1 |
Thermodynamic study of the Na-Cu-Cl-SO4-H2O system at the temperature 298.15 K Christov C Journal of Chemical Thermodynamics, 32(3), 285, 2000 |
2 |
Dissolution reaction of potash fertilizer with moisture Peng SW, Strathdee G, Besant RW Canadian Journal of Chemical Engineering, 77(6), 1127, 1999 |
3 |
Study of (m(1)KCl+m(2)MeCl(2))(aq) and (m(1),K2SO4+m(2)MeSO(4))(aq) where m denotes molality and Me denotes Cu, or Ni at the temperature 298.15 K Christov C Journal of Chemical Thermodynamics, 31(1), 71, 1999 |
4 |
Use of Pitzer's model to calculate thermodynamic properties of aqueous electrolyte solutions of Na2SO4+NaCl between 273.15 and 373.15 K Marliacy P, Hubert N, Schuffenecker L, Solimando R Fluid Phase Equilibria, 148(1-2), 95, 1998 |
5 |
Computer modeling for geothermal systems: Predicting carbonate and silica scale formation, CO2 breakout and H2S exchange Moller N, Greenberg JP, Weare JH Transport in Porous Media, 33(1), 173, 1998 |
6 |
Solution mining of trona Haynes HW In Situ, 21(4), 357, 1997 |
7 |
Critical-Evaluation of the Thermodynamic Properties of Aqueous Calcium-Chloride .1. Osmotic and Activity-Coefficients of 0-10.77 Mol-Center-Dot-kg(-1) Aqueous Calcium-Chloride Solutions at 298.15-K and Correlation with Extended Pitzer Ion-Interaction Models Rard JA, Clegg SL Journal of Chemical and Engineering Data, 42(5), 819, 1997 |
8 |
Thermodynamics of the Formation of Solid-Solutions of the Type (Me,Me’)Seo4 6H(2)O Where Me and Me’ Denote Mg, Co, Ni, or Zn from Aqueous-Solutions Christov C Journal of Chemical Thermodynamics, 29(4), 481, 1997 |
9 |
Activity-Coefficients in Concentrated Electrolytes - A Comparison of the Brunauer-Emmett-Teller (Bet) Model with Experimental Values Ally MR, Braunstein J Fluid Phase Equilibria, 120(1-2), 131, 1996 |
10 |
Prediction of boiling, scaling and formation conditions in geothermal reservoirs using computer programs Tequil and Geofluids Duan ZH, Moller N, DeRocher T, Weare JH Geothermics, 25(6), 663, 1996 |