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Indian Ocean-MORB-type isotopic signature of Yushigou ophiolite in North Qilian Mountains and its implications

机译:北祁连山鱼石沟蛇绿岩的印度洋-MORB型同位素特征及其意义

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In order to explore the disputed issue concerning the tectonic affinity of the ancient ocean mantle of North Qilian Mountains (NQM), geochemical and Sr, Nd, Pb isotopic compositions of pillow basalts of the Yushigou Ophiolite (YSGO) suite from NQM have been analyzed systematically. The pillow basalts exhibit tholeiitic characteristics, with flat chondrite-normalized REE patterns ((La/Yb)_N = 0.98—1.27). They display no Nb, Ta, Zr, Hf negative anomalies, and show MORB features in 2Nb-Zr/4-Y and Ti/100-Zr-YX3 tectonic discrimination diagrams. These results indicate that the Yushigou ophiolite is most likely to be formed in a mid-ocean ridge or mature back-arc basin. Their isotopic data show a relatively broad and enriched ~(87)Sr/~(86)Sr (0.70509 — 0.70700), restricted ~(143)Nd/~(144)Nd (0.512955-0.512978). Pb isotopes are in the range of ~(206)Pb/~(204)Pb (18.054-20.562), ~(207)Pb/~(204)Pb (15.537-15.743) and ~(208)Pb/~(204)Pb (38.068-38.530). These isotopic data imply that the basalts originated from the depleted mantle (DMM), with the involvement of enriched mantle components (mainly EMII). Geochemical comparisons between the basalts in YSGO and the MORB-type basalts of ophiolite suites occurring in the known ancient Tethyan tectonic domain indicate that the ancient oceanic mantle represented by YSGO suite forming in early Paleozoic in the North Qilian Moutains is very similar to the Tethyan mantle in both trace elements and isotopic compositions. The North Qilian Mountains should be a part of the Tethyan tectonic domain in early Paleozoic. This further implies that the Tethyan tectonic domain can be deduced to early Paleozoic in the study area, which will be helpful to discussing the tectonic affinity and evolution of the North Qilian Mountains.
机译:为了探讨北祁连山古海幔构造亲和性的争议性问题,系统地分析了NQM玉石沟蛇绿岩(YSGO)枕形玄武岩的地球化学特征和Sr,Nd,Pb同位素同位素组成。 。枕形玄武岩表现出韧性特征,具有扁平的球粒陨石归一化REE模式((La / Yb)_N = 0.98-1.27)。它们没有显示Nb,Ta,Zr,Hf负异常,并在2Nb-Zr / 4-Y和Ti / 100-Zr-YX3构造判别图中显示了MORB特征。这些结果表明玉石沟蛇绿岩最有可能形成于中海脊或成熟的后弧盆地中。他们的同位素数据显示〜(87)Sr /〜(86)Sr(0.70509-0.70700)相对受限,〜(143)Nd /〜(144)Nd(0.512955-0.512978)。铅同位素在〜(206)Pb /〜(204)Pb(18.054-20.562),〜(207)Pb /〜(204)Pb(15.537-15.743)和〜(208)Pb /〜(204)范围内铅(38.068-38.530)。这些同位素数据表明,玄武岩起源于贫化地幔(DMM),涉及富集地幔成分(主要是EMII)。 YSGO玄武岩与已知古代特提斯构造域中发生的蛇绿岩组的MORB型玄武岩之间的地球化学比较表明,以北祁连山前古生代形成的YSGO组为代表的古代海洋地幔与特提斯地幔非常相似。无论是微量元素还是同位素组成。北祁连山应该是早古生代特提斯构造域的一部分。这进一步暗示可以在研究区将特提斯构造域推导为早古生代,这将有助于探讨北祁连山的构造亲和力和演化。

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