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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Zircon U-Pb age and Sr-Nd-Hf isotope geochemistry of Permian granodiorite and associated gabbro in the Songliao Block, NE China and implications for growth of juvenile crust
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Zircon U-Pb age and Sr-Nd-Hf isotope geochemistry of Permian granodiorite and associated gabbro in the Songliao Block, NE China and implications for growth of juvenile crust

机译:锆石年龄和Sr-Nd-Hf U-Pb同位素地球化学二叠纪花岗闪长岩和辉长岩有关东北松辽块,中国和影响增长的青少年地壳

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摘要

Post-orogenic granitic and associated mafic rocks from northeastern (NE) China consist of granodiorite and gabbro intrusions. We report here upon new U-Pb zircon ages, geochemical data and Sr-Nd-Hf isotopic data for these rocks. LA-ICP-MS U-Pb zircon analysis yields an age of 262.8 ± 1.0 Ma for the granitic rocks, and a uniform age of 262.1 ± 0.7 Ma for the gabbro. Most of the granitic and mafic rocks are characterised by low K2O + Na2O, and pertain to the subalkaline series in the total alkali-silica diagram. The granodiorite samples show low (~(87)Sr/~(86)Sr); ranging from 0.700 to 0.705, positive ε_(Nd(t)) values from +0.3 to +0.8, and large variation in ε_(Hf(t)) values of between -4.0 and +2.5, indicating that both newly underplated basalt (70-80%) and ancient lower crustal sources (20-30%) contributed to their origin. Furthermore, positive ε_(Hf(t)) values with two-stage model ages (T_(DM2) of 1123-1260 Ma, together with Nd model ages (960-1000 Ma), suggest an important episode of crustal growth during the Meso-Neoproterozoic beneath the Songliao Block. In contrast, the investigated gabbro is characterised by relatively high (~(87)Sr/~(86)Sr)_i ratios (0.707-0.708), negative ε_(Nd(t)) (- 5.9 to - 5.3) and ε_(Hf(t)) values (- 5.0 to - 2.3), implying that this was derived from an enriched mantle source. The geochemical data indicate that the granitic magmas underwent separation of clinopyroxene, hornblende, K-feldspar, plagioclase, Ti-bearing phases (e.g., rutile, ilmenite, titanite), apatite and zircon during their evolution. Whereas the gabbro is characterised by low MgO (2.92-3.92 wt.%), Mg# (35-41) and compatible elements content, such as Cr (10-68 ppm), Co (16-31 ppm) and Ni (5.7-33 ppm), features of a more evolved mafic magma. There is no evidence that the granitic and mafic rocks were affected by crustal contamination during emplacement Our interpretation is that the two coeval intrusive suites were both formed in a post-orogenic extensional setting, related to lithospheric delamination or 'collapse' of the Central Asian Orogenic Belt (CAOB) (Xingmeng orogenic Belt in China).
机译:造山期后花岗质和镁铁质岩石相关联从中国东北(NE)组成花岗闪长岩,辉长岩侵入。在新的U-Pb锆石年龄,地球化学数据为这些岩石和Sr-Nd-Hf同位素数据。介绍U-Pb锆石分析收益率的时代262.8±1.0 Ma的花岗质岩石,和一个统一为辉长岩马262.1±0.7岁。大部分的花岗质和镁铁质岩石特点是低K2O + Na2O,属于在总alkali-silica微碱的系列图。(~ (87) Sr / ~ (86) Sr);积极的ε_ (Nd (t))值+ 0.3 + 0.8,和大的变化ε_(高频(t))之间的值-4.0 + 2.5,表明这两个新底座玄武岩(70 - 80%)和古代低地壳(20 - 30%)导致他们的来源来源。两阶段模型(T_ (DM2)识别1123 - 1260岁马和Nd模型时代(960 - 1000 Ma),建议地壳生长的一个重要事件在组下松辽块。辉长岩的特点是相对较高(~ (87) Sr / ~ (86) Sr) _i比率(0.707 - -0.708),负ε_ (Nd (t))(5.3 - 5.9)和ε_(高频(t))值(2.3 - 5.0),这意味着这是来自富集地幔来源。地球化学数据表明花岗质岩浆经历了分离斜辉石,角闪石、钾长石、斜长石,Ti-bearing阶段(例如,金红石、钛铁矿、钛酸),磷灰石和锆石在进化。而辉长岩的特点是采用低(2.92 - -3.92 wt. %), Mg #(35-41)和兼容的元素的内容,如Cr (10 - 68 ppm)有限公司(16-31 ppm)和镍(5.7 -33 ppm)的特性更多的镁铁质岩浆演化而来。花岗质和镁铁质岩石受到影响由地壳在安放我们的污染的解释是,这两个同时代的侵入套房都是形成于造山期后具体的设置,与岩石圈中亚的分层或“崩溃”造山带(CAOB)(星梦造山带中国)。

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