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Heat capacity, entropy, and phase equilibria of dmitryivanovite

机译:菱铁矿的热容,熵和相平衡

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The heat capacity (C _p) of dmitryivanovite synthesized with a cubic press was measured in the temperature range of 5-664 K using the heat capacity option of a physical properties measurement system and a differential scanning calorimeter. The entropy of dmitryivanovite at standard temperature and pressure (STP) was calculated to be 110. 1 ± 1. 6 J mol ~(-1) K ~(-1) from the measured C _p data. With the help of new phase equilibrium experiments done at 1. 5 GPa, the phase transition boundary between krotite and dmitryivanovite was best represented by the equation: P (GPa) = -2. 1825 + 0. 0025 T (K). From the temperature intercept of this phase boundary and other available thermodynamic data for krotite and dmitryivanovite, the enthalpy of formation and Gibbs free energy of formation of dmitryivanovite at STP were calculated to be -2326. 7 ± 2. 1 and -2,208. 1 ± 2. 1 kJ mol ~(-1), respectively. It is also inferred that dmitryivanovite is the stable CaAl _2O _4 phase at STP and has a wide stability field at high pressures whereas the stability field of krotite is located at high temperatures and relatively low pressures. This conclusion is consistent with natural occurrences (in Ca-Al-rich inclusions) of dmitryivanovite and krotite, where the former is interpreted as the shock metamorphic product of originally present krotite.
机译:使用物理性能测量系统的热容量选件和差示扫描量热仪,在5-664 K的温度范围内,测量了用立方压机合成的偏硅钙钛矿的热容量(C _p)。根据测得的C _p数据,在标准温度和压力下(STP)的辉铁矿的熵为110. 1±1. 6 J mol〜(-1)K〜(-1)。借助在1. 5 GPa处进行的新的相平衡实验,可以最好地用等式表示P(GPa)= -2。 1825 +0。0025T(K)。根据该相界的温度截距和其他可用于Krotite和Dmitryivanovite的热力学数据,计算得出STP时Dmitryivanovite的形成焓和Gibbs自由形成能为-2326。 7±2。1和-2,208。 1±2。分别为1 kJ mol〜(-1)。还可以推断出,白云母辉石在STP时是稳定的CaAl _2O _4相,并且在高压下具有宽的稳定场,而在高温和相对较低的压力下,钾铁矿的稳定场位于。该结论与天然的菱铁矿和玄武岩(富含钙铝夹杂物)一致,前者被解释为最初存在的玄武岩的冲击变质产物。

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