首页> 外文期刊>International Geology Review >Melt-peridotite interaction in the shallow lithospheric mantle of the North China Craton: evidence from melt inclusions in the quartz-bearing orthopyroxene-rich websterite from Hannuoba
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Melt-peridotite interaction in the shallow lithospheric mantle of the North China Craton: evidence from melt inclusions in the quartz-bearing orthopyroxene-rich websterite from Hannuoba

机译:华北克拉通浅层岩石圈地幔中的橄榄岩-橄榄岩相互作用:来自汉诺巴的富含石英的富含邻苯二茂铁的菱镁矿中熔融包裹体的证据

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摘要

To better understand the origin, migration, and evolution of melts in the lithospheric mantle and their roles on the destruction of the North China Craton (NCC), we conducted a petrological and geochemical study on a quartz-bearing orthopyroxene-rich websterite xenolith from Hannuoba, the NCC, and its hosted melt and fluid inclusions. Both clinopyroxene and orthopyroxene in the xenolith contain lots of primary and secondary inclusions. High-temperature microthermometry of melt inclusions combined with Raman spectroscopy analyses of coexisting fluid inclusions shows that the entrapment temperature of the densest inclusions was ~1215°C and the pressure -11.47 kbar, corresponding to a depth of ~38 km, i.e. within the stability of the spinel lherzolite. Intermediate pressure inclusions probably reflect progressive fluid entrapment over a range of depths during ascent, whereas the low-pressure inclusions (P < 2 kbar) may represent decrepitated primary inclusions. In situ laser-ablation ICP-MS analyses of major and trace elements on individual melt inclusions show that the compositions of these silicate melt inclusions in clinopyroxene and orthopyroxene are rich in SiO_2, Al_2O_3, and alkalis but poor in TiO_2 and strongly enriched in light rare earth elements (LREEs) and large ion lithophile elements (LILEs), with negative anomalies of high-field strength elements (HFSEs). These characteristics suggest that the silica-rich melts could be derived from the partial melting of subducted oceanic slab. Therefore, this kind of quartz-bearing orthopyroxene-rich websterite may be produced by interaction between the slab-derived melts with the mantle peridotite. This study provides direct evidence for the origin, migration, and evolution of melts in the lithospheric mantle, which may play an important role in the destruction of the NCC.
机译:为了更好地了解岩石圈地幔中熔体的起源,迁移和演化及其在华北克拉通(NCC)破坏中的作用,我们对汉诺巴州的一个含石英的富含邻苯二茂基的辉石红柱石进行了岩石学和地球化学研究。 ,NCC及其托管的熔体和流体包裹体。异种岩中的次氯吡喃和邻二甲苯都含有大量的一级和二级夹杂物。熔融夹杂物的高温显微热度法和共存流体夹杂物的拉曼光谱分析表明,最稠密夹杂物的包封温度为〜1215°C,压力为-11.47 kbar,对应于约38 km的深度,即在稳定范围内尖晶石锂铁矿。中压夹杂物可能反映了上升过程中一定深度范围内流体的逐步夹带,而低压夹杂物(P <2 kbar)可能代表了腐烂的主要夹杂物。 ICP-MS原位激光烧蚀ICP-MS分析单个熔体夹杂物中的主要和微量元素,结果表明这些斜硅ino和邻苯二酚中的硅酸盐熔体夹杂物的成分富含SiO_2,Al_2O_3和碱,而TiO_2较差,并且极富于稀有光稀土元素(LREE)和大型离子亲石元素(LILE),而高场强元素(HFSE)为负异常。这些特征表明,富含二氧化硅的熔体可能来自俯冲的海洋板块的部分熔融。因此,可以通过衍生自平板的熔体与地幔橄榄岩之间的相互作用来生产这种富含石英的富含邻苯二茂基的韦氏体。该研究为岩石圈地幔中熔体的起源,迁移和演化提供了直接证据,这可能在NCC的破坏中起重要作用。

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