1995 .
[29] James A. Davis,et al. Adsorption of natural dissolved organic matter at the oxide/water interface , 1982 .
[30] J. McCarthy,et al. Mechanisms of dissolved organic carbon adsorption on soil , 1989 .
[31] E. Karltun. Modelling SO42– surface complexation on variable charge minerals. II. Competition between SO42–, oxalate and fulvate , 1998 .
[32] P. Persson,et al. Inner-sphere and outer-sphere complexation of a polycarboxylic acid at the water-boehmite (gamma-AlOOH) interface: A combined potentiometric and IR spectroscopic study , 1998 .
[33] Venema,et al. Intrinsic Proton Affinity of Reactive Surface Groups of Metal (Hydr)oxides: The Bond Valence Principle , 1996, Journal of colloid and interface science.
[34] J. Quirk,et al. Adsorption of potential-determining ions at the ferric oxide-aqueous electrolyte interface , 1967 .
[35] A. Novak,et al. Hydrogen bonding in solids correlation of spectroscopic and crystallographic data , 1974 .
[36] T. Hiemstra,et al. The relationship between molecular structure and ion adsorption on variable charge minerals , 1999 .
[37] James W. Murray,et al. The influence of the major ions of seawater on the adsorption of simple organic acids by goethite , 1987 .
[38] W. Stumm,et al. The surface complexation of organic acids on hydrous γ-Al2O3 , 1980 .
[39] A. R. Fraser,et al. Adsorption on hydrous oxides.III.Fulvic acid and humic acid on goethite,gibbsite and imogolite , 1977 .
[40] M. Benedetti,et al. Humic Substances Considered as a Heterogeneous Donnan Gel Phase , 1996 .
[41] V. Farmer,et al. ADSORPTION ON HYDROUS OXIDES I. OXALATE AND BENZOATE ON GOETHITE , 1977 .
[42] D. McKnight,et al. Humic Substances in Soil, Sediment, and Water. 1985 , 1986 .
[43] M. Schnitzer,et al. Molecular weight measurements of polycarboxylic acids in water by vapor pressure osmometry , 1969 .
[44] I. Brown. Bond valences—a simple structural model for inorganic chemistry , 1978 .
[45] M. Avena,et al. Proton Binding to Humic Acids: Electrostatic and Intrinsic Interactions. , 1999, Journal of colloid and interface science.
[46] A. Vermeer,et al. Adsorption of Humic Acid to Mineral Particles. 1. Specific and Electrostatic Interactions , 1998 .
[47] Klaus Kaiser,et al. Dissolved organic matter sorption on sub soils and minerals studied by 13C‐NMR and DRIFT spectroscopy , 1997 .
[48] J. McCarthy,et al. Adsorption and desorption of natural organic matter on iron oxide: mechanisms and models. , 1994, Environmental science & technology.
[49] Venema,et al. Multisite Adsorption of Cadmium on Goethite , 1996, Journal of colloid and interface science.