诺里尔斯克1号侵入岩中苦绿质和滑石质辉长白云岩中硫化物和PGE矿物的分布

N. Tolstykh, J. García, G. Shvedov
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引用次数: 2

摘要

研究了诺里尔斯克1岩体中的浸染状矿石,阐明了苦橄辉长榴辉岩和滑石(或下橄榄石)辉长榴辉岩中硫化物和贵金属矿化的标型特征。前者主要发育低硫硫化物组合(三黄铁矿、富铁镍黄铁矿、滑石、辉铜矿、原生铜),后者主要发育高硫组合(单斜磁黄铁矿、富镍镍镍黄铁矿、黄铁矿、黄铁矿)。这些岩石类型之间的接触在地球化学和矿物学上形成对比。矿石中铜(和黄铜矿)含量随结晶温度的降低而增加,镍(硫铁矿)和硫(磁黄铁矿)的含量随结晶温度的降低而增加,硫逸度随结晶温度的降低而增加,矿物地球化学和地球化学的分带性也随结晶温度的降低而增加。苦橄岩和橄榄石辉长白云岩中Pd(Pt)矿化分带均匀,其特征为:Pd- sn化合物(与苦橄岩中的Pd- pb矿物一起)在剖面上部分布,Pd- as化合物在剖面下部按温度递减分布。这种反向分带与典型的分异结晶分异机制相矛盾,可能显示出流体-岩浆的性质。铂族元素- cu - ni含岩的矿物学和地球化学特征与诺里尔斯克地区不同组成的基性-超基性岩浆多脉冲侵入的不同阶段形成了辉长岩和滑石辉长岩的观点一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distribution of sulfides and PGE minerals in the picritic and taxitic gabbro-dolerites of the Norilsk 1 intrusion
Disseminated ores in the Norilsk 1 intrusion were studied to elucidate the typomorphic features of sulfides and noble metal mineralizations in picritic and taxitic (or lower olivine) gabbro-dolerites. The former are characterized by the development of a low-sulfur sulfide association (troilite, Fe-rich pentlandite, talnakhite, chalcocite, native copper) while the latter exhibits a high-sulfur association (monoclinic pyrrhotite, Ni-rich pentlandite, pyrite, heazlewoodite). The contact between these types of rocks is geochemically and mineralogically contrasting. The mineralogical and geochemical zoning directed from the roof to the base of each layer is expressed by an increase in the Cu content (and chalcopyrite) in ores, an increase in the concentration of Ni in pentlandite and S in pyrrhotite in line with a decrease of the crystallization temperature, and an increase in sulfur fugacity in the same direction. Zoning of Pd(Pt) mineralization in picritic and taxitic (olivine) gabbro-dolerites is uniform and characterized by the distribution of Pd-Sn compounds in the upper parts (together with Pd-Pb minerals in picritic rocks) and Pd-As compounds in the lower parts of the sections according to a drop in temperature. Such reverse zoning contradicts the typical mechanism of differentiation by fractional crystallization, and possibly suggests a fluid-magmatic nature. Mineralogical and geochemical features in platinum group element-Cu-Ni-bearing rocks are consistent with the idea that different stages of multi-pulse intrusions of mafic-ultramafic magmas with different compositions formed the picritic and taxitic gabbro-dolerites of the Norilsk region.
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