首页> 外文OA文献 >Lead-antimony sulfosalts from tuscany (Italy). XX. Members of the jordanite–geocronite series from the pollone mine, valdicastello carducci: Occurrence and crystal structures
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Lead-antimony sulfosalts from tuscany (Italy). XX. Members of the jordanite–geocronite series from the pollone mine, valdicastello carducci: Occurrence and crystal structures

机译:来自托斯卡纳(意大利)的铅锑硫盐。 XX。花粉矿Valdicastello carducci的约旦石-晶石系列成员:发生和晶体结构

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摘要

A crystal-chemical study of historical specimens as well as new ones belonging to the jordanite–geocronite series from the Pollone baryte + pyrite ± (Pb-Zn-Ag) ore deposit (Valdicastello Carducci, Apuan Alps, Tuscany, Italy) has been performed. These crystals were collected in quartz extension veins embedded in three different occurrences: (i) baryte + pyrite orebodies; (ii) schist layers interbedded between baryte + pyrite orebodies; and (iii) schists at the contact with pyrite-poor baryte orebodies. Electron-microprobe data indicated the occurrence of three distinct groups of compositions within the sample suite. These correspond to As-bearing geocronite, Sb-rich jordanite, and Sb-bearing jordanite, with mean compositions Pb14Sb3.8As2.2S23, Pb14Sb2.9As3.1S23, and Pb14Sb2.6As3.4S23, respectively. Crystals representative of these different compositions have been investigated through single-crystal X-Ray diffraction studies and their crystal structures have been solved to R1 = 0.078, 0.069, and 0.033, respectively. The unit-cell volume decreases passing through As-bearing geocronite (V = 2149.5(3) Å3) to Sb-bearing jordanite (V = 2132.3(3) Å3). The As-to-Sb substitution takes place preferentially at the Sb4 site; through the increasing of the Sb content, Sb can substitute As also at the As6 site. According to the structural study of the ore deposit, formation of jordanite–geocronite is subordinated to a late Alpine deformative D2 stage, which permitted in situ remobilization of preexisting sulfide ore in small quartz extension veins. Such a local recrystallization would explain the variability of the As/(As + Sb) ratio of the members of the jordanite series, reflecting the heterogeneity of the orebody.
机译:进行了对历史标本以及新的属于Pollone重晶石+黄铁矿±(Pb-Zn-Ag)矿床(Valdicastello Carducci,Apuan Alps,托斯卡纳,意大利)的约旦石-新纪酸盐系列的晶体化学研究。 。这些晶体收集在石英延伸脉中,并以三种不同的形式嵌入:(i)重晶石+黄铁矿体; (ii)片岩层夹在重晶石+黄铁矿矿体之间; (iii)与贫黄铁矿重晶矿体接触片岩。电子探针数据表明在样品套件中出现了三组不同的组合物。这些分别对应于含砷的大锰矿,富Sb的约旦石和含Sb的约旦石,其平均组成分别为Pb14Sb3.8As2.2S23,Pb14Sb2.9As3.1S23和Pb14Sb2.6As3.4S23。已通过单晶X射线衍射研究了代表这些不同组成的晶体,并将其晶体结构分别解析为R1 = 0.078、0.069和0.033。晶胞体积通过含As的大锰矿(V = 2149.5(3)Å3)到含Sb的约旦石(V = 2132.3(3)Å3)减少。从头到尾的置换优先发生在Sb4位点;通过增加Sb的含量,Sb可以在As6位点替代As。根据矿石矿床的结构研究,约旦石-闪锌矿的形成服从于晚期的D2变形阶段,该阶段允许在小的石英延伸脉中原位迁移硫化矿。这样的局部重结晶可以解释约旦石系列成员的As /(As + Sb)比的变化,反映出矿体的异质性。

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