首页> 外文期刊>Precambrian Research >Petrogenesis of Neoproterozoic adakitic tonalites and high-K granites in the eastern Songpan-Ganze Fold Belt and implications for the tectonic evolution of the western Yangtze Block
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Petrogenesis of Neoproterozoic adakitic tonalites and high-K granites in the eastern Songpan-Ganze Fold Belt and implications for the tectonic evolution of the western Yangtze Block

机译:松潘-甘孜褶皱带东部新元古代重金属同辉岩和高钾花岗岩的成因及其对扬子西段构造演化的启示

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The Gongcai and Qinganlin plutonic complexes in the Danba Domal Terrane, eastern Songpan-Ganze Fold Belt, consists of ca. 860 Ma adakitic tonalities and ca. 830 Ma high-K granites, respectively. Samples from the Gongcai complex have variable SiO2 (66.7-72.1 wt%), high Al2O3 (14.3-17.7 wt%), low alkalis (5.71-7.07 wt%), and high Sr (576-1309 ppm) and low Y (2.2-10.4 ppm) contents, similar to typical adakites. The Qinganlin complex possesses higher SiO2 (70.9-73.3 wt%) and lower Al2O3 (13.5-14.2 wt%), and variably higher K2O contents (1.2-3.8 wt%) than the Gongcai complex. On the chondrite-normalized REE diagram, both complexes are enriched in LREEs, but the Gongcai complex display strongly fractionated or concave patterns ((La/Yb)(N) = 7-33; (Gd/Yb)(N) =1.5-4.4) with weakly negative to slightly positive Eu-anomalies (Eu/Eu*= 0.89-1.25), while the rocks of the Qinganlin complex exhibit relatively flat HREE patterns ((La/Yb)(N) = 6-10; (Gd/Yb)(N) = 1.3-1.6), with pronounced negative Eu-anomalies (Eu/Eu*= 0.56-0.67). Their primitive-mantle normalized spidergrams are all characterized by negative Nb-Ta and Ti anomalies and positive Pb spikes. Comparatively, most Qinganlin granite samples have higher levels of LILE, e.g. Rb, Cs, and HFSE, e.g. Zr, Nb, Hf, Ta, Y, but lower transitional metal elements, e.g. V, Cr, Ni, Co, than those of the Gongcai samples. The samples from the Gongcai and Qinganlin complexes have high positive zircon epsilon Hf(t) values (+3.2 to +8.4 and +5.5 to +12.6, respectively) with Mesoproterozoic to early Neoproterozoic two-stage Hf-isotope model ages (1.22-1.56 Ga and 0.93-1.23 Ga, respectively), but show distinctive epsilon Nd(t) values (+1.67 to +3.40 and -4.34 to +0.74, respectively). We suggest that the precursor magma of the ca. 860 Ma Gongcai tonalites was derived from partial melting of basaltic oceanic crust modified by minor slab-derived components with residual garnet + amphibole in the source, and their relatively lower Mg# (37-53), Cr and Ni compared to the Cenozoic adakites indicate less interaction between slab melt and mantle wedge at the initial subduction