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A thermodynamic model for hydrous silicate melts in the system NaAlSi3O8–KAlSi3O8–Si4O8–H2O

机译:NaAlSi3O8–KAlSi3O8–Si4O8–H2O系统中水合硅酸盐熔体的热力学模型

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摘要

Computation of crystal–liquid equilibria in hydrous silicate systems requires a model of the free energy of the hydrous liquid that defines the activity of the melt components at given temperature, pressure and composition. We present in this study a parametrization of the free energy of the liquid in the haplogranite system NaAlSi3O8–KAlSi3O8–Si4O8–H2O based on the Margules approach. The excess free energy of the multicomponent melt is approximated from the binaries with the Kohler extrapolation method. Model parameters have been fitted to phase equilibrium data by mathematical programming techniques. A small but complex excess function of the anhydrous melt composition is necessary to reproduce reported liquidus phase relations. Using partial molar Cp data from the literature for the H2O melt component and a simple polynomial approximation for the molar volume, standard state enthalpy and entropy were refined close to −287 kJ/mol and 67.2 J/K mol, respectively. Calculated crystal–liquid phase relations are in good agreement with measurements to 5 kbar, and the modelled melt–fluid coexistence surface yields a valuable first order approximation of the H2O solubility at near liquidus temperatures. Thermodynamic assessment of solubility and liquidus data suggests that H2O mixing differs considerably in feldspar melts and in silica melts. Si4O8–H2O mixing contributes to a very minor degree to the haplogranite system.
机译:计算含水硅酸盐体系中的结晶-液体平衡时,需要一个含水液体自由能的模型,该模型定义了在给定温度,压力和组成下熔体组分的活性。我们在本研究中基于Margules方法,对白云母系统NaAlSi3O8–KAlSi3O8–Si4O8–H2O中液体的自由能进行了参数化。多组分熔体的多余自由能通过科勒外推法从二元近似得到。模型参数已通过数学编程技术拟合到相平衡数据。无水熔体组合物的一个小而复杂的过量功能对于重现所报道的液相关系是必要的。使用来自文献的H2O熔融组分的部分摩尔Cp数据和摩尔体积的简单多项式近似,将标准态焓和熵分别细化为-287 kJ / mol和67.2 J / K mol。计算得出的晶体与液相之间的关系与5 kbar的测量值非常吻合,并且模拟的熔体与流体共存表面在接近液相线温度时产生了H2O溶解度的有价值的一阶近似值。溶解度和液相线数据的热力学评估表明,长石熔体和二氧化硅熔体中H2O的混合差异很大。 Si4O8–H2O的混合对高锰矿体系的贡献很小。

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