Microimpurities in pyrite of gold ore occurrences of the Manitanyrd ridge (the Polar Urals)

L.I. Efanova, N.S. Kovalchuk, Tatyana Mayorova
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Abstract

The microelement composition was studied of pyrite, the main concentrator of gold in sulfidization zones in ore occurrences of the Manitanyrd Ridge. The ore mineralization is assigned to the gold-sulfide-quartz vein and gold-sulfide types. We determined a wide range of ore-forming elements, associated with gold in pyrite. These elements correspond to geochemical features of the late galena-chalcopyrite-sphalerite mineral assemblage of the ore process, as well as to its final stage expressed in the appearance of elements reflecting the mineralogy of gray ores and bismuth sulfosalts. Pyrites from the vein and mineralized zones, from the ores of the deposit and from the secondary lithochemical anomalies, were found to contain the same set of the gold satellite elements: Ag, Cu, Zn, Pb, As. In pyrite of the gold-sulfide-quartz veins, Au has close correlations with the main elements of the ore association. In pyrite of the mineralized zones, all the correlations between Au and the ore-forming elements are absent. The pair-wise correlation between the ore-forming elements in these zones also changes completely. It is demonstrated that the identified differences in correlations between Au and the ore-forming elements in pyrite are a criterion for assessment of the lithochemical anomalies and allow one to propose a strategy of prospecting for new ore objects in the Manitanyrd region.
曼尼塔尼尔德山脊(极地乌拉尔)金矿矿点黄铁矿中的微杂质
对黄铁矿的微量元素组成进行了研究,黄铁矿是曼尼塔尼尔德山脊矿点硫化带中金的主要富集物。矿化被归类为金-硫化物-石英脉和金-硫化物类型。我们测定了黄铁矿中与金有关的多种成矿元素。这些元素与矿石形成过程中晚期方铅矿-黄铜矿-闪锌矿矿物组合的地球化学特征相吻合,也与矿石形成过程的最后阶段相吻合,这些元素的出现反映了灰色矿石和硫化铋矿的矿物学特征。从矿脉和矿化带、矿床矿石和次生岩石化学异常中发现的黄铁矿含有同一组金卫星元素:银、铜、锌、铅、砷。在金-硫化物-石英矿脉的黄铁矿中,金与矿石关联的主要元素密切相关。在矿化带的黄铁矿中,金与成矿元素之间不存在任何关联。这些矿化带中成矿元素之间的成对相关性也完全改变。研究表明,黄铁矿中金与成矿元素之间已确定的相关性差异是评估岩石化学异常的一个标准,并使人们能够提出在马尼塔尼尔德地区勘探新矿石的战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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