stage along the western margin of the Yangtze Block at ca. 860 Ma. Because of the wide range of positive epsilon Hf(t) values but variable low epsilon Nd(t) and high Sr-87/Sr-86(i) values, the parental magma of ca. 830 Ma high-K Qinganlin granites is considered to be produced by re-melting of newly formed mafic crust with variable mixing of local Paleo-Mesoproterozoic sedimentary materials under extensional setting, supporting that subduction was stopped at. 830 Ma and the tectonic regime started to change from compression to extension. Both of the two plutonic complexes underwent later Mesozoic regional metamorphisms and migmatization (ca. 169 Ma and ca. 153 Ma) as a result of a nearly E-W post-orogenic extension. The nature and petrogenesis of the closely associated adakitic tonalites and high-K granites therefore provide effective perspective into the similar to 860 Ma initial subduction system caused by an eastward subduction of a young and hot oceanic crust beneath the western Yangtze Block, and a later similar to 830 Ma tectonic transition on the Yangtze Block. If an Andean-type continental arc existed, the Yangtze Block was possibly at a marginal position of Rodinia supercontinent in the Neoproterozoic. (C) 2015 Elsevier B.V. All rights reserved.
机译:松潘—甘孜褶皱带东部的丹巴多玛尔地层中的贡蔡和青安林岩体复合体,由大约1。 860 Ma adakitic音调和ca.分别为830 Ma高K花岗岩。贡菜复合物的样品具有可变的SiO2(66.7-72.1 wt%),高Al2O3(14.3-17.7 wt%),低碱(5.71-7.07 wt%),高Sr(576-1309 ppm)和低Y(2.2) -10.4 ppm)的含量,与典型的黄绿石相似。青冈林配合物比贡菜配合物具有更高的SiO2(70.9-73.3 wt%)和更低的Al2O3(13.5-14.2 wt%),以及可变地更高的K2O含量(1.2-3.8 wt%)。在球粒晶归一化REE图上,两种配合物均富含LREE,但龚才配合物显示出强烈的分型或凹入模式((La / Yb)(N)= 7-33;(Gd / Yb)(N)= 1.5- 4.4)的Eu异常呈弱负到正(Eu / Eu * = 0.89-1.25),而青安林复合体的岩石表现出相对平坦的HREE模式((La / Yb)(N)= 6-10;(Gd / Yb)(N)= 1.3-1.6),且具有明显的负Eu异常(Eu / Eu * = 0.56-0.67)。它们的原始地幔归一化蜘蛛图均以负Nb-Ta和Ti异常以及正Pb尖峰为特征。相比之下,大多数青安林花岗岩样品的LILE含量较高,例如Rb,Cs和HFSE,例如Zr,Nb,Hf,Ta,Y,但过渡金属元素较低,例如V,Cr,Ni,Co的含量要比贡菜样品的高。贡才和青安林复合物的样品具有高正锆石εHf(t)值(分别为+3.2至+8.4和+5.5至+12.6),中元古代至新元古代两阶段Hf同位素模型年龄(1.22-1.56) Ga和0.93-1.23 Ga),但显示出独特的εNd(t)值(分别为1.67至+3.40和-4.34至+0.74)。我们建议该ca的前岩浆。 860 Ma Gongcai孔雀石来源于玄武岩大洋壳的部分熔融,该玄武岩大洋壳经少量次生板状成分修饰而成,源中具有残留的石榴石和闪石,其Mg#(37-53),Cr和Ni与新生代的Adakite相比相对较低,表明在俯冲初期,沿长江块西缘的板状熔体与地幔楔之间的相互作用较小。 860毫安。由于正εHf(t)值的变化范围很广,但低εNd(t)和高Sr-87 / Sr-86(i)值可变,因此,ca的母岩浆约为。 830 Ma高K的庆安林花岗岩被认为是通过在延展的环境下重新熔融新形成的镁铁质地壳,以及在伸展条件下可变地混合当地古中元古代沉积材料而生产的。 830 Ma,构造机制开始从压缩转变为伸展。由于近E-W造山后的扩展,两个古生复合体都经历了后来的中生代区域变质作用和迁移作用(约169 Ma和约153 Ma)。因此,密切相关的阿达克半色调同辉石和高K花岗岩的性质和岩石成因提供了有效的视角,可以了解类似的860 Ma初始俯冲系统,该系统是由扬子西段下方的一个年轻而炎热的洋壳向东俯冲引起的,随后又出现了类似的现象。到扬子地块的830 Ma构造过渡。如果存在安第斯类型的大陆弧,则扬子块可能位于新元古代的罗迪尼亚超大陆的边缘位置。 (C)2015 Elsevier B.V.保留所有权利。

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