首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Compositionally heterogeneous podiform chromitite in the Shetland Ophiolite Complex (Scotland): Implications for chromitite petrogenesis and late-stage alteration in the upper mantle portion of a supra-subduction zone ophiolite
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Compositionally heterogeneous podiform chromitite in the Shetland Ophiolite Complex (Scotland): Implications for chromitite petrogenesis and late-stage alteration in the upper mantle portion of a supra-subduction zone ophiolite

机译:设得兰蛇绿岩复合体(苏格兰)中的成分不均匀的梯形铬铁矿:对超俯冲带蛇绿岩中铬铁矿成岩和后期蚀变的影响

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The mantle sequence of the -492 Ma Shetland Ophiolite Complex (SOC; Scotland) contains abundant compositionally heterogeneous podiform chromitite bodies enclosed in elongate dunite lenses in the vicinity of the petrological Moho. Chromitite petrogenesis and late-stage alteration events recorded in these seams are examined here using petrography, mineral chemistry and crystal structural data. The resistant nature of Cr-spinel to serpentinisation and other late-stage alteration means that primary igneous compositions are preserved in unaltered crystal cores. Chromitite mineralogy and texture from five sampled localities at The Viels, Hagdale, Harold's Grave, Nikka Vord and Cliff reveal significant inter-pod chemical heterogeneity. The Cr-spinel mineral chemistry is consistent with supra-subduction zone melt extraction from the SOC pe-ridotites. The occurrence of chromitite seams in the centres of the dunite lenses combined with variable Cr-spinel compositions at different chromitite seam localities supports a model of chromitite formation from spatially (and temporally?) fluctuating amounts of melt-rock interaction through channelised and/or porous melt flow. Pervasive serpentinisation of the SOC has led to the almost complete replacement of the primary (mantle) silicate mineral assemblages with serpentine (lizardite with minor chrysotile and antigorite). Magmatic sulphide (e.g., pentlandite) in dunite and chromitite is locally converted to reduced Ni-sulphide varieties (e.g., heazlewoodite and millerite). A post-serpentinisation (prograde) oxidisation event is recorded in the extensively altered Cliff chromitite seams in the west of the studied area, where chromitite Cr-spinel is extensively altered to ferritchromit. The ferritchromit may comprise >50% of the volume of the Cliff Cr-spinels and contain appreciable quantities of 1-2 um inclusions of sperrylite (PtAs2) and Ni-arsenide, signifying the coeval formation of these minerals with ferritchromit at temperatures of up to -500 °C. The SOC chromitite Cr-spinels thus not only preserve key insights into the complex melting processes occurring in the upper mantle wedge but can also be utilised to construct a comprehensive alteration history of the lower mantle portions of such supra-subduction zone ophiolites.
机译:-492 Ma Shetland Ophiolite Complex(SOC; Scotland)的地幔序列在岩石学莫霍面附近包含大量组成不均一的梯形铬铁矿体,并包裹在细长的榴辉晶状体中。在这里,使用岩相学,矿物化学和晶体结构数据来检查这些接缝中记录的铬铁矿成岩作用和后期蚀变事件。 Cr-尖晶石对蛇纹石化和其他后期改变的抗性意味着原始火成岩成分保留在未改变的晶体核中。来自The Viels,Hagdale,Harold's Grave,Nikka Vord和Cliff的五个采样地点的铬铁矿矿物学和质地显示出明显的豆荚间化学异质性。 Cr-尖晶石矿物化学与从SOC黑云母中超俯冲带的熔体萃取是一致的。在不同的铬铁矿接缝处,在辉光岩晶状体中心结合可变的Cr-尖晶石组成的铬铁矿接缝的出现,支持了一种铬铁矿形成的模型,该模型是通过通道化和/或多孔性的空间(和时间?)波动的熔岩相互作用形成的。熔体流动。 SOC的普遍蛇纹石化已导致蛇纹石(含少量温石棉和反蛇纹石的蜥蜴石)几乎完全替代了原始(地幔)硅酸盐矿物组合。褐闪石和铬铁矿中的岩浆硫化物(例如五碳铁矿)被局部转化为还原型的Ni硫化物品种(例如,杂锌矿和Millerite)。在研究区域西部发生大范围改变的克利夫铬铁矿接缝中记录了蛇纹石化后(高级)氧化事件,其中铬铁矿Cr-尖晶石被广泛地改变为铁铬铁矿。铁铬铁矿可占Cliff Cr-尖晶石体积的50%以上,并含有1-2 um的闪锌矿(PtAs2)和砷化镍夹杂物,这表明这些矿物与铁铬铁矿在温度高达90°C时同时形成。 -500°C。因此,SOC铬铁矿Cr-尖晶石不仅保留了对上地幔楔发生的复杂熔融过程的关键见解,而且还可以用于构建此类超俯冲带蛇绿岩下地幔部分的综合蚀变历史。

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