钛-锰矿石的热力学性质LaСаTiMnO6

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
B.K. Kasenov, Sh.B. Kasenova, Zh.I. Sagintaeva, C.O. Baisanov, N.Yu. Lu N.Yu. Lu, E.E. Kuanyshbekov, Zh.S. Bekturganov, A.K. Zeinidenov
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引用次数: 0

摘要

采用298.15 ~ 673 K范围内的动态量热法,研究了由镧、钛(II)、锰(III)和碳酸钙氧化物在800 ~ 1200℃固相相互作用制得的钛-锰矿LaСаTiMnO6的热容。在规定温度范围内的依赖曲线Ср ~(T)上,在598 K处检测到λ型效应,可能与第二类相变有关。确定了一个基本常数- LaСаTiMnO6的标准热容,等于22114 J /(mol)。它的标准熵为2066 J/(mol),由离子增量近似法估计。根据实验数据,考虑相变温度,计算了所研究钛锰镧和钙的温度依赖方程Ср ~(T)和热力学函数So (T)、Ho (T) - Ho(298.15)和Фхх(Т)。用Debye法计算了LaСаTiMnO6的标准热容,其值与实验数据吻合较好。根据所建立的方法,计算出钛-锰矿石生成的标准焓为- 3867.5 kJ/mol
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermodynamic properties of titanium-manganite LaСаTiMnO6
By the method of dynamic calorimetry in the range of 298.15-673 K, the heat capacity of titanium-manganite LaСаTiMnO6, obtained by solid-phase interaction at 800-1200oC from lanthanum, titanium (II), manganese (III) and calcium carbonate oxides was studied. On the dependence curve Ср~(T) in the specified temperature range, a λ-shaped effect was detected at 598 K, probably related to the phase transition of the second kind. A fundamental constant is determined — the standard heat capacity of LaСаTiMnO6, equal to 22114 J /(molK). Its standard entropy, equal to 2066 J/(molK), was estimated by the approximate method of ion increments. Based on experimental data, taking into account the temperature of the phase transition, the equations describing the temperature dependences of Ср~(T) and the thermodynamic functions So (T), Ho (T) — Ho (298.15) and Фхх(Т) of the investigated titanium-manganite lanthanum and calcium are calculated. The standard heat capacity of LaСаTiMnO6 is also calculated using the Debye method, the value of which is in good agreement with experimental data. According to the developed methodology, the standard enthalpy of titanium-manganite formation was calculated, equal to — 3867.5 kJ/mol
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