Thermodynamic Model for BiPO4(cr) and Bi(OH)3(am) Solubility in the Aqueous Na+–H+– $\mathrm{H}_{2}\mathrm{PO}_{4}^{-}$ – $\mathrm{HPO}_{4}^{2-}$ – $\mathrm{PO}_{4}^{3-}$ –OH−–Cl−–H2O System

Author:

Rai Dhanpat,Yui Mikazu,Schaef H. Todd,Kitamura Akira

Publisher

Springer Science and Business Media LLC

Subject

Physical and Theoretical Chemistry,Molecular Biology,Biochemistry,Biophysics

Reference30 articles.

1. Rai, D., Felmy, A.R., Fulton, R.W.: Solubility of AmPO4⋅xH2O(am). Power Reactor and Nuclear Fuels Development Corporation of Japan (1990)

2. Rai, D., Felmy, A.R., Yui, M.: Thermodynamic model for the solubility of NdPO4(c) in the aqueous Na+–H+– $\mathrm{H}_{2}\mathrm{PO}_{4}^{-}$ – $\mathrm{HPO}_{4}^{2-}$ –OH−–Cl−–H2O system. J. Radioanal. Nucl. Chem. 256, 37–43 (2003)

3. Lemire, R.J., Fuger, J., Nitsche, H., Potter, P.E., Rand, M.H., Rydberg, J., Spahiu, K., Sullivan, J.C., Ullman, W.J., Vitorge, P., Wanner, H.: Chemical Thermodynamics of Neptunium and Plutonium. Elsevier, Amsterdam (2001)

4. Cleveland, J.M.: The Chemistry of Plutonium. American Nuclear Society, LaGrange Park (1979)

5. ICDD: The Powder Diffraction File (PDF). International Center for Diffraction Data (ICDD), Newtown Square

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