Author/Authors :
Klaus-Dieter Grevel، نويسنده , , Klaus-Dieter and Majzlan، نويسنده , , Juraj، نويسنده ,
Abstract :
Divalent metal sulphate hydrates (M2+SO4·nH2O) represent a characteristic mineral group for the surface environments of the Earth. Generally, they change their hydration state in response to the local temperature and humidity conditions — n decreases as the relative humidity is decreased or temperature is increased. Here, using mathematical programming (MAP) techniques, we derived standard thermodynamic values consistent both with calorimetric data taken from the literature and previously published temperature humidity brackets obtained by reversal experiments for several minerals of this group: rozenite (FeSO4· 4H2O), melanterite (FeSO4· 7H2O), bianchite (ZnSO4· 6H2O), goslarite (ZnSO4· 7H2O), retgersite (NiSO4· 6H2O), morenosite (NiSO4· 7H2O), moorhouseite (CoSO4· 6H2O), bieberite (CoSO4· 7H2O), bonattite (CuSO4· 3H2O), and chalcanthite (CuSO4· 5H2O).
st significant changes appeared in the Fe2+ system. Therefore, the available data and the resulting phase diagrams are discussed in more detail — the recommended standard values for melanterite and rozenite are: Rozenite : Δ f H 0 298 = − 2128 . 89 kJ mol − 1 , S 0 298 = 281 . 52 J mol − 1 K − 1 Melanterite : Δ f H 0 298 = − 3 0 14 . 39 kJ mol − 1 , S 0 298 = 4 0 9 . 29 J mol − 1 K − 1 .
Keywords :
Thermodynamics , Internally consistent data bases , Mathematical programming , Temperature , Humidity , Divalent sulphate hydrates