Особенности структур распада твердого раствора Cu-Ag cульфидов на месторождении Теплое (Северо-Восток России)

I. A. Bryzgalov, N. Savva, O. V. Kononov, A. Volkov, Moscow Geochemistry Ras
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Abstract

The authors consider features of the triple structure of Ag-Cu-S solid solution decomposition resulted from redistribution of matter in the ores of the epithermal Au-Ag Teploye deposit due to the spatial combination of volcanogenic Au-Ag mineralization, with relatively later copper porphyry. The discovery of the mckinstryite, copper-silver sulfide, permits to consider the occurrence of copper in acanthite a non-structural impurity element, while the term "cupreous acanthite" appears insufficiently substantiated. It has been suggested that the mckinstryite-jalpaite (+ acanthite) structure was formed not by the decomposition of a solid solution or the crystallization of a normal hydrothermal solution, but but in the course of solidification of the sluggish, viscous, colloid-like substance in a metastable environment under low-temperature conditions, and was accompanied by structural rearrangement of its mineral constituents.
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认为该浅成热液型金银矿床由于火山成因金银矿化的空间组合,导致矿石中物质重分配,形成Ag-Cu-S固溶体分解的三重结构特征,铜斑岩相对较晚。铜银硫化物的发现,使我们认为在棘长岩中存在的铜是一种非结构性杂质元素,而“铜棘长岩”一词似乎没有充分的根据。本文认为,镁辉石-钾辉石(+刺长石)结构不是由固溶体分解或正常水热溶液结晶形成的,而是在亚稳环境下缓慢、粘稠、胶状物质在低温条件下凝固过程中形成的,并伴有矿物成分的结构重排。
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