Stability constants for the formation of rare earth-inorganic complexes as a function of ionic strength
暂无分享,去创建一个
[1] F. Millero,et al. Ionic interactions of divalent metals in natural waters , 1992 .
[2] B. Lazar,et al. The composition of Permian seawater. , 1991, Geochimica et cosmochimica acta.
[3] H. Nitsche. Basic research for assessment of geologic nuclear waste repositories: What solubility and speciation studies of transuranium elements can tell us , 1990 .
[4] R. Upstill‐Goddard,et al. The rare earth elements in rivers, estuaries, and coastal seas and their significance to the composition of ocean waters , 1990 .
[5] G. Choppin. Soluble rare earth and actinide species in seawater , 1989 .
[6] R. Byrne,et al. Phosphate complexation of gadolinium(III) in aqueous solution , 1989 .
[7] C. German,et al. Rare earth elements in Saanich Inlet, British Columbia, a seasonally anoxic basin , 1989 .
[8] Jerry P. Greenberg,et al. The prediction of mineral solubilities in natural waters: A chemical equilibrium model for the Na-K-Ca-Cl-SO4-H2O system to high concentration from 0 to 250°C , 1989 .
[9] H. Elderfield. The oceanic chemistry of the rare-earth elements , 1988, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[10] C. German,et al. Rare earth element distributions in anoxic waters of the Cariaco Trench , 1988 .
[11] N. Møller,et al. The prediction of mineral solubilities in natural waters: A chemical equilibrium model for the Na-Ca-Cl-SO4-H2O system, to high temperature and concentration , 1988 .
[12] H. Elderfield,et al. Rare earth elements in the pore waters of reducing nearshore sediments , 1987 .
[13] Kirk J. Cantrell,et al. Rare earth element complexation by carbonate and oxalate ions , 1987 .
[14] G. Choppin. Speciation of trivalent f elements in natural waters , 1986 .
[15] P. Brewer,et al. Rare earth elements in the Pacific and Atlantic Oceans , 1985 .
[16] N. Møller,et al. The prediction of mineral solubilities in natural waters: The Na-K-Mg-Ca-H-Cl-SO4-OH-HCO3-CO3-CO2-H2O system to high ionic strengths at 25°C , 1984 .
[17] F. Millero,et al. The ionization of carbonic acid in Na-Mg-Cl solutions at 25°C , 1983 .
[18] F. Millero,et al. Use of the ion pairing model to estimate activity coefficients of the ionic components of natural waters. , 1982 .
[19] F. Millero,et al. Ionization of carbonic acid in sodium chloride solutions at 25°C , 1982 .
[20] H. Elderfield,et al. The rare earth elements in seawater , 1982, Nature.
[21] F. Millero. The ionization of acids in estuarine waters , 1981 .
[22] A. Dickson,et al. An ion-association model for estimating acidity constants (at 25°C and 1 ATM total pressure) in electrolyte mixtures related to seawater (ionic strength < 1 mol kg−1 H2O) , 1981 .
[23] Andrew G. Dickson,et al. The equilibrium speciation of dissolved components in freshwater and sea water at 25°C and 1 atm pressure , 1981 .
[24] John H. Weare,et al. The prediction of mineral solubilities in natural waters: the NaKMgCaClSO4H2O system from zero to high concentration at 25° C , 1980 .
[25] Frank J. Millero,et al. The Thermodynamics of the Carbonate System in Seawater , 1979 .
[26] M. Whitfield. The extension of chemical models for sea water to include trace components at 25°C and 1 atm pressure , 1975 .
[27] Kenneth S. Pitzer,et al. Thermodynamics of electrolytes. IV. Activity and osmotic coefficients for mixed electrolytes , 1974 .
[28] K. Pitzer,et al. Thermodynamics of electrolytes. II. Activity and osmotic coefficients for strong electrolytes with one or both ions univalent , 1973 .
[29] E. Goldberg,et al. Rare‐Earth distributions in the marine environment , 1963 .
[30] Jacob Kielland. Individual Activity Coefficients of Ions in Aqueous Solutions , 1937 .
[31] E. A. Guggenheim. L. The specific thermodynamic properties of aqueous solutions of strong electrolytes , 1935 .
[32] D. Macinnes. THE ACTIVITIES OF THE IONS OF STRONG ELECTROLYTES. , 1919 .
[33] F. Millero. Marine solution chemistry and ionic interactions , 1990 .
[34] J. W. Ball,et al. Chemical Models, Computer Programs and Metal Complexation in Natural Waters , 1984 .
[35] Kenneth S. Pitzer,et al. Thermodynamics of electrolytes. III. Activity and osmotic coefficients for 2–2 electrolytes , 1974 .
[36] Kenneth S. Pitzer,et al. Thermodynamics of electrolytes. I. Theoretical basis and general equations , 1973 .
[37] L. C. Walker. Enthalpy of reaction of sulfur and nitrogen trifluoride , 1967 .
[38] R. Garrels,et al. A chemical model for sea water at 25 degrees C and one atmosphere total pressure , 1962 .