首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Partial re-equilibration of highly siderophile elements and the chalcogens in the mantle: A case study on the Baldissero and Balmuccia peridotite massifs (Ivrea Zone, Italian Alps)
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Partial re-equilibration of highly siderophile elements and the chalcogens in the mantle: A case study on the Baldissero and Balmuccia peridotite massifs (Ivrea Zone, Italian Alps)

机译:地幔中高度嗜铁亲和元素和硫属元素的部分重新平衡:以巴尔迪塞罗和巴尔穆奇亚橄榄岩地块为例(意大利阿尔卑斯山伊夫雷亚地区)

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The conditions at which melt percolation and reactive infiltration of depleted mantle peridotites fractionate highly siderophile elements (HSE) and cause re-equilibration of ~(187)Os/~(188)Os in mantle rocks are still poorly constrained. In a comparative study of the Paleozoic Balmuccia (BM) and Baldissero (BD) peridotite tectonites (Ivrea-Verbano Zone, Northern Italy), the influence of partial melting and melt infiltration on abundances of HSE, chalcogens (S, Se and Te) and ~(187)Os/~(188)Os have been studied.At BM, Re depletion ages (TRD) of lherzolites and replacive dunites display a uniform distribution with a maximum near 400-500Ma. BD peridotites also display a Paleozoic distribution peak but a significant number of samples yielded Proterozoic TRD. The predominance of Paleozoic Re depletion ages in both bodies is consistent with Sm-Nd ages and the late Paleozoic magmatic and geodynamic evolution of the Ivrea-Verbano Zone. The different extents of preservation of ancient ~(187)Os/~(188)Os in BM and BD peridotites are interpreted to reflect different degrees of isotopic homogenization and chemical re-equilibration with incompatible element-depleted infiltrating melt during the Paleozoic. The differences between the two bodies are also reflected by differences in HSE and chalcogen abundances, with BD displaying large scatter among HSE patterns, slight re-enrichment of Re relative to Au, and linear trends of Pd, Se and Te with Al_2O_3. The differences in distributions of model ages and heterogeneity in HSE abundances support the view that the lithophile element, HSE and chalcogen variations of different suites of lherzolites likely reflect different extents of reactive melt infiltration in mantle peridotites, with partial re-equilibration and melt extraction in open system environments. However, the variable re-equilibration of BM and BD lherzolites apparently did not produce significant differences in HSE ratios such as Os/Ir, Ru/Ir, Rh/Ir, and Pd/Pt, which are in the range of primitive mantle values, whereas Au, Re and S are somewhat depleted.The good linear correlation of S with Al_2O_3 in both suites reflects sulfide removal controlled by sulfur solubility in silicate melt, or co-precipitation with pyroxenes and spinel, and indicates very similar bulk partition coefficients for S and Al. S/Se and Se/Te in the lherzolites change little with decreasing Al_2O_3. Results for BM lherzolites are consistent with sulfide-silicate melt partitioning as the dominant control on abundances of the HSE, S, Se and Te during low to moderate degrees of melt extraction (DPt>DPd>DTe≥DSe≥DS≈DRe).Replacive dunites at Balmuccia have low abundances of Re, Au, Pd and chalcogens, but variable and higher abundances of Os, Ir and Ru, high S/Se and Se/Te, yet ~(187)Os/~(188)Os similar to BM lherzolites. The residual HSE and chalcogen compositions differ from those in dunites of subduction-related ophiolites. The composition and contact relations of the BM dunites with the host rocks likely reflect focused flow of sulfur-undersaturated melt after open system melting and re-equilibration of the lherzolites. The compositional record of the Balmuccia massif thus reflects the composition of different types of melts and their interaction with the peridotites at different P-T conditions.
机译:贫化地幔橄榄岩的熔体渗流和反应渗透作用分馏出高度嗜铁元素(HSE)并导致地幔岩石中〜(187)Os /〜(188)Os重新平衡的条件仍然受到严格限制。在对古生代Balmuccia(BM)和Baldissero(BD)橄榄岩构造体(意大利北部Ivrea-Verbano区)的比较研究中,部分熔融和熔体渗透对HSE,硫族元素(S,Se和Te)的丰度和对〜(187)Os /〜(188)Os进行了研究。在BM时,锂铁矿和置换双金属的Re尽年龄(TRD)显示出均匀的分布,最大值在400-500Ma附近。 BD橄榄岩也显示出古生代分布峰,但是大量样品产生了元古生代TRD。在这两个矿体中,古生代Re废年龄占优势,与Sm-Nd年龄以及Ivrea-Verbano带晚古生代岩浆和地球动力学演化相一致。解释了BM和BD橄榄岩中古代〜(187)Os /〜(188)Os的不同保存程度反映了古生代期间同位素不均质贫化的渗透熔体的同位素均化程度和化学重新平衡程度。 HSE和硫属元素丰度的差异也反映了这两个物体之间的差异,其中BD在HSE模式之间表现出较大的分散性,相对于Au的Re略微富集,以及Al_2O_3的Pd,Se和Te的线性趋势。 HSE丰度中模型年龄分布和非均质性分布的差异支持这样的观点,即不同组锂铁矿的亲石元素,HSE和硫属元素的变化可能反映了地幔橄榄岩中反应性熔体渗透的不同程度,并在一定程度上重新平衡了地幔橄榄岩开放系统环境。但是,BM和BD锂沸石的可变重新平衡显然不会在HSE比率(例如Os / Ir,Ru / Ir,Rh / Ir和Pd / Pt)中产生明显的差异,这些差异在原始地幔值的范围内,两组中S与Al_2O_3的良好线性相关性反映了硫在硅酸盐熔体中的溶解度或与辉石和尖晶石的共沉淀所控制的硫化物去除,并且表明S的体积分配系数非常相似和铝。随着Al_2O_3的减少,锂沸石中的S / Se和Se / Te变化不大。 BM锂铁矿的结果与硫化物-硅酸盐熔体分配是一致的,这是对中低度熔体萃取(DPt> DPd>DTe≥DSe≥DS≈DRe)中HSE,S,Se和Te丰度的主要控制。 Balmuccia中的二元组具有较低的Re,Au,Pd和硫属元素丰度,但是Os,Ir和Ru的丰度较高且可变,较高,S / Se和Se / Te较高,但〜(187)Os /〜(188)Os与BM锂铁矿。残留的HSE和硫属元素组成与俯冲有关的蛇绿岩的单位不同。 BM dunits与基质岩石的组成和接触关系很可能反映了在开放体系熔融和锂铁矿重新平衡后,硫不饱和熔体的集中流动。因此,Balmuccia地块的成分记录反映了不同类型熔体的成分以及它们在不同的P-T条件下与橄榄岩的相互作用。

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