首页> 外文期刊>European journal of mineralogy >Reactions involving famatinite and Fe-Zn tetrahedrite: Thermochemical evaluation of phase relations in the Cu-Fe-Sb-S and Cu-Zn-Sb-S end-member systems
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Reactions involving famatinite and Fe-Zn tetrahedrite: Thermochemical evaluation of phase relations in the Cu-Fe-Sb-S and Cu-Zn-Sb-S end-member systems

机译:涉及铁铁矿和Fe-Zn四面体的反应:Cu-Fe-Sb-S和Cu-Zn-Sb-S末端成员系统中相关系的热化学评估

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摘要

Monomineralic Fe-Zn tetrahedrite-tennantite (fahlore) veins from the historic silver mines of Brixlegg in the Inn Valley (North Tyrol, Austria) show replacement textures containing a newly formed mineral assemblage (enargite/luzonite-famatinite + chalcostibite + pyrite + sphalerite ± stibnite), resulting from fahlore breakdown. In order to deduce the T-log fS_2 conditions of this reaction, appropriate mineral equilibria in the Cu-Fe-Sb-S and Cu-Zn-Sb-S systems were calculated using available thermochemical data. The lack of thermochemical properties of famatinite (Cu_3SbS_4) made it necessary to perform a theoretical approximation, which yielded δG~(298) of -402.25 kJ mol ~(-1).This estimate was combined with thermochemical data of all other phases from the available literature. In the T-logfS2 space, phase equilibria indicate that rising fS2 and/or dropping T lead to the breakdown of Fe-Zn tetrahedritetennantite. However, uncertainties stemming from the theoretically estimated thermochemical properties of famatinite place the calculated reactions near or above the S2 condensation curve. Adjusting δG~(298) of famatinite to 3-5 % more negative DG298 f values shifts the reactions towards reasonable conditions, and places the stability fields of the observed mineral assemblages within the T- logfS2 window estimated by independent methods. This study therefore indicates that combination of existing thermochemical data and detailed mineralogical and petrological investigations on natural enargite/luzonite-famatinite-bearing assemblages may lead to meaningful T-logfS2 estimates. However, more experimental data on the thermochemical properties of famatinite are clearly needed.
机译:来自Inn山谷(奥地利北蒂罗尔)历史悠久的Brixlegg银矿的单矿物Fe-Zn四面体-tennantite(fahlore)脉显示出含有新形成的矿物组合的替代质地(斑arg /菱锰矿-辉铁矿+黄铜矿+黄铁矿+闪锌矿±辉石分解)。为了推论该反应的T-log fS_2条件,使用可获得的热化学数据计算了Cu-Fe-Sb-S和Cu-Zn-Sb-S系统中的适当矿物平衡。由于缺乏铁辉石(Cu_3SbS_4)的热化学性质,因此有必要进行理论上的近似,得出δG〜(298)为-402.25 kJ mol〜(-1)。现有文献。在T-logfS2空间中,相平衡表明fS2的升高和/或T的降低会导致Fe-Zn四面体钙钛矿的分解。然而,由于从理论上估算的铁水母的热化学性质而产生的不确定性使计算出的反应接近或高于S2冷凝曲线。将法铁矿的δG〜(298)调整为负DG298 f值的3-5%,可将反应移向合理的条件,并将观察到的矿物组合的稳定性场置于通过独立方法估算的T-logfS2窗口内。因此,这项研究表明,将现有的热化学数据与详细的矿物学和岩石学研究相结合,可以得出天然的镶铝辉石/含锂辉石-辉铁矿的组合,可能会产生有意义的T-logfS2估算值。但是,显然需要更多有关法铁矿热化学性质的实验数据。

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