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The Neoarchean ultramafic-mafic complex in the Yinshan Block, North China Craton: Magmatic monitor of development of Archean lithospheric mantle

机译:华北克拉通银山地块的新旧统超镁铁质-镁铁质复合体:太古代岩石圈地幔发育的岩浆监测仪

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Neoarchean ultramafic-mafic complexes are critical for characterizing the embryonic continental lithosphere and hence for arbitrating the extrapolation of plate tectonics into the Archean geology. This geochronological and geochemical study documents the newly identified amphibolite- to granulite-facies Xiwulanbulang (XWLBL) ultramafic-mafic complex in the Yinshan Block, North China Craton (NCC). It is composed mainly of meta-gabbro, hornblendite and serpentinite. SIMS U-Pb zircon dating on the later granite constrains a minimum formation age of similar to 2581 Ma for the complex, whereas the metamorphic zircons from the hornblendite and coexisting Icyanite-garnet gneiss yield a metamorphic age of similar to 2.50 Ga. The dominant meta-gabbros in the complex show an "MORB" composition, and characterized by an LREE-depleted to flat REE pattern, yet possessing prominent Nb, Zr and Ti depletions, which suggest dual geochemical features. Combined with their depleted epsilon(Nd) (t) isotope compositions (+1.77 to +2.23) and regional high temperature high Mg# basaltic magmatism, we suggest that they may have been produced by interaction of the upwelling asthenosphere with the metasomatized lithospheric mantle. Minor homblendites/pyroxenites that occurred in the complex display high MgO (13.6-20.2 wt.%), CaO (7.5-13.8 wt.%), Cr (475-2049 ppm) and Ni (154-859 ppm) contents, reflecting they have originated either as a crystal mush magma or high-degree partial melts of a mantle source. They show moderately fractionated REE patterns ((La/Yb)(N) =2.9-10.7) but depleted epsilon(Nd) (t) (+1.48 to +3.53) and zircon epsilon(Nf) (t) (up to +7.3) values. Considering their negative anomalies for Nb, Zr and Ti relative to neighboring REE, we suggest that the mantle source of the hornblendites was refractory depleted peridotite that experienced prior basaltic magma extraction followed by metasomatism of subduction-related fluids. Systematic variations trend in both major and trace elements between the hornblendites and the associated serpentinites support their genetic linkage. High CaO (0.7-6.9 wt.%) and Al2O3 (3.9-6.9 wt.%) contents but low Mg# (79-85) imply that the serpentinites were likely the cumulates segregated from the coexisting homblendite/pyroxenite magma instead of mantle peridotite. Taking into full account the regional tectono-thermal events, we conclude that the XWLBL ultramafic-mafic complex was produced in a Neoarchean subduction-related zone, which was more likely trigged by the upwelling asthenosphere mantle as a result of rollback of subducted oceanic lithosphere. (c) 2015 Elsevier B.V. All rights reserved.
机译:新陈代谢的超镁铁质-镁铁质复合物对于表征胚胎大陆岩石圈至关重要,因此对于将板块构造外推到太古代地质中也至关重要。这项地质年代和地球化学研究记录了新发现的华北克拉通(NCC)阴山地块的闪长岩-花岗石相西乌兰布朗(XWLBL)超镁铁质-镁铁质复合体。它主要由异辉石,角闪石和蛇纹石组成。 SIMS U-Pb锆石在较晚花岗岩上的年龄限制了该复合物的最小成矿年龄类似于2581 Ma,而来自角闪石和共存的Icyanite-石榴石片麻岩的变质锆石产生的变质年龄接近2.50 Ga。该复合物中的γ-辉长岩显示出“ MORB”组成,其特征是LREE耗尽到平坦的REE模式,但具有显着的Nb,Zr和Ti耗尽,这暗示了双重地球化学特征。结合其耗尽的epsilon(Nd)(t)同位素组成(+1.77至+2.23)和区域高温高Mg#玄武岩浆,我们认为它们可能是由上升流的软流圈与交化的岩石圈地幔相互作用而产生的。复合物中出现的次方辉绿岩/辉绿岩显示出高的MgO(13.6-20.2 wt。%),CaO(7.5-13.8 wt。%),Cr(475-2049 ppm)和Ni(154-859 ppm)含量,反映了它们起源于浆糊岩浆或地幔来源的高度部分熔融。它们显示出中等程度的REE模式((La / Yb)(N)= 2.9-10.7),但耗尽了epsilon(Nd)(t)(+1.48至+3.53)和锆石epsilon(Nf)(t)(最高+7.3) )值。考虑到Nb,Zr和Ti相对于邻近的REE的负异常,我们认为,角闪石的地幔来源是难熔贫化橄榄岩,其经历了先前的玄武岩浆提取,然后发生了俯冲相关流体的交代作用。角闪石和相关的蛇纹石之间主要和微量元素的系统变异趋势支持了它们的遗传联系。 CaO(0.7-6.9 wt。%)和Al2O3(3.9-6.9 wt。%)含量高,但Mg#(79-85)低,这表明蛇纹岩可能是从既有的辉绿岩/辉石岩浆中分离出来的堆积物,而不是地幔橄榄岩。充分考虑到区域构造热事件,我们得出结论,XWLBL超镁铁质-镁铁质复合物是在新古纪俯冲相关带中产生的,由于俯冲的海洋岩石圈的回滚,它可能被上升流的软流层地幔触发。 (c)2015 Elsevier B.V.保留所有权利。

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