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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Late Triassic high-Mg andesite/dacite suites from northern Hohxil, North Tibet: Geochronology, geochemical characteristics, petrogenetic processes and tectonic implications
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Late Triassic high-Mg andesite/dacite suites from northern Hohxil, North Tibet: Geochronology, geochemical characteristics, petrogenetic processes and tectonic implications

机译:晚三叠世high-Mg安山岩和英安岩套件西藏可可西里北部,北:地质年代学、地球化学特征、岩石成因的过程和构造的影响

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摘要

This study reports age, petrologic and geochemical data for andesites and dacites from the Late Triassic sedimentary strata of northern Hohxil, in the Hohxil-Songpan-Ganzi Block (northern Tibet), which constitutes the most voluminous Triassic strata on Earth. LA-ICP-MS zircon U-Pb analysis of dacite (210.4 ± 1.9 Ma) and whole rock ~(40)Ar-~(38)Ar analyses for both the andesites and dacites (211 ± 2 Ma and 210.9 ± 1.6 Ma) show that the rocks were almost contemporaneous. Both rock types are sodium-rich and calc-alkaline. The andesites, characterized by high MgO (up to 10 wt.%) or Mg~# (- 70), TiO2, Al2O3, Cr, Ni, La/Yb and Th/La, but low Nb/Ta ratios, are geochemically similar to sanukitoids in southeastern Japan. The dacites are strongly peraluminous, and have high Al2O3 and La/Yb, low Y and Yb, coupled with negligible to positive Eu and Sr anomalies, comparable to slab-derived adakites in the circum Pacific arc system. Both rocks exhibit strongly fractionated platinum group element patterns, with Pt/Pt* (Pt anomaly), (Pt/Ir)_N and Re/Os ratios higher than those of the primitive mantle. They have uniformly low sNd(t) values ( — 7.57—9.59) and high (~(86)Sr/~(87)Sr)_i ratios (0.7086-0.7106) that imply a continental rather than oceanic type magma source. We suggest that the northern Hohxil dacites were produced by partial melting of subducted sediments on the northward-subducting Songpan-Ganzi oceanic slab, and the high-Mg andesites were formed by subsequent interaction between the sediment-derived melts and mantle wedge peridotites. Taking into account the Triassic magmatic record from nearby regions, we suggest that the Late Triassic high-Mg andesite/dacite suites of northern Hohxil were generated in a forearc setting, and propose that double-sided subduction eventually closed the Songpan-Ganzi ocean during the Late Triassic.
机译:本研究报告年龄、岩石学和地球化学数据为安山岩和英安岩的晚了可可西里、北部的三叠纪沉积地层Hohxil-Songpan-Ganzi块(北部西藏),它构成了最大量的地球上三叠纪地层。分析英安岩马(210.4±1.9)和整体摇滚~ (40)Ar - ~(38)的基于“增大化现实”技术的分析andesites and dacites(211±2 Ma and 210.9±1.6Ma)表明,岩石几乎同生。和钙碱性。高分别以(10 wt. %)或毫克~ #(- 70),二氧化钛,类似于sanukitoids比率,是地球化学日本东南部。高铝质、高氧化铝和La / Yb,低Y和Yb,加上积极的欧盟可以忽略不计和Sr异常,与slab-derived相提并论adakites在环太平洋弧系统。岩石表现出强烈分馏白金组元素模式,与Pt / Pt * (Pt异常),(Pt / Ir) _N”和Re / Os比率高于原始地幔。sNd (t)(-9.59 - 7.57)和高值(~ (86) Sr / ~ (87) Sr) _i比率(0.7086 - -0.7106)意味着一个大陆,而不是海洋类型岩浆源。英安岩被部分熔融产生的northward-subducting俯冲沉积物Songpan-Ganzi海洋板,high-Mg安山岩是由随后的互动sediment-derived融化和地幔之间的关系楔形橄榄岩。三叠纪岩浆来自附近地区的记录,我们表明,晚三叠世high-Mg北部的安山岩和英安岩套件可可西里生成的弧前设置,和建议双面俯冲最终关闭了在晚三叠世Songpan-Ganzi海洋。

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