1. Arislarain, L.F. and Hurlbut, C.S., Ahfeldite from Pacajake Bolivia: Restudy, Am. Mineral., 1969, vol. 54, pp. 448–456.
2. Bertrand, E., Sur la molybdomenite (sélénite de plomb), la cobaltomenite (sélénite de cobalt) et l’acide sélénieux de Bur’yanova, E.Z., Thermodynamic Aspect of the Formation Conditions of Fe, Pb, Zn, and Cd Selenides and Native Selenium in Sedimentary Rocks, Geokhimiya, 1969, vol. 7, no. 12, pp. 1451–1464.
3. Charykova, M.V., Krivovichev, V.G., and Depmeier, W., Selenites and Sulfates: the System Ni2+, Co2+//Se O 3 2− , SeO 4 2− , H2O—Thermodynamic Analysis and Geological Applications, Zap. Ross. Mineral. O-va, 2007, vol. 136, no. 7, pp. 246–266.
4. Charykova, M.V., Krivovichev, V.G., and Depmeier, W., Thermodynamics of Arsenates, Selenites, and Sulfates in the Oxidation Zone of Sulfide Ores. I. Thermodynamic Constants at Ambient Conditions, Zap. Ross. Mineral. O-va, 2009, no. 6, pp. 105–117. [Geol. Ore Dep. (Engl. Transl.), 2010, vol. 52, spec. issue 8 (Zapiski Russian Mineral. Soc.), pp. 689–700].
5. Charykova, M.V., Krivovichev, V.G., Yakovenko, O.S., and Depmeier, W., Thermodynamics of Arsenates, Selenites, and Sulfates in the Oxidation Zone of Sulfide Ores. III. Eh-pH Diagrams for the Me-As-H2O Systems (Me = Co, Ni, Fe, Cu, Zn, Pb) at 25°C, Zap. Ross. Mineral. O-va, 2010, vol. 139, no. 3, pp. 1–14 [Geol. Ore Dep. (Engl. Transl.), 2011, vol. 53, spec. issue 7 (Zapiski Russian Mineral. Soc.), pp.].