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Nickel-rich metasomatism of the lithospheric mantle by pre-kimberlitic alkali-S-Cl-rich C-O-H fluids

机译:金伯利特碱前富含S-Cl的C-O-H流体对岩石圈地幔的富镍交代作用

摘要

Metasomatism of the lithospheric mantle sometimes produces unusual assemblages containing native metals and alloys, which provide important insight into metasomatic processes in the mantle. In this study, we describe the metasomatic enrichment of a refractory harzburgite xenolith in Ni, Fe and, to a lesser extent, Cu, Co, As and Sb. The xenolith (XM1/422) derives from the Bultfontein kimberlite (Kimberley, South Africa) and hosts Ni mineralisation that includes native nickel (Ni₈₄.₅₋₉₈.₀), heazlewoodite (Ni₃S₂) and Ni-rich silicates (e.g. up to 37.5 wt % NiO in olivine, and 22.4 wt % NiO in phlogopite). The presence of several mineral phases enriched in alkali and volatile species (e.g. phlogopite, phosphates, carbonates, chlorides, djerfisherite) indicates that the transition metal cations were likely introduced during metasomatism by alkali-rich C–O–H fluids or alkali-carbonate melts. It is postulated that sulphide breakdown and fluid reaction with refractory mantle rocks contributed to the fluid's enrichment in Ni and other metallic cations. The Ni-rich assemblages of xenolith XM1/422 show local chemical disequilibrium, and modelling of the Ni diffusion profiles adjacent to olivine-native nickel and olivine-heazlewoodite grain boundaries, suggests a close temporal relationship between Ni-rich metasomatism and subsequent entrainment by the kimberlite magma. However, metal-rich metasomatism has also been observed in other lithospheric mantle domains, including orogenic peridotitic massifs and the suboceanic mantle; regions unaffected by kimberlite magmatsim. As micro-scale occurrences of metallic phases are easily overlooked, it is possible that metal-rich metasomatism is more widespread in the Earth's mantle than previously recognised.
机译:岩石圈地幔的交代作用有时会产生包含天然金属和合金的异常组合,这为了解地幔的交代过程提供了重要的见识。在这项研究中,我们描述了难熔哈氏石异种体在Ni,Fe和少量Cu,Co,As和Sb中的交代富集。异种石(XM1 / 422)来自Bultfontein金伯利岩(南非金伯利),并具有Ni矿化作用,其中包括天然镍(Ni₈₄.₅₋₉₈.₀),杂锌矿(Ni₃S2)和富镍硅酸盐(例如高达37.5)橄榄石中的重量百分比为NiO,金云母中的重量百分比为22.4 wt%。几种富含碱和挥发性物质的矿物相(例如金云母,磷酸盐,碳酸盐,氯化物,墨翠石)的存在表明,过渡金属阳离子可能在交代过程中被富含碱的C–O–H流体或碱碳酸盐熔体引入。 。据推测,硫化物的分解和与难熔地幔岩石的流体反应有助于流体中镍和其他金属阳离子的富集。 Xenolith XM1 / 422的富Ni组合物表现出局部化学不平衡,并且模拟与橄榄石本色的镍和橄榄石-杂锌矿晶界相邻的Ni扩散曲线,表明富Ni交代作用与随后夹杂物的夹带之间存在紧密的时间关系。金伯利岩浆。但是,在其他岩石圈地幔区域也观察到了富金属的交代作用,包括造山作用的橄榄岩地块和洋底幔;不受金伯利岩岩浆作用的地区。由于很容易忽略金属相的微观发生,因此,富含金属的交代作用可能比以前所认识的在地幔中的分布更为广泛。

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