Thermoelectric Properties of Pyrite in the Supra-Ore Level of Gold Mineralization (Ukrainian Carpathians)

O. Kostyuk
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Abstract

The thermoelectric properties of different-aged generations of pyrite from Lostun (Chyvchyny ore region) Tukalo and Kamin-Kliovka (Лостунь, Тукало, Камінь-Кльовка) (Rakhiv ore region) ore manifestations are investigated. The research included traditional geological observations with the collection of samples of various hosting ores, together with mineralogical analysis measuring their reflective power and the thermo electro-motive force of pyrite. Two pyrite generations (pyrite I and pyrite II) have been revealed by the investigation’s results. The crystals belonging to the generations differ morphologically quite vividly (pyrite I has the form of a pentagonal dodecahedron, while pyrite II takes the form of a cube) and have different thermoelectrical properties. Pyrite I testifies to the fact that in the direction from the central parts of crystals with a pentagonal-dodecahedron tendency to its surface, the thermoelectrical properties essentially change. In particular, the central parts of pyrite I crystals have electron conductivity while its faces are mainly hole ones. Such essential changes of the pyrite thermoelectrical properties from the central parts of the crystals to their peripheral ones are probably mostly caused by quantitative changes of element admixtures in the crystalline lattice. However, the pyrite II thermoelectrical properties investigation results testify that this mineral has only hole-conductivity. Thus, in terms of general thermo-e.m.f. (electromagnetic field) as well as selections range, the thermoelectric properties of the pyrite from the Lostun and Tukalo ore manifestations and the Sauliak (Сауляк) auriferous deposit are similar. The comparative character of the pyrite thermoelectric properties from the investigated ore manifestations, the Sauliak deposit and other auriferous deposits testify to the supra-ore level of the gold mineralization in Tukalo and Lostun objects and make it possible to assume that erosion shear of the gold mineralization in Tukalo ore manifestation is similar to the Sauliak deposit erosive shear and is deeper in comparison to the Lostun ore manifestation. 
乌克兰喀尔巴阡山脉金矿超矿石层中黄铁矿的热电性质
研究了Lostun (Chyvchyny矿区)、Tukalo和Kamin-Kliovka (Лостунь, Тукало, Камінь-Кльовка) (Rakhiv矿区)不同年龄代黄铁矿的热电性质。这项研究包括传统的地质观测,收集了各种寄主矿石的样品,并进行了矿物学分析,测量了它们的反射功率和黄铁矿的热电动势。调查结果显示黄铁矿分为黄铁矿I代和黄铁矿II代。这几代的晶体在形态上差别很大(黄铁矿I为五边形十二面体,而黄铁矿II为立方体),具有不同的热电性质。黄铁矿I证明了这样一个事实,即从具有五边形-十二面体倾向的晶体的中心部分到其表面的方向,热电性质本质上发生了变化。特别是黄铁矿I型晶体的中心部分具有电子导电性,而其表面以空穴为主。黄铁矿热电性质从晶体中心到外围的本质变化,可能主要是由晶格中元素外加剂的数量变化引起的。然而,对黄铁矿II型热电性能的研究结果证明该矿物仅具有空穴导电性。因此,根据一般的热电动势。(电磁场)和选择范围表明,Lostun和Tukalo矿床黄铁矿的热电性质与Sauliak (Сауляк)含金矿床相似。通过与索利亚克矿床及其他含金矿床的黄铁矿热电性对比,证实了图卡洛和洛斯顿金矿的超矿化水平,并推测图卡洛金矿化的侵蚀剪切与索利亚克矿床的侵蚀剪切相似,且比洛斯顿金矿化表现更深。
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