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Thermodynamic and thermoelastic data of georesources raw minerals: Zinc sulphide and apatite

机译:Georate Role Raw Minerals的热力学和热弹性数据:硫化锌和磷灰石

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This article reports a dataset on the thermodynamic and elastic properties of two important raw minerals exploited in georesources and ore mining. The presented data refers to two zinc sulphide polymorphs, namely zinc-blende (low-pressure polymorph, space groupF4?3m) and rock-salt (high-pressure polymorph, space groupFm3?m) [1], and of type-A carbonated apatite, [CAp, Ca10(PO4)6CO3, space groupP1] [2]. The data here reported were calculated fromab initioquantum mechanical simulations at the DFT/B3LYP level, all-electron Gaussian-type orbitals basis sets and from the analysis of the phonon properties of the zinc sulphide polymorphs and of type-A CAp by means of the quasi-harmonic approximation. In addition, a correction to take into account the effects of dispersive forces was considered to obtain the dataset of type-A carbonated apatite. This dataset, which was validated against experimental thermodynamic data reported in literature, has been employed to construct the phase diagram between the two zinc sulphide polymorphs and discuss their stability over the temperature and pressure range 0–800 K and 0–25 GPa. The thermodynamic and thermoelastic data of CAp were obtained between 0 and 600 K and 0–3 GPa, below the temperature of thermal decomposition of the mineral. The reported data can be of use in several application fields, for instance fundamental georesource exploration and exploitation, and also in applied mineralogy, geology, material science, and as a reference to assess the quality of other theoretical approaches. Furthermore, the data of type-A carbonated apatite could be useful for designing and processing new biomaterials with tailored properties.
机译:本文报告了DataSet关于在岩石努力和矿石挖掘中利用的两个重要原始矿物质的热力学和弹性性质。呈递的数据是指两个硫化锌多晶型物,即锌 - 闪白(低压多晶型物,空间GroupF4 3M)和岩盐(高压多晶型物,空间GroupFM3ΔM)[1],以及碳酸的类型磷灰石,[帽,CA10(PO4)6Co3,空间GroupP1] [2]。这里报道的数据在DFT / B3LYP水平,全电子高斯型轨道基础集中计算出来自ABAB InitioQuantum机械模拟,以及通过准则分析硫化锌多晶型物的磷酸锌多晶型物的声子特性和分析 - 谐波近似。另外,考虑分散力的校正被认为是获得碳酸化磷灰石类型的数据集。已经采用该数据集进行验证,该数据集已用于在文献中报告的实验热力学数据,以构建两种硫化锌多晶型物之间的相图,并在0-800k和0-25GPa上讨论它们在温度和压力范围内的稳定性。帽的热力学和热弹性数据在0到600 k和0-3GPa之间获得,低于矿物质热分解的温度。报告的数据可以在几个应用领域中使用,例如基本地质源探索和剥削,以及应用矿物学,地质学,材料科学以及评估其他理论方法质量的参考。此外,碳酸化磷灰石的数据可用于设计和加工具有量身定制的新的生物材料。

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