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首页> 外文期刊>Geology of Ore Deposits: A Journal of Theoretical and Applied Papers on All Aspects of Ore Genesis >The Talgan Massive Sulfide Deposit,the Southern Urals,Russia,as an Example of Subseafloor Ore Deposition from Magmatic Fluid
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The Talgan Massive Sulfide Deposit,the Southern Urals,Russia,as an Example of Subseafloor Ore Deposition from Magmatic Fluid

机译:俄罗斯南部乌拉尔塔尔干块状硫化物矿床,以岩浆液中海底矿石沉积为例

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The sequence of orebody formation at the Talgan massive sulfide deposit;morphology of sulfide orebodies;mineralogy,texture,and structure of ore;chemical composition of minerals;and fluid inclusions and relationships between stable isotopes(S,C,O)in sulfides from ores and carbonate rocks are discussed.The deposit is localized in the Uzel'ga ore field of the northern Magnitogorsk Megazone.The sulfide ore is hosted in the upper felsic sequence of the Middle Devonian Karamalytash Formation,composed of basalt,basaltic andesite,and rhyodacite.Orebodies are irregular lenses lying conformably with host rocks.Pyrite,chalcopyrite,sphalerite,and fahlore are the major ore minerals;galena,bornite,and hematite are of subordinate abundance.Sulfide mineralization bears attributes of deposition under subseafloor conditions.The carbonate and rhyolite interlayers at the roofs of orebodies and the supraore limestone sequence served as screens.Zoning typical of massive sulfide deposits was not established.The study of fluid inclusions has shown that the temperature of the hydrothermal solution varied from 375 to 110°C.delta ~(34)S per thousand ranges from-2.4 to+3.2 per thousand in pyrite,from-1.2 to+2.8 per thousand in chalcopyrite,and from-3.5 to+3.0 per thousand in sphalerite(CDT).These parameters correspond to an isoto-pic composition of magmatic sulfur without a notable percentage of sulfate sulfur.delta 13C and delta ~(18)O of carbonates vary from-18.1 to+5.9 per thousand(PDB)and from+13.7 to+27.8 per thousand(SMOW),respectively.The carbon and oxygen isotopic compositions of carbonates from ores and host rocks markedly deviate from the field of marine carbonates;a deep source of carbon is suggested.The results obtained show that the main mass of polysulfide ore at the Talgan deposit was formed beneath the floor of a paleoocean.The ore-forming system was short-lived and its functioning did not give rise to the formation of zonal orebodies.Magmatic fluid played the leading role in mineral formation.
机译:塔尔干块状硫化物矿床的矿体形成顺序;硫化物矿体的形态;矿石的矿物学,质地和结构;矿物的化学成分;矿石中硫化物中的流体包裹体以及稳定同位素(S,C,O)之间的关系该矿床位于马格尼托哥尔斯克大区北部的乌泽尔加矿区。硫化物矿床位于中泥盆统卡拉马利塔什组的上长统层序中,由玄武岩,玄武质安山岩和流纹岩组成。矿体是不规则的晶状体,与宿主岩相吻合。黄铁矿,黄铜矿,闪锌矿和辉石是主要的矿产矿物;方铅矿,钠铁矿和赤铁矿是次要的丰度。在矿体的顶部和上层石灰岩层序作为筛网。尚未确定典型的块状硫化物矿床的分区。对流体包裹体的研究表明,水热溶液的温度在375至110°C之间变化。黄铁矿中δ〜(34)S /千的范围从-2.4至+ 3.2 /千,从-1.2至+ 2.8 /千在黄铜矿中,闪锌矿(CDT)中的含量从-3.5至+3.0。这些参数对应于岩浆硫的同位素组成,而没有明显百分比的硫酸盐硫。碳酸盐的δ13C和δ〜(18)O变化矿石和基质岩石中碳酸盐的碳和氧同位素组成分别明显偏离海洋碳酸盐领域,从-18.1至+5.9每千分之一(PDB)和从13.7至+27.8每千分之一(SMOW)。结果表明,塔尔干矿床中的多硫化物矿的主要物质在古生物的底下形成,成矿系统寿命短,并且其功能没有引起成矿作用。地带性矿体。矿物形成。

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