蒙古北部山德斑岩型铜钼矿床火成岩角砾岩体系

B. Ganbat, D. Odgerel, Dorjyunden Altankhuyag, Dorjgochoo Sanchir, Chikalov Altanzul, Gurdorj Azjargal
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引用次数: 0

摘要

山德铜钼矿床位于蒙古国北部鄂尔沁—色楞格坳陷。它位于Erdenetiin Ovoo斑岩型铜钼矿床附近,它们共同确定了北蒙古最具经济意义的成矿带之一。山德铜钼(金)矿床与斑岩花岗闪长岩侵入体伴生有几种与成矿相关的角砾岩类型,包括成矿前、成矿后、岩浆热液斑岩、侵入角砾岩。山德矿床在成因上至少可识别出岩浆-热液角砾岩和侵入角砾岩两种类型的热液角砾岩。岩浆热液角砾岩在空间上与侵入体相关,但向亚垂直方向延伸,其特征是角状碎片/碎屑支撑或充填由热液流体沉淀形成的矿物(如电气石、长石)、硅、碳酸盐和硫化物(Cu、Mo、(Au))基质,这些矿物通常具有高温、高盐度的特征。可向下进入侵入角砾岩和伟晶岩的冲天炉,这些冲天炉大约产于250-1300米深。侵入角砾岩多产于浅层边缘侵入体之间的接触处,主要由花岗闪长斑岩、花岗闪长岩和英安岩组成。我们的钻孔重测井和岩石学观测结果为花岗闪长岩型角砾岩和花岗闪长斑岩型角砾岩。本文通过详细的钻孔测井、岩石学观察等综合研究,阐明了山德岩浆热液角砾岩和侵入角砾岩的成因关系和演化过程。此外,我们认为岩浆角砾岩类型表明火成岩的侵位来自最初的英安质岩浆成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Igneous breccia system of the Shand porphyry Cu-Mo deposit, Northern Mongolia
The Shand Cu-Mo deposit is located in the Orkhon-Selenge depression, Northern Mongolia. It lies near the Erdenetiin Ovoo porphyry Cu-Mo deposit, which together define one of Northern Mongolian’s most economically significant metallogenic belts. In the Shand Cu-Mo (Au?) deposit, several ore related breccia types are associated with the porphyritic granodiorite intrusions, and they contain pre-, synand post-mineralized porphyry stocks, magmatic-hydrothermal and intrusive breccia. There are genetically at least two type of hydrothermal breccias have recognized in Shand deposit, i.e. magmatic-hydrothermal breccia and intrusive breccia. Magmatichydrothermal breccia is presented spatially associated with intrusions but extending sub vertical which characterized by angular fragments/clasts supported or infilled by minerals commonly indicative of high temperature and salinity (e.g. tourmaline, feldspar), silicas, carbonates and sulphides (Cu, Mo, (Au)) matrix derived from hydrothermal fluids precipitation. May grade downwards into cupolas of intrusive with or without intrusive breccia and pegmatite where occur at approximately deep from 250-1300 m depth. Intrusive breccia is mostly occurred in contact between margin intrusions at shallow depth which is mainly composed by granodiorite porphyry, granodiorite and dacite. Our drillhole relogging and petrographical observations are granodiorite hosted breccia and granodiorite porphyry hosted breccia. Here, we present an integrated study involving detailed drillhole logging, and petrographical observations to elucidate the genetic relationship and evolution of the Shand deposit for magmatic-hydrothermal breccia and intrusive breccia. Also, we propose that the magmatic breccia types indicate emplacement of igneous rocks from initially dacitic magma composition.
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CiteScore
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