首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Peculiarities of some mafic-ultramafic- and ultramafic-hosted massive sulfide deposits from the Main Uralian Fault Zone, southern Urals
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Peculiarities of some mafic-ultramafic- and ultramafic-hosted massive sulfide deposits from the Main Uralian Fault Zone, southern Urals

机译:来自乌拉尔南部乌拉尔主断层带的一些镁铁质-超镁铁质和超镁铁质岩性硫化物矿床的特殊性

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摘要

Some Cu-rich, mafic-ultramafic- and ultramafic-hosted massive sulfide deposits from the southern segment of the Main Uralian Fault Zone (Ivanovka and Ishkinino deposits, southern Urals) show unusual characteristics. Their major features include: (i) relatively high Co (Ni, Au), very low Zn and negligible Pb grades; (ii) a pyrrhotite-dominated mineralization, locally characterized by the presence of open-latticework aggregates of lamellar pyrrhotite with Mg-saponite±Mg-chlorite and carbonate matrix; (iii) hydrothennal alteration of ultramafic host rocks into talc±carbonate±quartz±chlorite and of mafic host rocks into chloritites; (iv) the presence of clastic facies with reworked sulfide and ultramafic or mafic components; (v) the widespread occurrence of sulfide-associated chromite; (vi) the specific mineralogy of Co, Ni, Fe and As, including sulfoarsenides, mono- and diarsenides, and Co-rich pentlandite and pyrite; (vii) the supra-subduction-zone geochemical signature of the host serpentinites and volcanic rocks. Although some of these features have been separately reported in certain modern ocean-seafloor and ophiolite-hosted fossil deposits, a true equivalent has yet to be found. Based on recognized partial analogies with a few modern seafloor examples, the arc tholeiitic-boninitic geochemical signature of sulfide-associated volcanic rocks and the highly refractory compositions of sulfide-hosted chromite relicts, the studied deposits are believed to have formed by seafloor-subseafloor hydrothennal processes in an oceanic island arc setting. Possible tectonostratigraphic correlation of sulfide-associated units with infant, non-accretionary arc volcanic units of the adjacent Magnitogorsk oceanic island-arc system suggests formation of the studied deposits during the earliest stages of Devonian subduction-related volcanism.
机译:一些来自主乌拉尔断层带南部段的富铜,镁铁矿-超镁铁质和超镁铁质的块状硫化物矿床(乌拉尔南部的伊万诺夫卡和伊什基尼诺矿床)表现出不同寻常的特征。它们的主要特征包括:(i)较高的Co(Ni,Au),非常低的Zn和可忽略的Pb级; (ii)以黄铁矿为主的矿化,其局部特征是存在层状黄铁矿与镁皂石±镁亚氯酸盐和碳酸盐基质的开晶格聚集体; (iii)将超镁铁质基质岩石的水热蚀变转变为滑石粉,碳酸盐岩,石英,亚氯酸盐,而镁铁质基质岩石的水热作用转变为绿泥石; (iv)碎屑相中含有返工的硫化物和超镁铁质或镁铁质成分; (v)与硫化物有关的亚铬酸盐的广泛存在; (vi)Co,Ni,Fe和As的特定矿物学,包括磺化砷化物,一砷和二砷化物以及富钴的五氧化二锰矿和黄铁矿; (vii)主体蛇纹岩和火山岩的超俯冲带地球化学特征。尽管其中一些特征已在某些现代海洋海底和蛇绿岩类化石沉积物中单独报告,但尚未发现真正的等同特征。根据公认的部分类比,并结合一些现代海底实例,与硫化物有关的火山岩的弧形张性-贝尼特地球化学特征以及硫化物寄主的铬铁矿遗物的高耐火成分,认为该研究沉积物是由海底-海底-亚热带水热形成的。海洋岛弧形环境中的过程。硫化物相关单元与邻近的马格尼托哥斯克海洋岛屿-弧形系统的婴儿,非增生弧形火山单元的构造地层学相关性表明,在泥盆纪俯冲相关火山作用的最早阶段就形成了研究沉积物。

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