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首页> 外文期刊>Mineralium Deposita >Diversity of platinum-group mineral assemblages in banded and podiform chromitite from the Kraubath ultramafic massif, Austria: evidence for an ophiolitic transition zone?
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Diversity of platinum-group mineral assemblages in banded and podiform chromitite from the Kraubath ultramafic massif, Austria: evidence for an ophiolitic transition zone?

机译:来自奥地利克劳巴特超镁铁质断层带状和梯形铬铁矿中铂族矿物组合的多样性:有一个玻璃质过渡带的证据吗?

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摘要

We report highly unusual platinum-group mineral (PGM) assemblages from geologically distinct chromitites (banded and podiform) of the Kraubath massif, the largest dismembered mantle relict in the Eastern Alps. The banded chromitite has a pronounced enrichment of Pt and Pd relative to the more refractory platinum-group elements (PGEs) of the IPGE group (Os, Ir, Ru), similar to crustal sections of ophiolites. On the contrary, the podiform chromitite displays a negatively sloping chondrite-normalised PGE pattern typical of ophiolitic podiform chromitite. The chemical composition of chromite varies from Cr# 73–77 in the banded type to 81–86 in the podiform chromitite. Thirteen different PGMs and one gold-rich mineral are first observed in the banded chromitite. The dominant PGM is sperrylite (53% of all PGMs), which occurs in polyphase assemblages with an unnamed Pt-base metal (BM) alloy and Pd-rich minerals such as stibiopalladinite, mayakite, mertieite II, unnamed Pd–Rh–As and Pd(Pt)–(As,Sb) minerals. This banded type also contains PGE sulphides (about 7%) represented by a wide compositional range of the laurite–erlichmanite series and irarsite (8%). Os–Ir alloy, geversite, an unnamed Pt–Pd–Bi–Cu phase and tetrauricupride are present in minor amounts. By contrast, the podiform chromitite, which yielded 21 different PGMs, is dominated by laurite (43% of all PGMs) which occurs in complex polyphase assemblages with PGE alloys (Ir–Os, Os–Ir, Pt–Fe), PGE sulphides (kashinite, bowieite, cuproiridsite, cuprorhodsite, unnamed (Fe,Cu)(Ir,Rh)2S4, braggite, unnamed BM–Ir and BM–Rh sulphides) and Pd telluride (keithconnite). A variety of PGE sulpharsenides (33%) including irarsite, hollingworthite, platarsite, ruarsite and a number of intermediate species have been identified, whereas sperrylite and stibiopalladinite are subordinate (2%). The occurrence of such a wide variety of PGMs from only two, 2.5-kg chromitite samples is highly unusual for an ophiolitic environment. Our novel sample treatment allowed to identify primary PGM assemblages containing all six PGEs in both laurite-dominated podiform chromitite as well as in uncommon sperrylite-dominated banded chromitite. We suggest that the geologically, geochemically and mineralogically distinct banded chromitite from Kraubath characterises the transition zone of an ophiolite, closely above the mantle section hosting podiform chromitite, rather than being representative of the crustal cumulate pile.
机译:我们报道了东阿尔卑斯山最大的肢解残骸克劳巴斯地块的地质上截然不同的铬铁矿(带状和豆状)极不寻常的铂族矿物(PGM)组合。相对于IPGE组(Os,Ir,Ru)中较难熔的铂族元素(PGE),带状铬铁矿具有显着的Pt和Pd富集,类似于蛇绿岩的地壳部分。相反,梯形铬铁矿显示出负斜率的球粒陨石归一化的PGE图案,典型的呈脂状梯形铬铁矿。亚铬铁矿的化学成分从带状的Cr#73-77到波状铬铁矿的81-86不等。首先在带状铬铁矿中观察到13种不同的PGM和一种富含金的矿物。 PGM占主导地位的是闪锌矿(占所有PGM的53%),它与一种未命名的Pt贱金属(BM)合金和富含Pd的矿物(如stibiopalladinite,mayakite,mertieite II,未命名的Pd–Rh–As和Pd(Pt)–(As,Sb)矿物。这种带状类型还包含PGE硫化物(约7%),其代表着广泛的月桂石-水硬石系列和铁矾石组成(8%)。少量存在Os-Ir合金,黄铁矿,未命名的Pt-Pd-Bi-Cu相和四脲。相比之下,产生21种不同PGM的波状铬铁矿以月桂酸酯(占所有PGM的43%)为主,月桂酸酯与PGE合金(Ir–Os,Os–Ir,Pt–Fe),PGE硫化物(钾钠石,鲍瓦石,铜锂铁矿,铜铁矿,未命名的(Fe,Cu)(Ir,Rh)2 S4 ,黄铜矿,未命名的BM–Ir和BM–Rh硫化物)和碲化钯(keithconnite)。现已鉴定出各种PGE硫砷化物(33%),包括三水铁石,hollingworthite,platarsite,红铁矿和许多中间物种,而锂闪石和stibiopalladinite是次要的(2%)。仅从两个2.5千克的铬铁矿样品中出现如此多种多样的PGM,对于脂石环境是非常不寻常的。我们新颖的样品处理技术可以鉴定出主要的PGM组合,其中既包含月桂酸酯为主的豆状亚铬铁矿,也包含不常见的以闪锌矿为主的带状铬铁矿中的全部六个PGE。我们认为,来自Kraubath的地质,地球化学和矿物学上明显不同的带状铬铁矿表征了蛇绿岩的过渡带,紧紧位于容纳梯形铬铁矿的地幔剖面上方,而不是代表地壳堆积体。

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