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首页> 外文期刊>Geoscience frontiers >Ancient depletion signals in lherzolites from forearc region: Constraints from Lu-Hf isotope compositions
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Ancient depletion signals in lherzolites from forearc region: Constraints from Lu-Hf isotope compositions

机译:来自Forearc地区的Lherzolites中的古代耗尽信号:Lu-HF同位素组合物的约束

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The sub-arc mantle that experienced hydrous melting is commonly characterized by refractory geochemical compositions. Nevertheless, minor lherzolites with fertile compositions have also been reported for mantle peridotites from subduction zone. The petrogenesis and mantle source of the lherzolites are still controversial. The New Caledonia ophiolite (Peridotite Nappe) has been regarded as an allochthonous body of forearc lithosphere. This is supported by refractory compositions of its dominant mantle rocks. A few isolated lherzolitic massifs have also been observed in the northern part of New Caledonia. Those lherzolites are compositionally similar to abyssal peridotites, with negligible subduction-related modification. Here, we present new comprehensive geochemical compositions, in particular high-precision Sr-Nd-Hf isotope data, for the lherzolites. The initial176Hf/177Hf ratios display moderate correlations with sensitive indicators for the extent of melting (i.e., olivine Fo, whole-rock Mg# and Yb contents in clinopyroxene) and whole-rock initial187Os/188Os ratios. Some samples have ancient radiogenic Hf isotopes and unradiogenic Os isotope compositions, implying the preservation of ancient depletion signals in the lherzolites. The Nd isotope compositions, together with trace elements and mineral micro-textures, suggest that the lherzolites have been overprinted by a recent melt-rock interaction event. The high equilibrium temperatures of the studied samples have been estimated by the two-pyroxene REE thermometer, yielding temperatures of 1066–1315?°C. The lherzolites have more depleted Nd-Hf isotope compositions and higher equilibrium temperatures than the New Caledonia harzburgites. This indicates that the lherzolites may represent the residues of asthenosphere mantle trapped within the forearc region. Our studies on the New Caledonia lherzolites with ancient depletion signals suggest that ancient mantle domains in the convective mantle can be emplaced in forearc region by the upwelling of asthenosphere during the early stage of subduction initiation.
机译:经过耐湿熔融的亚弧罩通常是难治性地球化学组合物的特征。然而,还据报道,来自俯冲区的Mantle Peridotites,还据报道了具有肥沃组成的轻微Lherzolites。 Lherzolites的纤维化和地幔源仍然存在争议。新的喀尔多尼亚植物(PeridoTite Nappe)被认为是Forearc岩石圈的表征体。这是其主导地幔岩石的耐火材料组合物支持。在新喀里多尼亚的北部也观察了一些分离的芦羊龙体重。那些Lherzolites与Abyssal PeridoTites合作地具有与剖视相关的修饰具有可忽略的俯冲相关的修饰。在这里,我们呈现出新的综合性地球化学组合物,特别是Lherzolites的高精度SR-ND-HF同位素数据。初始的176HF / 177HF比率显示与熔化程度的敏感指标的中等相关性(即橄榄石FO,整个岩石MG#和YB含量在临床中)和全岩初始187孔/ 188粒比。一些样品具有古代辐射性HF同位素和未致生的OS同位素组合物,暗示了Lherzolites中的古代耗尽信号的保存。 Nd同位素组合物与微量元素和矿物质微纹理表明,Lherzolites已经被最近的熔体岩石相互作用事件覆盖。研究了研究的样品的高平衡温度估计了两季碳酸丁烯温度计,屈服温度为1066-1315Ω·℃。 Lherzolites具有比新的Caledonia Harzburgites更耗尽的Nd-HF同位素组合物和更高的平衡温度。这表明LorzoLites可以代表捕获在前臂区域内的哮喘壁的残留物。我们对古代耗尽信号的新喀里多尼亚Lherzolites的研究表明,通过在俯冲开始的早期阶段的哮喘圈中,对流地幔中的古老地幔域可以在前臂区域储备。

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