Native selenium in the apical rocks of the Gaisky copper-pyrite deposit

A. I. Malyshev, L. Malysheva
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Abstract

Research subject. Selenium mineralization in altered rocks of the Gaisky deposit. Aim. Determination of formation conditions of native selenium in altered rocks. Results. Selenium mineralization is established in three zones of altered rocks in the sides of the 3rd quarry and is confined to the upper part of the sulfur-quartz rocks. Layers with a high content of native selenium and tiemannite are distinguished by a carbon-black color against the general background of yellow-green sulfur-quartz rocks, forming subvertical trickle textures. The maximum propagation of selenium mineralization was found in the southwestern zone of the quarry. Here, selenium-containing rocks are traced vertically by 6 m, forming a lens with a diameter of up to 70 cm. The accumulation of selenium occurs due to its physical properties. Selenium is similar to sulfur in volatility, although it undergoes more intense condensation under decreased temperatures. The accumulation of selenium condensate is facilitated by a silicic acid gel, which prevents the removal of selenium by a hydrothermal flow. Conclusion. The native selenium of the Gaisky deposit is characterized by a hydrothermal genesis, which, along with the presence of monoclinic native sulfur in the rocks, indicates the hydrothermal formation of the entire complex of altered rocks.
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盖斯基铜黄铁矿矿床顶部岩石中的原生硒
研究课题。盖斯基矿床蚀变岩中的硒矿化。目的。确定蚀变岩中原生硒的形成条件。结果。在第三采石场两侧的三个蚀变岩带中发现了硒矿化现象,且仅限于硫石英岩的上部。在黄绿色硫石英岩的总体背景下,原生硒和铁锰矿含量较高的岩层呈现出碳黑色,形成了近乎垂直的涓流纹理。采石场西南区的硒矿化传播速度最快。在这里,含硒岩石垂直延伸 6 米,形成一个直径达 70 厘米的透镜体。硒的堆积是由其物理特性决定的。硒的挥发性与硫相似,但在温度降低时会发生更强烈的凝结。硅酸凝胶促进了硒凝结物的积累,从而阻止了热液流对硒的清除。结论。盖斯基矿床的原生硒具有热液成因的特征,加上岩石中存在单斜原生硫,表明整个蚀变岩复合体是热液形成的。
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