Authors:
Borkowski, M
Moore, RC
Bronikowski, MG
Chen, JF
Pokrovsky, OS
Xia, YX
Choppin, GR
Citation: M. Borkowski et al., Thermodynamic modeling of actinide complexation with oxalate at high ionicstrength, J RAD NUCL, 248(2), 2001, pp. 467-471
Citation: Os. Pokrovsky et J. Schott, Kinetics and mechanism of dolomite dissolution in neutral to alkaline solutions revisited, AM J SCI, 301(7), 2001, pp. 597-626
Authors:
Pokrovsky, OS
Mielczarski, JA
Barres, O
Schott, J
Citation: Os. Pokrovsky et al., Surface speciation models of calcite and dolomite/aqueous solution interfaces and their spectroscopic evaluation, LANGMUIR, 16(6), 2000, pp. 2677-2688
Citation: Os. Pokrovsky et J. Schott, Forsterite surface composition in aqueous solutions: A combined potentiometric, electrokinetic, and spectroscopic approach, GEOCH COS A, 64(19), 2000, pp. 3299-3312
Citation: Os. Pokrovsky et J. Schott, Kinetics and mechanism of forsterite dissolution at 25 degrees C and pH from 1 to 12, GEOCH COS A, 64(19), 2000, pp. 3313-3325
Authors:
Moore, RC
Borkowski, M
Bronikowski, MG
Chen, JF
Pokrovsky, OS
Xia, YX
Choppin, GR
Citation: Rc. Moore et al., Thermodynamic modeling of actinide complexation with acetate and lactate at high ionic strength, J SOL CHEM, 28(5), 1999, pp. 521-531
Citation: Sv. Golubev et al., Unseeded precipitation of calcium and magnesium phosphates from modified seawater solutions, J CRYST GR, 205(3), 1999, pp. 354-360
Citation: Os. Pokrovsky et al., Processes at the magnesium-bearing carbonates solution interface. I. A surface speciation model for magnesite, GEOCH COS A, 63(6), 1999, pp. 863-880
Citation: Os. Pokrovsky et J. Schott, Processes at the magnesium-bearing carbonates solution interface. II. Kinetics and mechanism of magnesite dissolution., GEOCH COS A, 63(6), 1999, pp. 881-897